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"IndicationAndUsage": "Sojourn ® (sevoflurane, USP) is indicated for induction and maintenance of general anesthesia in adult and pediatric patients for inpatient and outpatient surgery. Sojourn ® (sevoflurane, USP) should be administered only by persons trained in the administration of general anesthesia. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment, and circulatory resuscitation must be immediately available. Since level of anesthesia may be altered rapidly, only vaporizers producing predictable concentrations of sevoflurane, USP should be used.",
"Description": "Sojourn ® (sevoflurane, USP), volatile liquid for inhalation, a nonflammable and nonexplosive liquid administered by vaporization, is a halogenated general inhalation anesthetic drug. Sevoflurane is fluoromethyl 2,2,2,-trifluoro-1-(trifluoromethyl) ethyl ether and its structural formula is:. Sevoflurane, Physical Constants are. Distribution Partition Coefficients at 37°C. Mean Component/Gas Partition Coefficients at 25°C for Polymers Used Commonly in Medical Applications. Sevoflurane is nonflammable and nonexplosive as defined by the requirements of International Electrotechnical Commission 601-2-13. Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium. Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is slightly soluble in water. Sevoflurane is stable when stored under normal room lighting conditions according to instructions. No discernible degradation of sevoflurane occurs in the presence of strong acids or heat. When in contact with alkaline CO 2 absorbents (e.g., Baralyme ® and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are either undetectable or present in non-toxic amounts when used as directed with fresh absorbents. Sevoflurane degradation and subsequent degradant formation are enhanced by increasing absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and desiccated CO 2 absorbents (especially with potassium hydroxide containing absorbents e.g., Baralyme). Sevoflurane alkaline degradation occurs by two pathways. The first results from the loss of hydrogen fluoride with the formation of pentafluoroisopropenyl fluoromethyl ether, (PIFE, C 4H 2F 6O), also known as Compound A, and trace amounts of pentafluoromethoxy isopropyl fluoromethyl ether, (PMFE, C 5H 6F 6O), also known as Compound B. The second pathway for degradation of sevoflurane, which occurs primarily in the presence of desiccated CO 2 absorbents, is discussed later. In the first pathway, the defluorination pathway, the production of degradants in the anesthesia circuit results from the extraction of the acidic proton in the presence of a strong base (KOH and/or NaOH) forming an alkene (Compound A) from sevoflurane similar to formation of 2- bromo-2-chloro-1,1-difluoro ethylene (BCDFE) from halothane. Laboratory simulations have shown that the concentration of these degradants is inversely correlated with the fresh gas flow rate (See Figure 1). Since the reaction of carbon dioxide with absorbents is exothermic, the temperature increase will be determined by quantities of CO 2 absorbed, which in turn will depend on fresh gas flow in the anesthesia circle system, metabolic status of the patient, and ventilation. The relationship of temperature produced by varying levels of CO 2 and Compound A production is illustrated in the following in vitro simulation where CO 2 was added to a circle absorber system. Compound A concentration in a circle absorber system increases as a function of increasing CO 2 absorbent temperature and composition (Baralyme producing higher levels than soda lime), increased body temperature, and increased minute ventilation, and decreasing fresh gas flow rates. It has been reported that the concentration of Compound A increases significantly with prolonged dehydration of Baralyme. Compound A exposure in patients also has been shown to rise with increased sevoflurane concentrations and duration of anesthesia. In a clinical study in which sevoflurane was administered to patients under low flow conditions for ≥ 2 hours at flow rates of 1 Liter/minute, Compound A levels were measured in an effort to determine the relationship between MAC hours and Compound A levels produced. The relationship between Compound A levels and sevoflurane exposure are shown in Figure 2a. Compound A has been shown to be nephrotoxic in rats after exposures that have varied in duration from one to three hours. No histopathologic change was seen at a concentration of up to 270 ppm for one hour. Sporadic single cell necrosis of proximal tubule cells has been reported at a concentration of 114 ppm after a 3-hour exposure to Compound A in rats. The LC50 reported at 1 hour is 1050-1090 ppm (male-female) and, at 3 hours, 350-490 ppm (male-female). An experiment was performed comparing sevoflurane plus 75 or 100 ppm Compound A with an active control to evaluate the potential nephrotoxicity of Compound A in non-human primates. A single 8-hour exposure of Sevoflurane in the presence of Compound A produced single-cell renal tubular degeneration and single-cell necrosis in cynomolgus monkeys. These changes are consistent with the increased urinary protein, glucose level and enzymic activity noted on days one and three on the clinical pathology evaluation. This nephrotoxicity produced by Compound A is dose and duration of exposure dependent. At a fresh gas flow rate of 1 L/min, mean maximum concentrations of Compound A in the anesthesia circuit in clinical settings are approximately 20 ppm (0.002%) with soda lime and 30 ppm (0.003%) with Baralyme in adult patients; mean maximum concentrations in pediatric patients with soda lime are about half those found in adults. The highest concentration observed in a single patient with Baralyme was 61 ppm (0.0061%) and 32 ppm (0.0032%) with soda lime. The levels of Compound A at which toxicity occurs in humans is not known. The second pathway for degradation of sevoflurane occurs primarily in the presence of desiccated CO 2 absorbents and leads to the dissociation of sevoflurane into hexafluoroisopropanol (HFIP) and formaldehyde. HFIP is inactive, non-genotoxic, rapidly glucuronidated and cleared by the liver. Formaldehyde is present during normal metabolic processes. Upon exposure to a highly desiccated absorbent, formaldehyde can further degrade into methanol and formate. Formate can contribute to the formation of carbon monoxide in the presence of high temperature that can be associated with desiccated Baralyme ®. Methanol can react with Compound A to form the methoxy addition product Compound B. Compound B can undergo further HF elimination to form Compounds C, D, and E. Sevoflurane degradants were observed in the respiratory circuit of an experimental anesthesia machine using desiccated CO 2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (> 2 hours). Concentrations of formaldehyde observed with desiccated soda lime in this experimental anesthesia respiratory circuit were consistent with levels that could potentially result in respiratory irritation. Although KOH containing CO 2 absorbents are no longer commercially available, in the laboratory experiments, exposure of sevoflurane to the desiccated KOH containing CO 2 absorbent, Baralyme, resulted in the detection of substantially greater degradant levels."
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"IndicationAndUsage": "Sojourn ® (sevoflurane, USP) is indicated for induction and maintenance of general anesthesia in adult and pediatric patients for inpatient and outpatient surgery. Sojourn ® (sevoflurane, USP) should be administered only by persons trained in the administration of general anesthesia. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment, and circulatory resuscitation must be immediately available. Since level of anesthesia may be altered rapidly, only vaporizers producing predictable concentrations of sevoflurane, USP should be used.",
"Description": "Sojourn ® (sevoflurane, USP), volatile liquid for inhalation, a nonflammable and nonexplosive liquid administered by vaporization, is a halogenated general inhalation anesthetic drug. Sevoflurane is fluoromethyl 2,2,2,-trifluoro-1-(trifluoromethyl) ethyl ether and its structural formula is:. Sevoflurane, Physical Constants are. Distribution Partition Coefficients at 37°C. Mean Component/Gas Partition Coefficients at 25°C for Polymers Used Commonly in Medical Applications. Sevoflurane is nonflammable and nonexplosive as defined by the requirements of International Electrotechnical Commission 601-2-13. Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium. Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is slightly soluble in water. Sevoflurane is stable when stored under normal room lighting conditions according to instructions. No discernible degradation of sevoflurane occurs in the presence of strong acids or heat. When in contact with alkaline CO 2 absorbents (e.g., Baralyme ® and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are either undetectable or present in non-toxic amounts when used as directed with fresh absorbents. Sevoflurane degradation and subsequent degradant formation are enhanced by increasing absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and desiccated CO 2 absorbents (especially with potassium hydroxide containing absorbents e.g., Baralyme). Sevoflurane alkaline degradation occurs by two pathways. The first results from the loss of hydrogen fluoride with the formation of pentafluoroisopropenyl fluoromethyl ether, (PIFE, C 4H 2F 6O), also known as Compound A, and trace amounts of pentafluoromethoxy isopropyl fluoromethyl ether, (PMFE, C 5H 6F 6O), also known as Compound B. The second pathway for degradation of sevoflurane, which occurs primarily in the presence of desiccated CO 2 absorbents, is discussed later. In the first pathway, the defluorination pathway, the production of degradants in the anesthesia circuit results from the extraction of the acidic proton in the presence of a strong base (KOH and/or NaOH) forming an alkene (Compound A) from sevoflurane similar to formation of 2- bromo-2-chloro-1,1-difluoro ethylene (BCDFE) from halothane. Laboratory simulations have shown that the concentration of these degradants is inversely correlated with the fresh gas flow rate (See Figure 1). Since the reaction of carbon dioxide with absorbents is exothermic, the temperature increase will be determined by quantities of CO 2 absorbed, which in turn will depend on fresh gas flow in the anesthesia circle system, metabolic status of the patient, and ventilation. The relationship of temperature produced by varying levels of CO 2 and Compound A production is illustrated in the following in vitro simulation where CO 2 was added to a circle absorber system. Compound A concentration in a circle absorber system increases as a function of increasing CO 2 absorbent temperature and composition (Baralyme producing higher levels than soda lime), increased body temperature, and increased minute ventilation, and decreasing fresh gas flow rates. It has been reported that the concentration of Compound A increases significantly with prolonged dehydration of Baralyme. Compound A exposure in patients also has been shown to rise with increased sevoflurane concentrations and duration of anesthesia. In a clinical study in which sevoflurane was administered to patients under low flow conditions for ≥ 2 hours at flow rates of 1 Liter/minute, Compound A levels were measured in an effort to determine the relationship between MAC hours and Compound A levels produced. The relationship between Compound A levels and sevoflurane exposure are shown in Figure 2a. Compound A has been shown to be nephrotoxic in rats after exposures that have varied in duration from one to three hours. No histopathologic change was seen at a concentration of up to 270 ppm for one hour. Sporadic single cell necrosis of proximal tubule cells has been reported at a concentration of 114 ppm after a 3-hour exposure to Compound A in rats. The LC50 reported at 1 hour is 1050-1090 ppm (male-female) and, at 3 hours, 350-490 ppm (male-female). An experiment was performed comparing sevoflurane plus 75 or 100 ppm Compound A with an active control to evaluate the potential nephrotoxicity of Compound A in non-human primates. A single 8-hour exposure of Sevoflurane in the presence of Compound A produced single-cell renal tubular degeneration and single-cell necrosis in cynomolgus monkeys. These changes are consistent with the increased urinary protein, glucose level and enzymic activity noted on days one and three on the clinical pathology evaluation. This nephrotoxicity produced by Compound A is dose and duration of exposure dependent. At a fresh gas flow rate of 1 L/min, mean maximum concentrations of Compound A in the anesthesia circuit in clinical settings are approximately 20 ppm (0.002%) with soda lime and 30 ppm (0.003%) with Baralyme in adult patients; mean maximum concentrations in pediatric patients with soda lime are about half those found in adults. The highest concentration observed in a single patient with Baralyme was 61 ppm (0.0061%) and 32 ppm (0.0032%) with soda lime. The levels of Compound A at which toxicity occurs in humans is not known. The second pathway for degradation of sevoflurane occurs primarily in the presence of desiccated CO 2 absorbents and leads to the dissociation of sevoflurane into hexafluoroisopropanol (HFIP) and formaldehyde. HFIP is inactive, non-genotoxic, rapidly glucuronidated and cleared by the liver. Formaldehyde is present during normal metabolic processes. Upon exposure to a highly desiccated absorbent, formaldehyde can further degrade into methanol and formate. Formate can contribute to the formation of carbon monoxide in the presence of high temperature that can be associated with desiccated Baralyme ®. Methanol can react with Compound A to form the methoxy addition product Compound B. Compound B can undergo further HF elimination to form Compounds C, D, and E. Sevoflurane degradants were observed in the respiratory circuit of an experimental anesthesia machine using desiccated CO 2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (> 2 hours). Concentrations of formaldehyde observed with desiccated soda lime in this experimental anesthesia respiratory circuit were consistent with levels that could potentially result in respiratory irritation. Although KOH containing CO 2 absorbents are no longer commercially available, in the laboratory experiments, exposure of sevoflurane to the desiccated KOH containing CO 2 absorbent, Baralyme, resulted in the detection of substantially greater degradant levels."
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"LabelerName": "Piramal Critical Care, Inc.",
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"IndicationAndUsage": "Terrell (isoflurane, USP) may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.",
"Description": "Terrell (isoflurane, USP), a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is. Some physical constants are. Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper."
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"IndicationAndUsage": "Sevoflurane, USP is indicated for induction and maintenance of general anesthesia in adult and pediatric patients for inpatient and outpatient surgery. Sevoflurane, USP should be administered only by persons trained in the administration of general anesthesia. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment, and circulatory resuscitation must be immediately available. Since level of anesthesia may be altered rapidly, only vaporizers producing predictable concentrations of sevoflurane, USP should be used.",
"Description": "Sevoflurane, USP, volatile liquid for inhalation, a nonflammable and nonexplosive liquid administered by vaporization, is a halogenated general inhalation anesthetic drug. Sevoflurane is fluoromethyl 2,2,2,-trifluoro-1-(trifluoromethyl) ethyl ether and its structural formula is. Sevoflurane, Physical Constants are. Distribution Partition Coefficients at 37°C. Mean Component/Gas Partition Coefficients at 25°C for Polymers Used Commonly in Medical Applications. Sevoflurane is nonflammable and nonexplosive as defined by the requirements of International Electrotechnical Commission 601-2-13. Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium. Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is slightly soluble in water. Sevoflurane is stable when stored under normal room lighting conditions according to instructions. No discernible degradation of sevoflurane occurs in the presence of strong acids or heat. When in contact with alkaline CO 2 absorbents (e.g., Baralyme ® and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are either undetectable or present in non-toxic amounts when used as directed with fresh absorbents. Sevoflurane degradation and subsequent degradant formation are enhanced by increasing absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and desiccated CO 2 absorbents (especially with potassium hydroxide containing absorbents e.g., Baralyme). Sevoflurane alkaline degradation occurs by two pathways. The first results from the loss of hydrogen fluoride with the formation of pentafluoroisopropenyl fluoromethyl ether, (PIFE, C 4H 2F 6O), also known as Compound A, and trace amounts of pentafluoromethoxy isopropyl fluoromethyl ether, (PMFE, C 5H 6F 6O), also known as Compound B. The second pathway for degradation of sevoflurane, which occurs primarily in the presence of desiccated CO 2 absorbents, is discussed later. In the first pathway, the defluorination pathway, the production of degradants in the anesthesia circuit results from the extraction of the acidic proton in the presence of a strong base (KOH and/or NaOH) forming an alkene (Compound A) from sevoflurane similar to formation of 2- bromo-2-chloro-1,1-difluoro ethylene (BCDFE) from halothane. Laboratory simulations have shown that the concentration of these degradants is inversely correlated with the fresh gas flow rate (See Figure 1). Since the reaction of carbon dioxide with absorbents is exothermic, the temperature increase will be determined by quantities of CO 2 absorbed, which in turn will depend on fresh gas flow in the anesthesia circle system, metabolic status of the patient, and ventilation. The relationship of temperature produced by varying levels of CO 2 and Compound A production is illustrated in the following in vitro simulation where CO 2 was added to a circle absorber system. Compound A concentration in a circle absorber system increases as a function of increasing CO 2 absorbent temperature and composition (Baralyme producing higher levels than soda lime), increased body temperature, and increased minute ventilation, and decreasing fresh gas flow rates. It has been reported that the concentration of Compound A increases significantly with prolonged dehydration of Baralyme. Compound A exposure in patients also has been shown to rise with increased sevoflurane concentrations and duration of anesthesia. In a clinical study in which sevoflurane was administered to patients under low flow conditions for ≥ 2 hours at flow rates of 1 Liter/minute, Compound A levels were measured in an effort to determine the relationship between MAC hours and Compound A levels produced. The relationship between Compound A levels and sevoflurane exposure are shown in Figure 2a. Compound A has been shown to be nephrotoxic in rats after exposures that have varied in duration from one to three hours. No histopathologic change was seen at a concentration of up to 270 ppm for one hour. Sporadic single cell necrosis of proximal tubule cells has been reported at a concentration of 114 ppm after a 3-hour exposure to Compound A in rats. The LC 50 reported at 1 hour is 1050 - 1090 ppm (male-female) and, at 3 hours, 350-490 ppm (male-female). An experiment was performed comparing sevoflurane plus 75 or 100 ppm Compound A with an active control to evaluate the potential nephrotoxicity of Compound A in non-human primates. A single 8-hour exposure of Sevoflurane in the presence of Compound A produced single-cell renal tubular degeneration and single-cell necrosis in cynomolgus monkeys. These changes are consistent with the increased urinary protein, glucose level and enzymic activity noted on days one and three on the clinical pathology evaluation. This nephrotoxicity produced by Compound A is dose and duration of exposure dependent. At a fresh gas flow rate of 1 L/min, mean maximum concentrations of Compound A in the anesthesia circuit in clinical settings are approximately 20 ppm (0.002%) with soda lime and 30 ppm (0.003%) with Baralyme in adult patients; mean maximum concentrations in pediatric patients with soda lime are about half those found in adults. The highest concentration observed in a single patient with Baralyme was 61 ppm (0.0061%) and 32 ppm (0.0032%) with soda lime. The levels of Compound A at which toxicity occurs in humans is not known. The second pathway for degradation of sevoflurane occurs primarily in the presence of desiccated CO 2 absorbents and leads to the dissociation of sevoflurane into hexafluoroisopropanol (HFIP) and formaldehyde. HFIP is inactive, non-genotoxic, rapidly glucuronidated and cleared by the liver. Formaldehyde is present during normal metabolic processes. Upon exposure to a highly desiccated absorbent, formaldehyde can further degrade into methanol and formate. Formate can contribute to the formation of carbon monoxide in the presence of high temperature that can be associated with desiccated Baralyme. Methanol can react with Compound A to form the methoxy addition product Compound B. Compound B can undergo further HF elimination to form Compounds C, D, and E. Sevoflurane degradants were observed in the respiratory circuit of an experimental anesthesia machine using desiccated CO 2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (> 2 hours). Concentrations of formaldehyde observed with desiccated soda lime in this experimental anesthesia respiratory circuit were consistent with levels that could potentially result in respiratory irritation. Although KOH containing CO 2 absorbents are no longer commercially available, in the laboratory experiments, exposure of sevoflurane to the desiccated KOH containing CO 2 absorbent, Baralyme, resulted in the detection of substantially greater degradant levels."
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"IndicationAndUsage": "Isoflurane USP may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.",
"Description": "Isoflurane USP (isoflurane, USP), a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is. Some physical constants are. Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper."
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"IndicationAndUsage": "Terrell may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.",
"Description": "Terrell (isoflurane, USP), a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is. Some physical constants are. Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper."
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"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
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"StrengthUnit": "mL/mL",
"Pharm_Classes": "General Anesthesia [PE], General Anesthetic [EPC]",
"Status": "Active",
"LastUpdate": "2025-12-04",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20131113",
"SamplePackage": "N",
"IndicationAndUsage": "Isoflurane USP may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.",
"Description": "Isoflurane USP, a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is:."
},
{
"NDCCode": "66794-205-41",
"PackageDescription": "10 VIAL, GLASS in 1 CARTON (66794-205-41) / 20 mL in 1 VIAL, GLASS (66794-205-02) ",
"NDC11Code": "66794-0205-41",
"ProductNDC": "66794-205",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Glycopyrrolate",
"NonProprietaryName": "Glycopyrrolate",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20190711",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA210842",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "GLYCOPYRROLATE",
"StrengthNumber": ".2",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Anticholinergic [EPC], Cholinergic Antagonists [MoA], Cholinergic Muscarinic Antagonist [EPC], Cholinergic Muscarinic Antagonists [MoA]",
"Status": "Active",
"LastUpdate": "2026-06-26",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20190711",
"SamplePackage": "N",
"Description": "Glycopyrrolate is a synthetic anticholinergic agent. It is a quaternary ammonium salt with the following chemical name. 3[(cyclopentylhydroxyphenylacetyl)oxy]-1,1-dimethyl pyrrolidinium bromide. The molecular formula is C 19H 28BrNO 3 and the molecular weight is 398.33. Its structural formula is as follows. Glycopyrrolate occurs as a white, odorless, crystalline powder. It is soluble in water and alcohol, and practically insoluble in chloroform and ether. It is completely ionized at physiological pH values. Glycopyrrolate Injection, USP, is a clear, colorless, sterile liquid with a pH of 2.0 to 3.0. The partition coefficient of glycopyrrolate in n-octanol/water system is 0.304 (log 10 P = -1.52) at ambient room temperature (24°C). Glycopyrrolate injection, USP, is intended for intramuscular or intravenous administration. Each 1 mL contains 0.2 mg of glycopyrrolate, water for injection, Benzyl Alcohol, NF 0.9% (preservative) and hydrochloric acid as pH adjusters."
},
{
"NDCCode": "66794-206-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-206-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-206-02) ",
"NDC11Code": "66794-0206-41",
"ProductNDC": "66794-206",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ampicillin And Sulbactam",
"NonProprietaryName": "Ampicillin And Sulbactam",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20190520",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA090579",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "AMPICILLIN SODIUM; SULBACTAM SODIUM",
"StrengthNumber": "1; .5",
"StrengthUnit": "g/1; g/1",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20190520",
"SamplePackage": "N",
"IndicationAndUsage": "Ampicillin and sulbactam for injection, USP is indicated for the treatment of infections due to susceptible strains of the designated microorganisms in the conditions listed below. Skin and Skin Structure Infections caused by beta-lactamase producing strains of Staphylococcus aureus, Escherichia coli,* Klebsiella spp.* (including K. pneumoniae*), Proteus mirabilis,* Bacteroides fragilis,* Enterobacter spp.,* and Acinetobacter calcoaceticus.*. NOTE: For information on use in pediatric patients (see PRECAUTIONS–Pediatric Useand CLINICAL STUDIESsections). Intra-Abdominal Infections caused by beta-lactamase producing strains of Escherichia coli, Klebsiella spp. (including K. pneumoniae*), Bacteroides spp. (including B. fragilis), and Enterobacter spp.*. Gynecological Infections caused by beta-lactamase producing strains of Escherichia coli,* and Bacteroides spp.* (including B. fragilis*). * Efficacy for this organism in this organ system was studied in fewer than 10 infections. While ampicillin and sulbactam for injection, USP is indicated only for the conditions listed above, infections caused by ampicillin-susceptible organisms are also amenable to treatment with ampicillin and sulbactam for injection, USP due to its ampicillin content. Therefore, mixed infections caused by ampicillin-susceptible organisms and beta-lactamase producing organisms susceptible to ampicillin and sulbactam for injection, USP should not require the addition of another antibacterial. Appropriate culture and susceptibility tests should be performed before treatment in order to isolate and identify the organisms causing infection and to determine their susceptibility to ampicillin and sulbactam for injection, USP. Therapy may be instituted prior to obtaining the results from bacteriological and susceptibility studies when there is reason to believe the infection may involve any of the beta-lactamase producing organisms listed above in the indicated organ systems. Once the results are known, therapy should be adjusted if appropriate. To reduce the development of drug-resistant bacteria and maintain effectiveness of ampicillin and sulbactam for injection, USP and other antibacterial drugs, ampicillin and sulbactam for injection, USP should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Ampicillin and Sulbactam for Injection is an injectable antibacterial combination consisting of the semisynthetic antibacterial ampicillin sodium and the beta-lactamase inhibitor sulbactam sodium for intravenous and intramuscular administration. Ampicillin sodium is derived from the penicillin nucleus, 6-aminopenicillanic acid. Chemically, it is monosodium (2S,5R,6R)-6-[(R)-2-amino-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate and has a molecular weight of 371.39. Its chemical formula is C 16H 18N 3NaO 4S. The structural formula is:. Sulbactam sodium is a derivative of the basic penicillin nucleus. Chemically, sulbactam sodium is sodium penicillinate sulfone; sodium (2S, 5R)-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate 4,4-dioxide. Its chemical formula is C 8H 10NNaO 5S with a molecular weight of 255.22. The structural formula is:. Ampicillin and sulbactam for Injection, ampicillin sodium/sulbactam sodium parenteral combination, is available as a white to off-white dry powder for reconstitution. Ampicillin and sulbactam for Injection dry powder is freely soluble in aqueous diluents to yield pale yellow to yellow solutions containing ampicillin sodium and sulbactam sodium equivalent to 250 mg ampicillin per mL and 125 mg sulbactam per mL. The pH of the solutions is between 8.0 and 10.0. Dilute solutions (up to 30 mg ampicillin and 15 mg sulbactam per mL) are essentially colorless to pale yellow. The pH of dilute solutions remains the same. Each 1.5 gram of Ampicillin and sulbactam for Injection contains 1 gram ampicillin as the sodium salt plus 0.5 gram sulbactam as the sodium salt. The sodium content is approximately 115 mg (5 mEq) of sodium per vial. Each 3 gram of Ampicillin and sulbactam for Injection contains 2 gram ampicillin as the sodium salt plus 1 gram sulbactam as the sodium salt. The sodium content is approximately 230 mg (10 mEq) of sodium per vial."
},
{
"NDCCode": "66794-207-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-207-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-207-02) ",
"NDC11Code": "66794-0207-41",
"ProductNDC": "66794-207",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ampicillin And Sulbactam",
"NonProprietaryName": "Ampicillin And Sulbactam",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20190520",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA090579",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "AMPICILLIN SODIUM; SULBACTAM SODIUM",
"StrengthNumber": "2; 1",
"StrengthUnit": "g/1; g/1",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20190520",
"SamplePackage": "N",
"IndicationAndUsage": "Ampicillin and sulbactam for injection, USP is indicated for the treatment of infections due to susceptible strains of the designated microorganisms in the conditions listed below. Skin and Skin Structure Infections caused by beta-lactamase producing strains of Staphylococcus aureus, Escherichia coli,* Klebsiella spp.* (including K. pneumoniae*), Proteus mirabilis,* Bacteroides fragilis,* Enterobacter spp.,* and Acinetobacter calcoaceticus.*. NOTE: For information on use in pediatric patients (see PRECAUTIONS–Pediatric Useand CLINICAL STUDIESsections). Intra-Abdominal Infections caused by beta-lactamase producing strains of Escherichia coli, Klebsiella spp. (including K. pneumoniae*), Bacteroides spp. (including B. fragilis), and Enterobacter spp.*. Gynecological Infections caused by beta-lactamase producing strains of Escherichia coli,* and Bacteroides spp.* (including B. fragilis*). * Efficacy for this organism in this organ system was studied in fewer than 10 infections. While ampicillin and sulbactam for injection, USP is indicated only for the conditions listed above, infections caused by ampicillin-susceptible organisms are also amenable to treatment with ampicillin and sulbactam for injection, USP due to its ampicillin content. Therefore, mixed infections caused by ampicillin-susceptible organisms and beta-lactamase producing organisms susceptible to ampicillin and sulbactam for injection, USP should not require the addition of another antibacterial. Appropriate culture and susceptibility tests should be performed before treatment in order to isolate and identify the organisms causing infection and to determine their susceptibility to ampicillin and sulbactam for injection, USP. Therapy may be instituted prior to obtaining the results from bacteriological and susceptibility studies when there is reason to believe the infection may involve any of the beta-lactamase producing organisms listed above in the indicated organ systems. Once the results are known, therapy should be adjusted if appropriate. To reduce the development of drug-resistant bacteria and maintain effectiveness of ampicillin and sulbactam for injection, USP and other antibacterial drugs, ampicillin and sulbactam for injection, USP should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Ampicillin and Sulbactam for Injection is an injectable antibacterial combination consisting of the semisynthetic antibacterial ampicillin sodium and the beta-lactamase inhibitor sulbactam sodium for intravenous and intramuscular administration. Ampicillin sodium is derived from the penicillin nucleus, 6-aminopenicillanic acid. Chemically, it is monosodium (2S,5R,6R)-6-[(R)-2-amino-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate and has a molecular weight of 371.39. Its chemical formula is C 16H 18N 3NaO 4S. The structural formula is:. Sulbactam sodium is a derivative of the basic penicillin nucleus. Chemically, sulbactam sodium is sodium penicillinate sulfone; sodium (2S, 5R)-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate 4,4-dioxide. Its chemical formula is C 8H 10NNaO 5S with a molecular weight of 255.22. The structural formula is:. Ampicillin and sulbactam for Injection, ampicillin sodium/sulbactam sodium parenteral combination, is available as a white to off-white dry powder for reconstitution. Ampicillin and sulbactam for Injection dry powder is freely soluble in aqueous diluents to yield pale yellow to yellow solutions containing ampicillin sodium and sulbactam sodium equivalent to 250 mg ampicillin per mL and 125 mg sulbactam per mL. The pH of the solutions is between 8.0 and 10.0. Dilute solutions (up to 30 mg ampicillin and 15 mg sulbactam per mL) are essentially colorless to pale yellow. The pH of dilute solutions remains the same. Each 1.5 gram of Ampicillin and sulbactam for Injection contains 1 gram ampicillin as the sodium salt plus 0.5 gram sulbactam as the sodium salt. The sodium content is approximately 115 mg (5 mEq) of sodium per vial. Each 3 gram of Ampicillin and sulbactam for Injection contains 2 gram ampicillin as the sodium salt plus 1 gram sulbactam as the sodium salt. The sodium content is approximately 230 mg (10 mEq) of sodium per vial."
},
{
"NDCCode": "66794-209-41",
"PackageDescription": "10 VIAL, SINGLE-DOSE in 1 CARTON (66794-209-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL, SINGLE-DOSE (66794-209-02) ",
"NDC11Code": "66794-0209-41",
"ProductNDC": "66794-209",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Cefepime",
"NonProprietaryName": "Cefepime",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20190520",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA091048",
"LabelerName": "Piramal Critical Care Inc.",
"SubstanceName": "CEFEPIME HYDROCHLORIDE",
"StrengthNumber": "1",
"StrengthUnit": "g/1",
"Pharm_Classes": "Cephalosporin Antibacterial [EPC], Cephalosporins [CS]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20190520",
"SamplePackage": "N",
"IndicationAndUsage": "1.1 Pneumonia. Cefepime for Injection is indicated in the treatment of pneumonia (moderate to severe) caused by susceptible strains of Streptococcus pneumoniae, including cases associated with concurrent bacteremia, Pseudomonas aeruginosa, Klebsiella pneumoniae, or Enterobacter species. 1.2 Empiric Therapy for Febrile Neutropenic Patients. Cefepime for Injection as monotherapy is indicated for empiric treatment of febrile neutropenic patients. In patients at high risk for severe infection (including patients with a history of recent bone marrow transplantation, with hypotension at presentation, with an underlying hematologic malignancy, or with severe or prolonged neutropenia), antimicrobial monotherapy may not be appropriate. Insufficient data exist to support the efficacy of cefepime monotherapy in such patients [see Clinical Studies ( 14.1)]. 1.3 Uncomplicated and Complicated Urinary Tract Infections (including pyelonephritis). Cefepime for Injection is indicated in the treatment of uncomplicated and complicated urinary tract infections (including pyelonephritis) caused by susceptible isolates of Escherichia coli or Klebsiella pneumoniae, when the infection is severe, or caused by Escherichia coli, Klebsiella pneumoniae, or Proteus mirabilis, when the infection is mild to moderate, including cases associated with concurrent bacteremia with these bacteria. 1.4 Uncomplicated Skin and Skin Structure Infections. Cefepime for Injection is indicated in the treatment of uncomplicated skin and skin structure infections caused by Staphylococcus aureus (methicillin-susceptible isolates only) or Streptococcus pyogenes. 1.5 Complicated Intra-abdominal Infections (used in combination with metronidazole). Cefepime for Injection is indicated in the treatment of complicated intra-abdominal infections (used in combination with metronidazole) in adults caused by susceptible isolates of Escherichia coli, viridans group streptococci, Pseudomonas aeruginosa, Klebsiella pneumoniae, Enterobacter species, or Bacteroides fragilis [see Clinical Studies ( 14.2)]. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Cefepime for Injection and other antibacterial drugs, Cefepime for Injection should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Cefepime for Injection, USP is a semi-synthetic, cephalosporin antibacterial for parenteral administration. The chemical name is 1-[[(6R,7R)-7-[2-(2-amino-4-thiazolyl)-glyoxylamido]-2-carboxy-8-oxo-5-thia-1-azabyciclo[4.2.0] oct-2-en-3-yl]methyl]-1-methylpyrrolidinum chloride,7 2-(Z)-O-methyloxime), monohydrochloride, monohydrate, which corresponds to the following structural formula:. Cefepime hydrochloride is a white to pale yellow powder. Cefepime hydrochloride contains the equivalent of not less than 825 mcg and not more than 911 mcg of cefepime (C 19H 24N 6O 5S 2) per mg, calculated on an anhydrous basis. It is highly soluble in water. Cefepime for Injection, USP is supplied for intramuscular or intravenous administration in strengths equivalent to 1 gram and 2 grams of cefepime. Cefepime for Injection, USP is a sterile, dry mixture of cefepime hydrochloride and L-arginine. The L-arginine, at an approximate concentration of 707 mg/g of cefepime, is added to control the pH of the constituted solution at 4 to 6. Freshly constituted solutions of Cefepime for Injection, USP will range in color from pale yellow to amber."
},
{
"NDCCode": "66794-210-41",
"PackageDescription": "10 VIAL, SINGLE-DOSE in 1 CARTON (66794-210-41) > 2 INJECTION, POWDER, FOR SOLUTION in 1 VIAL, SINGLE-DOSE (66794-210-02) ",
"NDC11Code": "66794-0210-41",
"ProductNDC": "66794-210",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Cefepime",
"NonProprietaryName": "Cefepime",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20190520",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA091048",
"LabelerName": "Piramal Critical Care Inc.",
"SubstanceName": "CEFEPIME HYDROCHLORIDE",
"StrengthNumber": "2",
"StrengthUnit": "g/1",
"Pharm_Classes": "Cephalosporin Antibacterial [EPC], Cephalosporins [CS]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20190520",
"SamplePackage": "N",
"IndicationAndUsage": "1.1 Pneumonia. Cefepime for Injection is indicated in the treatment of pneumonia (moderate to severe) caused by susceptible strains of Streptococcus pneumoniae, including cases associated with concurrent bacteremia, Pseudomonas aeruginosa, Klebsiella pneumoniae, or Enterobacter species. 1.2 Empiric Therapy for Febrile Neutropenic Patients. Cefepime for Injection as monotherapy is indicated for empiric treatment of febrile neutropenic patients. In patients at high risk for severe infection (including patients with a history of recent bone marrow transplantation, with hypotension at presentation, with an underlying hematologic malignancy, or with severe or prolonged neutropenia), antimicrobial monotherapy may not be appropriate. Insufficient data exist to support the efficacy of cefepime monotherapy in such patients [see Clinical Studies ( 14.1)]. 1.3 Uncomplicated and Complicated Urinary Tract Infections (including pyelonephritis). Cefepime for Injection is indicated in the treatment of uncomplicated and complicated urinary tract infections (including pyelonephritis) caused by susceptible isolates of Escherichia coli or Klebsiella pneumoniae, when the infection is severe, or caused by Escherichia coli, Klebsiella pneumoniae, or Proteus mirabilis, when the infection is mild to moderate, including cases associated with concurrent bacteremia with these bacteria. 1.4 Uncomplicated Skin and Skin Structure Infections. Cefepime for Injection is indicated in the treatment of uncomplicated skin and skin structure infections caused by Staphylococcus aureus (methicillin-susceptible isolates only) or Streptococcus pyogenes. 1.5 Complicated Intra-abdominal Infections (used in combination with metronidazole). Cefepime for Injection is indicated in the treatment of complicated intra-abdominal infections (used in combination with metronidazole) in adults caused by susceptible isolates of Escherichia coli, viridans group streptococci, Pseudomonas aeruginosa, Klebsiella pneumoniae, Enterobacter species, or Bacteroides fragilis [see Clinical Studies ( 14.2)]. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Cefepime for Injection and other antibacterial drugs, Cefepime for Injection should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Cefepime for Injection, USP is a semi-synthetic, cephalosporin antibacterial for parenteral administration. The chemical name is 1-[[(6R,7R)-7-[2-(2-amino-4-thiazolyl)-glyoxylamido]-2-carboxy-8-oxo-5-thia-1-azabyciclo[4.2.0] oct-2-en-3-yl]methyl]-1-methylpyrrolidinum chloride,7 2-(Z)-O-methyloxime), monohydrochloride, monohydrate, which corresponds to the following structural formula:. Cefepime hydrochloride is a white to pale yellow powder. Cefepime hydrochloride contains the equivalent of not less than 825 mcg and not more than 911 mcg of cefepime (C 19H 24N 6O 5S 2) per mg, calculated on an anhydrous basis. It is highly soluble in water. Cefepime for Injection, USP is supplied for intramuscular or intravenous administration in strengths equivalent to 1 gram and 2 grams of cefepime. Cefepime for Injection, USP is a sterile, dry mixture of cefepime hydrochloride and L-arginine. The L-arginine, at an approximate concentration of 707 mg/g of cefepime, is added to control the pH of the constituted solution at 4 to 6. Freshly constituted solutions of Cefepime for Injection, USP will range in color from pale yellow to amber."
},
{
"NDCCode": "66794-216-41",
"PackageDescription": "10 VIAL, SINGLE-USE in 1 CARTON (66794-216-41) > 10 mL in 1 VIAL, SINGLE-USE (66794-216-02) ",
"NDC11Code": "66794-0216-41",
"ProductNDC": "66794-216",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Piperacillin And Tazobactam",
"NonProprietaryName": "Piperacillin And Tazobactam",
"DosageFormName": "INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20200316",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA212287",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "PIPERACILLIN SODIUM; TAZOBACTAM SODIUM",
"StrengthNumber": "2; .25",
"StrengthUnit": "g/10mL; g/10mL",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200316",
"SamplePackage": "N",
"IndicationAndUsage": "1.1 Intra-abdominal Infections Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of appendicitis (complicated by rupture or abscess) and peritonitis caused by beta-lactamase producing isolates of Escherichia coli or the following members of the Bacteroides fragilis group: B. fragilis, B. ovatus, B. thetaiotaomicron, or B. vulgatus. 1.2 Nosocomial Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of nosocomial pneumonia (moderate to severe) caused by beta-lactamase producing isolates of Staphylococcus aureus and by piperacillin/tazobactam-susceptible Acinetobacter baumannii, Haemophilus influenzae, Klebsiella pneumoniae, and Pseudomonas aeruginosa ( Nosocomial pneumonia caused by P. aeruginosa should be treated in combination with an aminoglycoside) [see Dosage and Administration ( 2)]. 1.3 Skin and Skin Structure Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of uncomplicated and complicated skin and skin structure infections, including cellulitis, cutaneous abscesses and ischemic/diabetic foot infections caused by beta-lactamase producing isolates of Staphylococcus aureus. 1.4 Female Pelvic Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of postpartum endometritis or pelvic inflammatory disease caused by beta-lactamase producing isolates of Escherichia coli. 1.5 Community-acquired Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of community-acquired pneumonia (moderate severity only) caused by beta-lactamase producing isolates of Haemophilus influenzae. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Piperacillin and Tazobactam for Injection and other antibacterial drugs, Piperacillin and Tazobactam for Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Piperacillin and tazobactam for injection, USP is an injectable antibacterial combination product consisting of the semisynthetic antibacterial piperacillin sodium and the beta-lactamase inhibitor tazobactam sodium for intravenous administration. Piperacillin sodium is derived from D(-)-α-aminobenzyl-penicillin. The chemical name of piperacillin sodium is sodium (2S,5R,6R)-6-[(R)-2-(4-ethyl-2,3-dioxo-1-piperazine- carboxamido)-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2- carboxylate. The chemical formula is C 23H 26N 5NaO 7S and the molecular weight is 539.5. The chemical structure of piperacillin sodium is:. Tazobactam sodium, a derivative of the penicillin nucleus, is a penicillanic acid sulfone. Its chemical name is sodium (2S,3S,5R)-3-methyl-7-oxo-3-(1H-1,2,3-triazol-1-ylmethyl)-4-thia-1- azabicyclo[3.2.0]heptane-2-carboxylate-4,4-dioxide. The chemical formula is C 10H 11N 4NaO 5S and the molecular weight is 322.3. The chemical structure of tazobactam sodium is:. Piperacillin and tazobactam for injection, USP, is a white to off-white sterile, powder consisting of piperacillin and tazobactam as their sodium salts packaged in glass vials. Each piperacillin and tazobactam for injection, USP 2.25 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 2 grams of piperacillin and tazobactam sodium equivalent to 0.25 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 3.375 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 3 grams of piperacillin and tazobactam sodium equivalent to 0.375 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 4.5 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 4 grams of piperacillin and tazobactam sodium equivalent to 0.5 gram of tazobactam. Piperacillin and tazobactam for injection, USP is a monosodium salt of piperacillin and a monosodium salt of tazobactam containing a total of 2.35 mEq (54 mg) of sodium (Na+) per gram of piperacillin in the combination product."
},
{
"NDCCode": "66794-217-41",
"PackageDescription": "10 VIAL, SINGLE-USE in 1 CARTON (66794-217-41) > 15 mL in 1 VIAL, SINGLE-USE (66794-217-02) ",
"NDC11Code": "66794-0217-41",
"ProductNDC": "66794-217",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Piperacillin And Tazobactam",
"NonProprietaryName": "Piperacillin And Tazobactam",
"DosageFormName": "INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20200316",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA212287",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "PIPERACILLIN SODIUM; TAZOBACTAM SODIUM",
"StrengthNumber": "3; .375",
"StrengthUnit": "g/15mL; g/15mL",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200316",
"SamplePackage": "N",
"IndicationAndUsage": "1.1 Intra-abdominal Infections Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of appendicitis (complicated by rupture or abscess) and peritonitis caused by beta-lactamase producing isolates of Escherichia coli or the following members of the Bacteroides fragilis group: B. fragilis, B. ovatus, B. thetaiotaomicron, or B. vulgatus. 1.2 Nosocomial Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of nosocomial pneumonia (moderate to severe) caused by beta-lactamase producing isolates of Staphylococcus aureus and by piperacillin/tazobactam-susceptible Acinetobacter baumannii, Haemophilus influenzae, Klebsiella pneumoniae, and Pseudomonas aeruginosa ( Nosocomial pneumonia caused by P. aeruginosa should be treated in combination with an aminoglycoside) [see Dosage and Administration ( 2)]. 1.3 Skin and Skin Structure Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of uncomplicated and complicated skin and skin structure infections, including cellulitis, cutaneous abscesses and ischemic/diabetic foot infections caused by beta-lactamase producing isolates of Staphylococcus aureus. 1.4 Female Pelvic Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of postpartum endometritis or pelvic inflammatory disease caused by beta-lactamase producing isolates of Escherichia coli. 1.5 Community-acquired Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of community-acquired pneumonia (moderate severity only) caused by beta-lactamase producing isolates of Haemophilus influenzae. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Piperacillin and Tazobactam for Injection and other antibacterial drugs, Piperacillin and Tazobactam for Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Piperacillin and tazobactam for injection, USP is an injectable antibacterial combination product consisting of the semisynthetic antibacterial piperacillin sodium and the beta-lactamase inhibitor tazobactam sodium for intravenous administration. Piperacillin sodium is derived from D(-)-α-aminobenzyl-penicillin. The chemical name of piperacillin sodium is sodium (2S,5R,6R)-6-[(R)-2-(4-ethyl-2,3-dioxo-1-piperazine- carboxamido)-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2- carboxylate. The chemical formula is C 23H 26N 5NaO 7S and the molecular weight is 539.5. The chemical structure of piperacillin sodium is:. Tazobactam sodium, a derivative of the penicillin nucleus, is a penicillanic acid sulfone. Its chemical name is sodium (2S,3S,5R)-3-methyl-7-oxo-3-(1H-1,2,3-triazol-1-ylmethyl)-4-thia-1- azabicyclo[3.2.0]heptane-2-carboxylate-4,4-dioxide. The chemical formula is C 10H 11N 4NaO 5S and the molecular weight is 322.3. The chemical structure of tazobactam sodium is:. Piperacillin and tazobactam for injection, USP, is a white to off-white sterile, powder consisting of piperacillin and tazobactam as their sodium salts packaged in glass vials. Each piperacillin and tazobactam for injection, USP 2.25 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 2 grams of piperacillin and tazobactam sodium equivalent to 0.25 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 3.375 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 3 grams of piperacillin and tazobactam sodium equivalent to 0.375 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 4.5 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 4 grams of piperacillin and tazobactam sodium equivalent to 0.5 gram of tazobactam. Piperacillin and tazobactam for injection, USP is a monosodium salt of piperacillin and a monosodium salt of tazobactam containing a total of 2.35 mEq (54 mg) of sodium (Na+) per gram of piperacillin in the combination product."
},
{
"NDCCode": "66794-218-41",
"PackageDescription": "10 VIAL, SINGLE-USE in 1 CARTON (66794-218-41) > 20 mL in 1 VIAL, SINGLE-USE (66794-218-02) ",
"NDC11Code": "66794-0218-41",
"ProductNDC": "66794-218",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Piperacillin And Tazobactam",
"NonProprietaryName": "Piperacillin And Tazobactam",
"DosageFormName": "INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20200316",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA212287",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "PIPERACILLIN SODIUM; TAZOBACTAM SODIUM",
"StrengthNumber": "4; .5",
"StrengthUnit": "g/20mL; g/20mL",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200316",
"SamplePackage": "N",
"IndicationAndUsage": "1.1 Intra-abdominal Infections Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of appendicitis (complicated by rupture or abscess) and peritonitis caused by beta-lactamase producing isolates of Escherichia coli or the following members of the Bacteroides fragilis group: B. fragilis, B. ovatus, B. thetaiotaomicron, or B. vulgatus. 1.2 Nosocomial Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of nosocomial pneumonia (moderate to severe) caused by beta-lactamase producing isolates of Staphylococcus aureus and by piperacillin/tazobactam-susceptible Acinetobacter baumannii, Haemophilus influenzae, Klebsiella pneumoniae, and Pseudomonas aeruginosa ( Nosocomial pneumonia caused by P. aeruginosa should be treated in combination with an aminoglycoside) [see Dosage and Administration ( 2)]. 1.3 Skin and Skin Structure Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of uncomplicated and complicated skin and skin structure infections, including cellulitis, cutaneous abscesses and ischemic/diabetic foot infections caused by beta-lactamase producing isolates of Staphylococcus aureus. 1.4 Female Pelvic Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of postpartum endometritis or pelvic inflammatory disease caused by beta-lactamase producing isolates of Escherichia coli. 1.5 Community-acquired Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of community-acquired pneumonia (moderate severity only) caused by beta-lactamase producing isolates of Haemophilus influenzae. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Piperacillin and Tazobactam for Injection and other antibacterial drugs, Piperacillin and Tazobactam for Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.",
"Description": "Piperacillin and tazobactam for injection, USP is an injectable antibacterial combination product consisting of the semisynthetic antibacterial piperacillin sodium and the beta-lactamase inhibitor tazobactam sodium for intravenous administration. Piperacillin sodium is derived from D(-)-α-aminobenzyl-penicillin. The chemical name of piperacillin sodium is sodium (2S,5R,6R)-6-[(R)-2-(4-ethyl-2,3-dioxo-1-piperazine- carboxamido)-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2- carboxylate. The chemical formula is C 23H 26N 5NaO 7S and the molecular weight is 539.5. The chemical structure of piperacillin sodium is:. Tazobactam sodium, a derivative of the penicillin nucleus, is a penicillanic acid sulfone. Its chemical name is sodium (2S,3S,5R)-3-methyl-7-oxo-3-(1H-1,2,3-triazol-1-ylmethyl)-4-thia-1- azabicyclo[3.2.0]heptane-2-carboxylate-4,4-dioxide. The chemical formula is C 10H 11N 4NaO 5S and the molecular weight is 322.3. The chemical structure of tazobactam sodium is:. Piperacillin and tazobactam for injection, USP, is a white to off-white sterile, powder consisting of piperacillin and tazobactam as their sodium salts packaged in glass vials. Each piperacillin and tazobactam for injection, USP 2.25 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 2 grams of piperacillin and tazobactam sodium equivalent to 0.25 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 3.375 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 3 grams of piperacillin and tazobactam sodium equivalent to 0.375 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 4.5 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 4 grams of piperacillin and tazobactam sodium equivalent to 0.5 gram of tazobactam. Piperacillin and tazobactam for injection, USP is a monosodium salt of piperacillin and a monosodium salt of tazobactam containing a total of 2.35 mEq (54 mg) of sodium (Na+) per gram of piperacillin in the combination product."
},
{
"NDCCode": "66794-219-43",
"PackageDescription": "10 BAG in 1 CARTON (66794-219-43) / 300 mL in 1 BAG (66794-219-63) ",
"NDC11Code": "66794-0219-43",
"ProductNDC": "66794-219",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Linezolid",
"NonProprietaryName": "Linezolid",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20240308",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA207001",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "LINEZOLID",
"StrengthNumber": "600",
"StrengthUnit": "mg/300mL",
"Pharm_Classes": "Oxazolidinone Antibacterial [EPC], Oxazolidinones [CS]",
"Status": "Active",
"LastUpdate": "2025-09-26",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20240308",
"SamplePackage": "N",
"Description": "Linezolid Injection, contains linezolid, which is a synthetic antibacterial agent of the oxazolidinone class. The chemical name for linezolid is (S)-N-[[3-[3-Fluoro-4-(4morpholinyl)phenyl]-2-oxo-5-oxazolidinyl] methyl]-acetamide. The empirical formula is C 16H 20FN 3O 4. Its molecular weight is 337.35, and its chemical structure is represented below:. Linezolid Injection is supplied as a ready-to-use sterile isotonic solution for intravenous infusion. Each mL contains 2 mg of linezolid. Inactive ingredients are sodium citrate, citric acid, and dextrose in an aqueous vehicle for intravenous administration. pH adjusted to 4.8 with sodium hydroxide or hydrochloric acid.The sodium (Na+) content is 0.38 mg/mL (5 mEq/300 mL bag)."
},
{
"NDCCode": "66794-220-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-220-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-220-02) ",
"NDC11Code": "66794-0220-41",
"ProductNDC": "66794-220",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ampicillin",
"NonProprietaryName": "Ampicillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20200309",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA090583",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "AMPICILLIN SODIUM",
"StrengthNumber": "250",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200309",
"SamplePackage": "N",
"IndicationAndUsage": "Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.",
"Description": "Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10."
},
{
"NDCCode": "66794-221-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-221-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-221-02) ",
"NDC11Code": "66794-0221-41",
"ProductNDC": "66794-221",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ampicillin",
"NonProprietaryName": "Ampicillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20200309",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA090583",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "AMPICILLIN SODIUM",
"StrengthNumber": "500",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200309",
"SamplePackage": "N",
"IndicationAndUsage": "Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.",
"Description": "Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10."
},
{
"NDCCode": "66794-222-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-222-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-222-02) ",
"NDC11Code": "66794-0222-41",
"ProductNDC": "66794-222",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ampicillin",
"NonProprietaryName": "Ampicillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20200309",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA090583",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "AMPICILLIN SODIUM",
"StrengthNumber": "1",
"StrengthUnit": "g/1",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200309",
"SamplePackage": "N",
"IndicationAndUsage": "Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.",
"Description": "Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10."
},
{
"NDCCode": "66794-223-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-223-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-223-02) ",
"NDC11Code": "66794-0223-41",
"ProductNDC": "66794-223",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ampicillin",
"NonProprietaryName": "Ampicillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20200309",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA090583",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "AMPICILLIN SODIUM",
"StrengthNumber": "2",
"StrengthUnit": "g/1",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2024-01-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20231231",
"StartMarketingDatePackage": "20200309",
"SamplePackage": "N",
"IndicationAndUsage": "Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.",
"Description": "Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10."
},
{
"NDCCode": "66794-225-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-225-41) > 1 g in 1 VIAL (66794-225-02) ",
"NDC11Code": "66794-0225-41",
"ProductNDC": "66794-225",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Oxacillin",
"NonProprietaryName": "Oxacillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20180601",
"EndMarketingDate": "20220801",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA206681",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "OXACILLIN SODIUM",
"StrengthNumber": "1",
"StrengthUnit": "g/g",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2022-08-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"StartMarketingDatePackage": "20180601",
"EndMarketingDatePackage": "20220801",
"SamplePackage": "N"
},
{
"NDCCode": "66794-226-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-226-41) > 2 g in 1 VIAL (66794-226-02) ",
"NDC11Code": "66794-0226-41",
"ProductNDC": "66794-226",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Oxacillin",
"NonProprietaryName": "Oxacillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20180601",
"EndMarketingDate": "20220801",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA206681",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "OXACILLIN SODIUM",
"StrengthNumber": "2",
"StrengthUnit": "g/2g",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2022-08-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"StartMarketingDatePackage": "20180601",
"EndMarketingDatePackage": "20220801",
"SamplePackage": "N"
},
{
"NDCCode": "66794-227-41",
"PackageDescription": "10 BOTTLE in 1 CARTON (66794-227-41) > 10 g in 1 BOTTLE",
"NDC11Code": "66794-0227-41",
"ProductNDC": "66794-227",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Oxacillin",
"NonProprietaryName": "Oxacillin",
"DosageFormName": "INJECTION, POWDER, FOR SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20180801",
"EndMarketingDate": "20230901",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA206760",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "OXACILLIN SODIUM",
"StrengthNumber": "10",
"StrengthUnit": "g/10g",
"Pharm_Classes": "Penicillin-class Antibacterial [EPC], Penicillins [CS]",
"Status": "Deprecated",
"LastUpdate": "2023-09-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"StartMarketingDatePackage": "20180801",
"EndMarketingDatePackage": "20230901",
"SamplePackage": "N"
},
{
"NDCCode": "66794-228-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-228-41) / 5 mL in 1 VIAL (66794-228-02) ",
"NDC11Code": "66794-0228-41",
"ProductNDC": "66794-228",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Rocuronium",
"NonProprietaryName": "Rocuronium",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20200720",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA210437",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "ROCURONIUM BROMIDE",
"StrengthNumber": "50",
"StrengthUnit": "mg/5mL",
"Pharm_Classes": "Neuromuscular Nondepolarizing Blockade [PE], Nondepolarizing Neuromuscular Blocker [EPC]",
"Status": "Active",
"LastUpdate": "2025-09-26",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20200720",
"SamplePackage": "N",
"IndicationAndUsage": "Rocuronium bromide injection is indicated for inpatients and outpatients as an adjunct to general anesthesia to facilitate both rapid sequence and routine tracheal intubation, and to provide skeletal muscle relaxation during surgery or mechanical ventilation.",
"Description": "Rocuronium bromide injection is a nondepolarizing neuromuscular blocking agent with a rapid to intermediate onset depending on dose and intermediate duration. Rocuronium bromide is chemically designated as 1- [17β-(acetyloxy)-3α-hydroxy-2β-(4-morpholinyl)-5α-androstan-16β-yl]-1-(2-propenyl)pyrrolidinium bromide. The structural formula is. The chemical formula is C 32H 53BrN 2O 4 with a molecular weight of 609.70. The partition coefficient of rocuronium bromide in n-octanol/water is 0.5 at 20°C. Rocuronium bromide is supplied as a sterile, nonpyrogenic, isotonic solution that is clear, colorless to yellow/orange, for intravenous injection only. Each mL contains 10 mg rocuronium bromide and 2 mg sodium acetate. The aqueous solution is adjusted to isotonicity with sodium chloride and to a pH of 4 with acetic acid and/or sodium hydroxide."
},
{
"NDCCode": "66794-229-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-229-41) / 10 mL in 1 VIAL (66794-229-02) ",
"NDC11Code": "66794-0229-41",
"ProductNDC": "66794-229",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Rocuronium",
"NonProprietaryName": "Rocuronium",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20200720",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA210437",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "ROCURONIUM BROMIDE",
"StrengthNumber": "100",
"StrengthUnit": "mg/10mL",
"Pharm_Classes": "Neuromuscular Nondepolarizing Blockade [PE], Nondepolarizing Neuromuscular Blocker [EPC]",
"Status": "Active",
"LastUpdate": "2025-09-26",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20200720",
"SamplePackage": "N",
"IndicationAndUsage": "Rocuronium bromide injection is indicated for inpatients and outpatients as an adjunct to general anesthesia to facilitate both rapid sequence and routine tracheal intubation, and to provide skeletal muscle relaxation during surgery or mechanical ventilation.",
"Description": "Rocuronium bromide injection is a nondepolarizing neuromuscular blocking agent with a rapid to intermediate onset depending on dose and intermediate duration. Rocuronium bromide is chemically designated as 1- [17β-(acetyloxy)-3α-hydroxy-2β-(4-morpholinyl)-5α-androstan-16β-yl]-1-(2-propenyl)pyrrolidinium bromide. The structural formula is. The chemical formula is C 32H 53BrN 2O 4 with a molecular weight of 609.70. The partition coefficient of rocuronium bromide in n-octanol/water is 0.5 at 20°C. Rocuronium bromide is supplied as a sterile, nonpyrogenic, isotonic solution that is clear, colorless to yellow/orange, for intravenous injection only. Each mL contains 10 mg rocuronium bromide and 2 mg sodium acetate. The aqueous solution is adjusted to isotonicity with sodium chloride and to a pH of 4 with acetic acid and/or sodium hydroxide."
},
{
"NDCCode": "66794-232-42",
"PackageDescription": "25 VIAL, MULTI-DOSE in 1 CARTON (66794-232-42) / 10 mL in 1 VIAL, MULTI-DOSE (66794-232-02) ",
"NDC11Code": "66794-0232-42",
"ProductNDC": "66794-232",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Succinylcholine Chloride",
"NonProprietaryName": "Succinylcholine Chloride",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "INTRAMUSCULAR; INTRAVENOUS",
"StartMarketingDate": "20210120",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA214246",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "SUCCINYLCHOLINE CHLORIDE",
"StrengthNumber": "20",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Depolarizing Neuromuscular Blocker [EPC], Neuromuscular Depolarizing Blockade [PE]",
"Status": "Active",
"LastUpdate": "2025-10-09",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20210120",
"SamplePackage": "N",
"IndicationAndUsage": "Succinylcholine Chloride Injection is indicated in adults and pediatric patients. as an adjunct to general anesthesia. to facilitate tracheal intubation. to provide skeletal muscle relaxation during surgery or mechanical ventilation.",
"Description": "Succinylcholine Chloride Injection, USP is a sterile, nonpyrogenic solution to be used as a short-acting, depolarizing neuromuscular blocker for intravenous or intramuscular use. Succinylcholine Chloride Injection, USP contains succinylcholine chloride as the active pharmaceutical ingredient. Succinylcholine Chloride, USP is chemically designated C 14H 30Cl 2N 2O 4 and its molecular weight is 361.31. The chemical name of succinylcholine chloride is ethanaminium, 2,2'-[(1,4-dioxo-1,4 butanediyl)bis(oxy)]bis[N,N,N-trimethyl-], dichloride. Succinylcholine chloride is a diquaternary base consisting of the dichloride salt of the dicholine ester of succinic acid. It is a white, odorless, slightly bitter powder, very soluble in water. It has the following structural formula:. Succinylcholine Chloride Injection, USP 200 mg/10 mL (20 mg/mL) is intended for multiple-dose administration and contains preservative. Each 1 mL of Succinylcholine Chloride Injection, USP 200 mg/10 mL (20 mg/mL) multiple-dose fliptop vials contains: 20 mg of succinylcholine chloride, USP (equivalent to 22 mg of Succinylcholine Chloride dihydrate, USP), 1.8 mg of methylparaben and 0.2 mg of propylparaben as preservatives, 4.8 mg of sodium chloride as iso-osmotic agent, and sodium hydroxide and hydrochloric acid as pH adjusters in water for injection. The pH of the solution is between 3.0 and 4.5, with an osmolarity of 0.338 mOsm/mL (calc.)."
},
{
"NDCCode": "66794-235-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-235-41) / 100 mL in 1 VIAL (66794-235-02) ",
"NDC11Code": "66794-0235-41",
"ProductNDC": "66794-235",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Dexmedetomidine Hydrochloride",
"NonProprietaryName": "Dexmedetomidine Hydrochloride",
"DosageFormName": "INJECTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20210401",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA209307",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "DEXMEDETOMIDINE HYDROCHLORIDE",
"StrengthNumber": "4",
"StrengthUnit": "ug/mL",
"Pharm_Classes": "Adrenergic alpha2-Agonists [MoA], Central alpha-2 Adrenergic Agonist [EPC], General Anesthesia [PE]",
"Status": "Active",
"LastUpdate": "2026-08-12",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20210401",
"SamplePackage": "N",
"Description": "Dexmedetomidine hydrochloride in 0.9% sodium chloride injection (4 mcg/mL) is a sterile, nonpyrogenic ready to use solution suitable for intravenous infusion. Dexmedetomidine hydrochloride in 0.9% sodium chloride injection contains dexmedetomidine hydrochloride as the active pharmaceutical ingredient. Dexmedetomidine hydrochloride is a central alpha2-adrenergic agonist. Dexmedetomidine hydrochloride is the S-enantiomer of medetomidine. Dexmedetomidine hydrochloride chemical name is 1H-Imidazole, 4-[1-(2,3-dimethylphenyl)ethyl]-, monohydrochloride, (S). Dexmedetomidine hydrochloride has a molecular weight of 236.7 and the empirical formula is C 13H 16N 2 HCl and the structural formula is:. Dexmedetomidine hydrochloride, USP is a white or almost white powder that is freely soluble in water and has a pKa of 7.1. Its partition coefficient in-octanol: water at pH 7.4 is 2.89. Dexmedetomidine hydrochloride in 0.9% sodium chloride injection is ready to be used. It is supplied as a clear, colorless, isotonic solution with a pH between 4.5 to 7.0. Each mL contains 4.72 mcg of dexmedetomidine hydrochloride, USP (equivalent to 4 mcg or 0.004 mg of dexmedetomidine) and 9 mg sodium chloride in water for injection. The solution is preservative-free and contains no additives or chemical stabilizers."
},
{
"NDCCode": "66794-236-43",
"PackageDescription": "10 BAG in 1 CARTON (66794-236-43) / 300 mL in 1 BAG (66794-236-63) ",
"NDC11Code": "66794-0236-43",
"ProductNDC": "66794-236",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Linezolid",
"NonProprietaryName": "Linezolid",
"DosageFormName": "INJECTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20240308",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA207001",
"LabelerName": "Piramal Critical Care Inc.",
"SubstanceName": "LINEZOLID",
"StrengthNumber": "600",
"StrengthUnit": "mg/300mL",
"Pharm_Classes": "Oxazolidinone Antibacterial [EPC], Oxazolidinones [CS]",
"Status": "Active",
"LastUpdate": "2025-10-23",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20240308",
"SamplePackage": "N",
"IndicationAndUsage": "Linezolid Injection is an oxazolidinone-class antibacterial indicated in adults and children for the treatment of the following infections caused by susceptible Gram-positive bacteria: Nosocomial pneumonia ( 1.1); Community-acquired pneumonia ( 1.2); Complicated skin and skin structure infections, including diabetic foot infections, without concomitant osteomyelitis ( 1.3); Uncomplicated skin and skin structure infections ( 1.4); Vancomycin-resistant Enterococcus faecium infections. ( 1.5). Limitations of Use ( 1.6):. Linezolid Injection is not indicated for the treatment of Gram-negative infections. The safety and efficacy of Linezolid Injection formulations given for longer than 28 days have not been evaluated in controlled clinical trials. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Linezolid Injection formulations and other antibacterial drugs, Linezolid Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. ( 1.7).",
"Description": "Linezolid Injection, contains linezolid, which is a synthetic antibacterial agent of the oxazolidinone class. The chemical name for linezolid is (S)-N-[[3-[3-Fluoro-4-(4-morpholinyl)phenyl]-2-oxo-5-oxazolidinyl] methyl]-acetamide. The empirical formula is C 16H 20FN 3O 4. Its molecular weight is 337.35, and its chemical structure is represented below:. Linezolid Injection is supplied as a ready-to-use sterile isotonic solution for intravenous infusion. Each mL contains 2 mg of linezolid. Inactive ingredients are dextrose monohydrate 50.24 mg/mL in an aqueous vehicle for intravenous administration, sodium citrate dihydrate 1.64 mg/mL, and citric acid anhydrous 0.85 mg/mL. pH adjusted to 4.8 with sodium hydroxide or hydrochloric acid.The sodium (Na+) content is 0.38 mg/mL (5 mEq/300 mL bag)."
},
{
"NDCCode": "66794-237-41",
"PackageDescription": "10 VIAL in 1 CARTON (66794-237-41) / 10 mL in 1 VIAL",
"NDC11Code": "66794-0237-41",
"ProductNDC": "66794-237",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Doxycycline",
"NonProprietaryName": "Doxycycline",
"DosageFormName": "INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20230605",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA215583",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "DOXYCYCLINE HYCLATE",
"StrengthNumber": "100",
"StrengthUnit": "mg/10mL",
"Pharm_Classes": "Tetracycline-class Drug [EPC], Tetracyclines [CS]",
"Status": "Active",
"LastUpdate": "2025-09-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20230605",
"SamplePackage": "N",
"IndicationAndUsage": "To reduce the development of drug-resistant bacteria and maintain the effectiveness of Doxycycline for Injection, USP and other antibacterial drugs, Doxycycline for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Doxycycline for Injection, USP is indicated in infections caused by the following microorganisms. Rickettsiae (Rocky Mountain spotted fever, typhus fever, and the typhus group, Q fever, rickettsial pox and tick fevers). Mycoplasma pneumoniae (PPLO, Eaton Agent). Agents of psittacosis and ornithosis. Agents of lymphogranuloma venereum and granuloma inguinale. The spirochetal agent of relapsing fever (Borrelia recurrentis). The following gram-negative microorganisms. Haemophilus ducreyi (chancroid). Yersinia pestis and Francisella tularensis. Bartonella bacilliformis. Bacteroides species. Vibrio cholerae and Campylobacter fetus. Brucella species (in conjunction with streptomycin). Because many strains of the following groups of microorganisms have been shown to be resistant to tetracyclines, culture and susceptibility testing are recommended. Doxycycline is indicated for treatment of infections caused by the following gram-negative microorganisms when bacteriologic testing indicates appropriate susceptibility to the drug. Escherichia coli. Enterobacter aerogenes. Shigella species. Acinetobacter species. Haemophilus influenzae (respiratory infections). Klebsiella species (respiratory and urinary infections). Doxycycline is indicated for treatment of infections caused by the following gram-positive microorganisms when bacteriologic testing indicates appropriate susceptibility to the drug. Streptococcus species:. Up to 44 percent of strains of Streptococcus pyogenes and 74 percent of Enterococcus faecalis have been found to be resistant to tetracycline drugs. Therefore, tetracyclines should not be used for streptococcal disease unless the organism has been demonstrated to be sensitive. For upper respiratory infections due to group A beta-hemolytic streptococci, penicillin is the usual drug of choice, including prophylaxis of rheumatic fever. Streptococcus pneumoniae. Staphylococcus aureus, respiratory, skin and soft tissue infections. Tetracyclines are not the drugs of choice in the treatment of any type of staphylococcal infections. Anthrax due to Bacillus anthracis, including inhalational anthrax (post-exposure): to reduce the incidence or progression of disease following exposure to aerosolized Bacillus anthracis. When penicillin is contraindicated, doxycycline is an alternative drug in the treatment of infections due to. Neisseria gonorrhoeae and N. meningitidis. Treponema pallidum and Treponema pallidum subspecies pertenue (syphilis and yaws). Listeria monocytogenes. Clostridium species. Fusobacterium fusiforme (Vincent's infection). Actinomyces species. In acute intestinal amebiasis, doxycycline may be a useful adjunct to amebicides. Doxycycline is indicated in the treatment of trachoma, although the infectious agent is not always eliminated, as judged by immunofluorescence.",
"Description": "Doxycycline for Injection, USP is a sterile, lyophilized powder prepared from a solution of doxycycline hyclate, ascorbic acid and mannitol in Water for Injection. Doxycycline hyclate is a broad spectrum antibiotic derived from oxytetracycline. It is meant for INTRAVENOUS use only after reconstitution. Doxycycline hyclate is a yellowish crystalline powder which is chemically designated 4-(Dimethylamino)-1,4,4a,5,5a,6,11,12a-octahydro-3,5,10,12,12a-pentahydroxy-6-methyl-1,11-demonohydrochloride, compound with ethyl alcohol (2:1), monohydrate. It has the following structural formula. Doxycycline hyclate is soluble in water and chars at 201°C without melting. The base doxycycline has a high degree of lipid solubility and a low affinity for calcium binding. It is highly stable in normal human serum. Each 100 mg vial contains: Doxycycline hyclate equivalent to 100 mg doxycycline; ascorbic acid 480 mg; mannitol 300 mg. pH of the reconstituted solution (10 mg/mL) is between 1.8 and 3.3."
},
{
"NDCCode": "66794-238-43",
"PackageDescription": "10 VIAL in 1 CARTON (66794-238-43) / 2 mL in 1 VIAL (66794-238-02) ",
"NDC11Code": "66794-0238-43",
"ProductNDC": "66794-238",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Dexmedetomidine",
"NonProprietaryName": "Dexmedetomidine",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "INTRAVENOUS",
"StartMarketingDate": "20200424",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA214794",
"LabelerName": "Piramal Critical Care Inc",
"SubstanceName": "DEXMEDETOMIDINE HYDROCHLORIDE",
"StrengthNumber": "100",
"StrengthUnit": "ug/mL",
"Pharm_Classes": "Adrenergic alpha2-Agonists [MoA], Central alpha-2 Adrenergic Agonist [EPC], General Anesthesia [PE]",
"Status": "Deprecated",
"LastUpdate": "2026-01-21",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20200424",
"SamplePackage": "N"
}
]
}
<?xml version="1.0" encoding="utf-8"?>
<NDCList>
<NDC>
<NDCCode>66794-012-10</NDCCode>
<PackageDescription>100 mL in 1 BOTTLE, GLASS (66794-012-10) </PackageDescription>
<NDC11Code>66794-0012-10</NDC11Code>
<ProductNDC>66794-012</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Sojourn</ProprietaryName>
<NonProprietaryName>Sevoflurane</NonProprietaryName>
<DosageFormName>LIQUID</DosageFormName>
<RouteName>RESPIRATORY (INHALATION)</RouteName>
<StartMarketingDate>20100413</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA077867</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>SEVOFLURANE</SubstanceName>
<StrengthNumber>1</StrengthNumber>
<StrengthUnit>mL/mL</StrengthUnit>
<Pharm_Classes>General Anesthesia [PE], General Anesthetic [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2025-07-11</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20100413</StartMarketingDatePackage>
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<IndicationAndUsage>Sojourn ® (sevoflurane, USP) is indicated for induction and maintenance of general anesthesia in adult and pediatric patients for inpatient and outpatient surgery. Sojourn ® (sevoflurane, USP) should be administered only by persons trained in the administration of general anesthesia. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment, and circulatory resuscitation must be immediately available. Since level of anesthesia may be altered rapidly, only vaporizers producing predictable concentrations of sevoflurane, USP should be used.</IndicationAndUsage>
<Description>Sojourn ® (sevoflurane, USP), volatile liquid for inhalation, a nonflammable and nonexplosive liquid administered by vaporization, is a halogenated general inhalation anesthetic drug. Sevoflurane is fluoromethyl 2,2,2,-trifluoro-1-(trifluoromethyl) ethyl ether and its structural formula is:. Sevoflurane, Physical Constants are. Distribution Partition Coefficients at 37°C. Mean Component/Gas Partition Coefficients at 25°C for Polymers Used Commonly in Medical Applications. Sevoflurane is nonflammable and nonexplosive as defined by the requirements of International Electrotechnical Commission 601-2-13. Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium. Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is slightly soluble in water. Sevoflurane is stable when stored under normal room lighting conditions according to instructions. No discernible degradation of sevoflurane occurs in the presence of strong acids or heat. When in contact with alkaline CO 2 absorbents (e.g., Baralyme ® and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are either undetectable or present in non-toxic amounts when used as directed with fresh absorbents. Sevoflurane degradation and subsequent degradant formation are enhanced by increasing absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and desiccated CO 2 absorbents (especially with potassium hydroxide containing absorbents e.g., Baralyme). Sevoflurane alkaline degradation occurs by two pathways. The first results from the loss of hydrogen fluoride with the formation of pentafluoroisopropenyl fluoromethyl ether, (PIFE, C 4H 2F 6O), also known as Compound A, and trace amounts of pentafluoromethoxy isopropyl fluoromethyl ether, (PMFE, C 5H 6F 6O), also known as Compound B. The second pathway for degradation of sevoflurane, which occurs primarily in the presence of desiccated CO 2 absorbents, is discussed later. In the first pathway, the defluorination pathway, the production of degradants in the anesthesia circuit results from the extraction of the acidic proton in the presence of a strong base (KOH and/or NaOH) forming an alkene (Compound A) from sevoflurane similar to formation of 2- bromo-2-chloro-1,1-difluoro ethylene (BCDFE) from halothane. Laboratory simulations have shown that the concentration of these degradants is inversely correlated with the fresh gas flow rate (See Figure 1). Since the reaction of carbon dioxide with absorbents is exothermic, the temperature increase will be determined by quantities of CO 2 absorbed, which in turn will depend on fresh gas flow in the anesthesia circle system, metabolic status of the patient, and ventilation. The relationship of temperature produced by varying levels of CO 2 and Compound A production is illustrated in the following in vitro simulation where CO 2 was added to a circle absorber system. Compound A concentration in a circle absorber system increases as a function of increasing CO 2 absorbent temperature and composition (Baralyme producing higher levels than soda lime), increased body temperature, and increased minute ventilation, and decreasing fresh gas flow rates. It has been reported that the concentration of Compound A increases significantly with prolonged dehydration of Baralyme. Compound A exposure in patients also has been shown to rise with increased sevoflurane concentrations and duration of anesthesia. In a clinical study in which sevoflurane was administered to patients under low flow conditions for ≥ 2 hours at flow rates of 1 Liter/minute, Compound A levels were measured in an effort to determine the relationship between MAC hours and Compound A levels produced. The relationship between Compound A levels and sevoflurane exposure are shown in Figure 2a. Compound A has been shown to be nephrotoxic in rats after exposures that have varied in duration from one to three hours. No histopathologic change was seen at a concentration of up to 270 ppm for one hour. Sporadic single cell necrosis of proximal tubule cells has been reported at a concentration of 114 ppm after a 3-hour exposure to Compound A in rats. The LC50 reported at 1 hour is 1050-1090 ppm (male-female) and, at 3 hours, 350-490 ppm (male-female). An experiment was performed comparing sevoflurane plus 75 or 100 ppm Compound A with an active control to evaluate the potential nephrotoxicity of Compound A in non-human primates. A single 8-hour exposure of Sevoflurane in the presence of Compound A produced single-cell renal tubular degeneration and single-cell necrosis in cynomolgus monkeys. These changes are consistent with the increased urinary protein, glucose level and enzymic activity noted on days one and three on the clinical pathology evaluation. This nephrotoxicity produced by Compound A is dose and duration of exposure dependent. At a fresh gas flow rate of 1 L/min, mean maximum concentrations of Compound A in the anesthesia circuit in clinical settings are approximately 20 ppm (0.002%) with soda lime and 30 ppm (0.003%) with Baralyme in adult patients; mean maximum concentrations in pediatric patients with soda lime are about half those found in adults. The highest concentration observed in a single patient with Baralyme was 61 ppm (0.0061%) and 32 ppm (0.0032%) with soda lime. The levels of Compound A at which toxicity occurs in humans is not known. The second pathway for degradation of sevoflurane occurs primarily in the presence of desiccated CO 2 absorbents and leads to the dissociation of sevoflurane into hexafluoroisopropanol (HFIP) and formaldehyde. HFIP is inactive, non-genotoxic, rapidly glucuronidated and cleared by the liver. Formaldehyde is present during normal metabolic processes. Upon exposure to a highly desiccated absorbent, formaldehyde can further degrade into methanol and formate. Formate can contribute to the formation of carbon monoxide in the presence of high temperature that can be associated with desiccated Baralyme ®. Methanol can react with Compound A to form the methoxy addition product Compound B. Compound B can undergo further HF elimination to form Compounds C, D, and E. Sevoflurane degradants were observed in the respiratory circuit of an experimental anesthesia machine using desiccated CO 2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (> 2 hours). Concentrations of formaldehyde observed with desiccated soda lime in this experimental anesthesia respiratory circuit were consistent with levels that could potentially result in respiratory irritation. Although KOH containing CO 2 absorbents are no longer commercially available, in the laboratory experiments, exposure of sevoflurane to the desiccated KOH containing CO 2 absorbent, Baralyme, resulted in the detection of substantially greater degradant levels.</Description>
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<Description>Sojourn ® (sevoflurane, USP), volatile liquid for inhalation, a nonflammable and nonexplosive liquid administered by vaporization, is a halogenated general inhalation anesthetic drug. Sevoflurane is fluoromethyl 2,2,2,-trifluoro-1-(trifluoromethyl) ethyl ether and its structural formula is:. Sevoflurane, Physical Constants are. Distribution Partition Coefficients at 37°C. Mean Component/Gas Partition Coefficients at 25°C for Polymers Used Commonly in Medical Applications. Sevoflurane is nonflammable and nonexplosive as defined by the requirements of International Electrotechnical Commission 601-2-13. Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium. Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is slightly soluble in water. Sevoflurane is stable when stored under normal room lighting conditions according to instructions. No discernible degradation of sevoflurane occurs in the presence of strong acids or heat. When in contact with alkaline CO 2 absorbents (e.g., Baralyme ® and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are either undetectable or present in non-toxic amounts when used as directed with fresh absorbents. Sevoflurane degradation and subsequent degradant formation are enhanced by increasing absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and desiccated CO 2 absorbents (especially with potassium hydroxide containing absorbents e.g., Baralyme). Sevoflurane alkaline degradation occurs by two pathways. The first results from the loss of hydrogen fluoride with the formation of pentafluoroisopropenyl fluoromethyl ether, (PIFE, C 4H 2F 6O), also known as Compound A, and trace amounts of pentafluoromethoxy isopropyl fluoromethyl ether, (PMFE, C 5H 6F 6O), also known as Compound B. The second pathway for degradation of sevoflurane, which occurs primarily in the presence of desiccated CO 2 absorbents, is discussed later. In the first pathway, the defluorination pathway, the production of degradants in the anesthesia circuit results from the extraction of the acidic proton in the presence of a strong base (KOH and/or NaOH) forming an alkene (Compound A) from sevoflurane similar to formation of 2- bromo-2-chloro-1,1-difluoro ethylene (BCDFE) from halothane. Laboratory simulations have shown that the concentration of these degradants is inversely correlated with the fresh gas flow rate (See Figure 1). Since the reaction of carbon dioxide with absorbents is exothermic, the temperature increase will be determined by quantities of CO 2 absorbed, which in turn will depend on fresh gas flow in the anesthesia circle system, metabolic status of the patient, and ventilation. The relationship of temperature produced by varying levels of CO 2 and Compound A production is illustrated in the following in vitro simulation where CO 2 was added to a circle absorber system. Compound A concentration in a circle absorber system increases as a function of increasing CO 2 absorbent temperature and composition (Baralyme producing higher levels than soda lime), increased body temperature, and increased minute ventilation, and decreasing fresh gas flow rates. It has been reported that the concentration of Compound A increases significantly with prolonged dehydration of Baralyme. Compound A exposure in patients also has been shown to rise with increased sevoflurane concentrations and duration of anesthesia. In a clinical study in which sevoflurane was administered to patients under low flow conditions for ≥ 2 hours at flow rates of 1 Liter/minute, Compound A levels were measured in an effort to determine the relationship between MAC hours and Compound A levels produced. The relationship between Compound A levels and sevoflurane exposure are shown in Figure 2a. Compound A has been shown to be nephrotoxic in rats after exposures that have varied in duration from one to three hours. No histopathologic change was seen at a concentration of up to 270 ppm for one hour. Sporadic single cell necrosis of proximal tubule cells has been reported at a concentration of 114 ppm after a 3-hour exposure to Compound A in rats. The LC50 reported at 1 hour is 1050-1090 ppm (male-female) and, at 3 hours, 350-490 ppm (male-female). An experiment was performed comparing sevoflurane plus 75 or 100 ppm Compound A with an active control to evaluate the potential nephrotoxicity of Compound A in non-human primates. A single 8-hour exposure of Sevoflurane in the presence of Compound A produced single-cell renal tubular degeneration and single-cell necrosis in cynomolgus monkeys. These changes are consistent with the increased urinary protein, glucose level and enzymic activity noted on days one and three on the clinical pathology evaluation. This nephrotoxicity produced by Compound A is dose and duration of exposure dependent. At a fresh gas flow rate of 1 L/min, mean maximum concentrations of Compound A in the anesthesia circuit in clinical settings are approximately 20 ppm (0.002%) with soda lime and 30 ppm (0.003%) with Baralyme in adult patients; mean maximum concentrations in pediatric patients with soda lime are about half those found in adults. The highest concentration observed in a single patient with Baralyme was 61 ppm (0.0061%) and 32 ppm (0.0032%) with soda lime. The levels of Compound A at which toxicity occurs in humans is not known. The second pathway for degradation of sevoflurane occurs primarily in the presence of desiccated CO 2 absorbents and leads to the dissociation of sevoflurane into hexafluoroisopropanol (HFIP) and formaldehyde. HFIP is inactive, non-genotoxic, rapidly glucuronidated and cleared by the liver. Formaldehyde is present during normal metabolic processes. Upon exposure to a highly desiccated absorbent, formaldehyde can further degrade into methanol and formate. Formate can contribute to the formation of carbon monoxide in the presence of high temperature that can be associated with desiccated Baralyme ®. Methanol can react with Compound A to form the methoxy addition product Compound B. Compound B can undergo further HF elimination to form Compounds C, D, and E. Sevoflurane degradants were observed in the respiratory circuit of an experimental anesthesia machine using desiccated CO 2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (> 2 hours). Concentrations of formaldehyde observed with desiccated soda lime in this experimental anesthesia respiratory circuit were consistent with levels that could potentially result in respiratory irritation. Although KOH containing CO 2 absorbents are no longer commercially available, in the laboratory experiments, exposure of sevoflurane to the desiccated KOH containing CO 2 absorbent, Baralyme, resulted in the detection of substantially greater degradant levels.</Description>
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<IndicationAndUsage>Terrell (isoflurane, USP) may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.</IndicationAndUsage>
<Description>Terrell (isoflurane, USP), a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is. Some physical constants are. Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper.</Description>
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<IndicationAndUsage>Sevoflurane, USP is indicated for induction and maintenance of general anesthesia in adult and pediatric patients for inpatient and outpatient surgery. Sevoflurane, USP should be administered only by persons trained in the administration of general anesthesia. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment, and circulatory resuscitation must be immediately available. Since level of anesthesia may be altered rapidly, only vaporizers producing predictable concentrations of sevoflurane, USP should be used.</IndicationAndUsage>
<Description>Sevoflurane, USP, volatile liquid for inhalation, a nonflammable and nonexplosive liquid administered by vaporization, is a halogenated general inhalation anesthetic drug. Sevoflurane is fluoromethyl 2,2,2,-trifluoro-1-(trifluoromethyl) ethyl ether and its structural formula is. Sevoflurane, Physical Constants are. Distribution Partition Coefficients at 37°C. Mean Component/Gas Partition Coefficients at 25°C for Polymers Used Commonly in Medical Applications. Sevoflurane is nonflammable and nonexplosive as defined by the requirements of International Electrotechnical Commission 601-2-13. Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium. Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is slightly soluble in water. Sevoflurane is stable when stored under normal room lighting conditions according to instructions. No discernible degradation of sevoflurane occurs in the presence of strong acids or heat. When in contact with alkaline CO 2 absorbents (e.g., Baralyme ® and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are either undetectable or present in non-toxic amounts when used as directed with fresh absorbents. Sevoflurane degradation and subsequent degradant formation are enhanced by increasing absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and desiccated CO 2 absorbents (especially with potassium hydroxide containing absorbents e.g., Baralyme). Sevoflurane alkaline degradation occurs by two pathways. The first results from the loss of hydrogen fluoride with the formation of pentafluoroisopropenyl fluoromethyl ether, (PIFE, C 4H 2F 6O), also known as Compound A, and trace amounts of pentafluoromethoxy isopropyl fluoromethyl ether, (PMFE, C 5H 6F 6O), also known as Compound B. The second pathway for degradation of sevoflurane, which occurs primarily in the presence of desiccated CO 2 absorbents, is discussed later. In the first pathway, the defluorination pathway, the production of degradants in the anesthesia circuit results from the extraction of the acidic proton in the presence of a strong base (KOH and/or NaOH) forming an alkene (Compound A) from sevoflurane similar to formation of 2- bromo-2-chloro-1,1-difluoro ethylene (BCDFE) from halothane. Laboratory simulations have shown that the concentration of these degradants is inversely correlated with the fresh gas flow rate (See Figure 1). Since the reaction of carbon dioxide with absorbents is exothermic, the temperature increase will be determined by quantities of CO 2 absorbed, which in turn will depend on fresh gas flow in the anesthesia circle system, metabolic status of the patient, and ventilation. The relationship of temperature produced by varying levels of CO 2 and Compound A production is illustrated in the following in vitro simulation where CO 2 was added to a circle absorber system. Compound A concentration in a circle absorber system increases as a function of increasing CO 2 absorbent temperature and composition (Baralyme producing higher levels than soda lime), increased body temperature, and increased minute ventilation, and decreasing fresh gas flow rates. It has been reported that the concentration of Compound A increases significantly with prolonged dehydration of Baralyme. Compound A exposure in patients also has been shown to rise with increased sevoflurane concentrations and duration of anesthesia. In a clinical study in which sevoflurane was administered to patients under low flow conditions for ≥ 2 hours at flow rates of 1 Liter/minute, Compound A levels were measured in an effort to determine the relationship between MAC hours and Compound A levels produced. The relationship between Compound A levels and sevoflurane exposure are shown in Figure 2a. Compound A has been shown to be nephrotoxic in rats after exposures that have varied in duration from one to three hours. No histopathologic change was seen at a concentration of up to 270 ppm for one hour. Sporadic single cell necrosis of proximal tubule cells has been reported at a concentration of 114 ppm after a 3-hour exposure to Compound A in rats. The LC 50 reported at 1 hour is 1050 - 1090 ppm (male-female) and, at 3 hours, 350-490 ppm (male-female). An experiment was performed comparing sevoflurane plus 75 or 100 ppm Compound A with an active control to evaluate the potential nephrotoxicity of Compound A in non-human primates. A single 8-hour exposure of Sevoflurane in the presence of Compound A produced single-cell renal tubular degeneration and single-cell necrosis in cynomolgus monkeys. These changes are consistent with the increased urinary protein, glucose level and enzymic activity noted on days one and three on the clinical pathology evaluation. This nephrotoxicity produced by Compound A is dose and duration of exposure dependent. At a fresh gas flow rate of 1 L/min, mean maximum concentrations of Compound A in the anesthesia circuit in clinical settings are approximately 20 ppm (0.002%) with soda lime and 30 ppm (0.003%) with Baralyme in adult patients; mean maximum concentrations in pediatric patients with soda lime are about half those found in adults. The highest concentration observed in a single patient with Baralyme was 61 ppm (0.0061%) and 32 ppm (0.0032%) with soda lime. The levels of Compound A at which toxicity occurs in humans is not known. The second pathway for degradation of sevoflurane occurs primarily in the presence of desiccated CO 2 absorbents and leads to the dissociation of sevoflurane into hexafluoroisopropanol (HFIP) and formaldehyde. HFIP is inactive, non-genotoxic, rapidly glucuronidated and cleared by the liver. Formaldehyde is present during normal metabolic processes. Upon exposure to a highly desiccated absorbent, formaldehyde can further degrade into methanol and formate. Formate can contribute to the formation of carbon monoxide in the presence of high temperature that can be associated with desiccated Baralyme. Methanol can react with Compound A to form the methoxy addition product Compound B. Compound B can undergo further HF elimination to form Compounds C, D, and E. Sevoflurane degradants were observed in the respiratory circuit of an experimental anesthesia machine using desiccated CO 2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (> 2 hours). Concentrations of formaldehyde observed with desiccated soda lime in this experimental anesthesia respiratory circuit were consistent with levels that could potentially result in respiratory irritation. Although KOH containing CO 2 absorbents are no longer commercially available, in the laboratory experiments, exposure of sevoflurane to the desiccated KOH containing CO 2 absorbent, Baralyme, resulted in the detection of substantially greater degradant levels.</Description>
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<IndicationAndUsage>Isoflurane USP may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.</IndicationAndUsage>
<Description>Isoflurane USP (isoflurane, USP), a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is. Some physical constants are. Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper.</Description>
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<IndicationAndUsage>Terrell may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.</IndicationAndUsage>
<Description>Terrell (isoflurane, USP), a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is. Some physical constants are. Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper.</Description>
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<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Isoflurane</ProprietaryName>
<NonProprietaryName>Isoflurane</NonProprietaryName>
<DosageFormName>LIQUID</DosageFormName>
<RouteName>RESPIRATORY (INHALATION)</RouteName>
<StartMarketingDate>20131113</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA074416</ApplicationNumber>
<LabelerName>Piramal Critical Care, Inc.</LabelerName>
<SubstanceName>ISOFLURANE</SubstanceName>
<StrengthNumber>1</StrengthNumber>
<StrengthUnit>mL/mL</StrengthUnit>
<Pharm_Classes>General Anesthesia [PE], General Anesthetic [EPC]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-12-04</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20131113</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Isoflurane USP may be used for induction and maintenance of general anesthesia. Adequate data have not been developed to establish its application in obstetrical anesthesia.</IndicationAndUsage>
<Description>Isoflurane USP, a nonflammable liquid administered by vaporizing, is a general inhalation anesthetic drug. It is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is:.</Description>
</NDC>
<NDC>
<NDCCode>66794-205-41</NDCCode>
<PackageDescription>10 VIAL, GLASS in 1 CARTON (66794-205-41) / 20 mL in 1 VIAL, GLASS (66794-205-02) </PackageDescription>
<NDC11Code>66794-0205-41</NDC11Code>
<ProductNDC>66794-205</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Glycopyrrolate</ProprietaryName>
<NonProprietaryName>Glycopyrrolate</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20190711</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA210842</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>GLYCOPYRROLATE</SubstanceName>
<StrengthNumber>.2</StrengthNumber>
<StrengthUnit>mg/mL</StrengthUnit>
<Pharm_Classes>Anticholinergic [EPC], Cholinergic Antagonists [MoA], Cholinergic Muscarinic Antagonist [EPC], Cholinergic Muscarinic Antagonists [MoA]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2026-06-26</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20190711</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<Description>Glycopyrrolate is a synthetic anticholinergic agent. It is a quaternary ammonium salt with the following chemical name. 3[(cyclopentylhydroxyphenylacetyl)oxy]-1,1-dimethyl pyrrolidinium bromide. The molecular formula is C 19H 28BrNO 3 and the molecular weight is 398.33. Its structural formula is as follows. Glycopyrrolate occurs as a white, odorless, crystalline powder. It is soluble in water and alcohol, and practically insoluble in chloroform and ether. It is completely ionized at physiological pH values. Glycopyrrolate Injection, USP, is a clear, colorless, sterile liquid with a pH of 2.0 to 3.0. The partition coefficient of glycopyrrolate in n-octanol/water system is 0.304 (log 10 P = -1.52) at ambient room temperature (24°C). Glycopyrrolate injection, USP, is intended for intramuscular or intravenous administration. Each 1 mL contains 0.2 mg of glycopyrrolate, water for injection, Benzyl Alcohol, NF 0.9% (preservative) and hydrochloric acid as pH adjusters.</Description>
</NDC>
<NDC>
<NDCCode>66794-206-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-206-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-206-02) </PackageDescription>
<NDC11Code>66794-0206-41</NDC11Code>
<ProductNDC>66794-206</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ampicillin And Sulbactam</ProprietaryName>
<NonProprietaryName>Ampicillin And Sulbactam</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20190520</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090579</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>AMPICILLIN SODIUM; SULBACTAM SODIUM</SubstanceName>
<StrengthNumber>1; .5</StrengthNumber>
<StrengthUnit>g/1; g/1</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20190520</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Ampicillin and sulbactam for injection, USP is indicated for the treatment of infections due to susceptible strains of the designated microorganisms in the conditions listed below. Skin and Skin Structure Infections caused by beta-lactamase producing strains of Staphylococcus aureus, Escherichia coli,* Klebsiella spp.* (including K. pneumoniae*), Proteus mirabilis,* Bacteroides fragilis,* Enterobacter spp.,* and Acinetobacter calcoaceticus.*. NOTE: For information on use in pediatric patients (see PRECAUTIONS–Pediatric Useand CLINICAL STUDIESsections). Intra-Abdominal Infections caused by beta-lactamase producing strains of Escherichia coli, Klebsiella spp. (including K. pneumoniae*), Bacteroides spp. (including B. fragilis), and Enterobacter spp.*. Gynecological Infections caused by beta-lactamase producing strains of Escherichia coli,* and Bacteroides spp.* (including B. fragilis*). * Efficacy for this organism in this organ system was studied in fewer than 10 infections. While ampicillin and sulbactam for injection, USP is indicated only for the conditions listed above, infections caused by ampicillin-susceptible organisms are also amenable to treatment with ampicillin and sulbactam for injection, USP due to its ampicillin content. Therefore, mixed infections caused by ampicillin-susceptible organisms and beta-lactamase producing organisms susceptible to ampicillin and sulbactam for injection, USP should not require the addition of another antibacterial. Appropriate culture and susceptibility tests should be performed before treatment in order to isolate and identify the organisms causing infection and to determine their susceptibility to ampicillin and sulbactam for injection, USP. Therapy may be instituted prior to obtaining the results from bacteriological and susceptibility studies when there is reason to believe the infection may involve any of the beta-lactamase producing organisms listed above in the indicated organ systems. Once the results are known, therapy should be adjusted if appropriate. To reduce the development of drug-resistant bacteria and maintain effectiveness of ampicillin and sulbactam for injection, USP and other antibacterial drugs, ampicillin and sulbactam for injection, USP should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Ampicillin and Sulbactam for Injection is an injectable antibacterial combination consisting of the semisynthetic antibacterial ampicillin sodium and the beta-lactamase inhibitor sulbactam sodium for intravenous and intramuscular administration. Ampicillin sodium is derived from the penicillin nucleus, 6-aminopenicillanic acid. Chemically, it is monosodium (2S,5R,6R)-6-[(R)-2-amino-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate and has a molecular weight of 371.39. Its chemical formula is C 16H 18N 3NaO 4S. The structural formula is:. Sulbactam sodium is a derivative of the basic penicillin nucleus. Chemically, sulbactam sodium is sodium penicillinate sulfone; sodium (2S, 5R)-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate 4,4-dioxide. Its chemical formula is C 8H 10NNaO 5S with a molecular weight of 255.22. The structural formula is:. Ampicillin and sulbactam for Injection, ampicillin sodium/sulbactam sodium parenteral combination, is available as a white to off-white dry powder for reconstitution. Ampicillin and sulbactam for Injection dry powder is freely soluble in aqueous diluents to yield pale yellow to yellow solutions containing ampicillin sodium and sulbactam sodium equivalent to 250 mg ampicillin per mL and 125 mg sulbactam per mL. The pH of the solutions is between 8.0 and 10.0. Dilute solutions (up to 30 mg ampicillin and 15 mg sulbactam per mL) are essentially colorless to pale yellow. The pH of dilute solutions remains the same. Each 1.5 gram of Ampicillin and sulbactam for Injection contains 1 gram ampicillin as the sodium salt plus 0.5 gram sulbactam as the sodium salt. The sodium content is approximately 115 mg (5 mEq) of sodium per vial. Each 3 gram of Ampicillin and sulbactam for Injection contains 2 gram ampicillin as the sodium salt plus 1 gram sulbactam as the sodium salt. The sodium content is approximately 230 mg (10 mEq) of sodium per vial.</Description>
</NDC>
<NDC>
<NDCCode>66794-207-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-207-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-207-02) </PackageDescription>
<NDC11Code>66794-0207-41</NDC11Code>
<ProductNDC>66794-207</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ampicillin And Sulbactam</ProprietaryName>
<NonProprietaryName>Ampicillin And Sulbactam</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20190520</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090579</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>AMPICILLIN SODIUM; SULBACTAM SODIUM</SubstanceName>
<StrengthNumber>2; 1</StrengthNumber>
<StrengthUnit>g/1; g/1</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20190520</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Ampicillin and sulbactam for injection, USP is indicated for the treatment of infections due to susceptible strains of the designated microorganisms in the conditions listed below. Skin and Skin Structure Infections caused by beta-lactamase producing strains of Staphylococcus aureus, Escherichia coli,* Klebsiella spp.* (including K. pneumoniae*), Proteus mirabilis,* Bacteroides fragilis,* Enterobacter spp.,* and Acinetobacter calcoaceticus.*. NOTE: For information on use in pediatric patients (see PRECAUTIONS–Pediatric Useand CLINICAL STUDIESsections). Intra-Abdominal Infections caused by beta-lactamase producing strains of Escherichia coli, Klebsiella spp. (including K. pneumoniae*), Bacteroides spp. (including B. fragilis), and Enterobacter spp.*. Gynecological Infections caused by beta-lactamase producing strains of Escherichia coli,* and Bacteroides spp.* (including B. fragilis*). * Efficacy for this organism in this organ system was studied in fewer than 10 infections. While ampicillin and sulbactam for injection, USP is indicated only for the conditions listed above, infections caused by ampicillin-susceptible organisms are also amenable to treatment with ampicillin and sulbactam for injection, USP due to its ampicillin content. Therefore, mixed infections caused by ampicillin-susceptible organisms and beta-lactamase producing organisms susceptible to ampicillin and sulbactam for injection, USP should not require the addition of another antibacterial. Appropriate culture and susceptibility tests should be performed before treatment in order to isolate and identify the organisms causing infection and to determine their susceptibility to ampicillin and sulbactam for injection, USP. Therapy may be instituted prior to obtaining the results from bacteriological and susceptibility studies when there is reason to believe the infection may involve any of the beta-lactamase producing organisms listed above in the indicated organ systems. Once the results are known, therapy should be adjusted if appropriate. To reduce the development of drug-resistant bacteria and maintain effectiveness of ampicillin and sulbactam for injection, USP and other antibacterial drugs, ampicillin and sulbactam for injection, USP should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Ampicillin and Sulbactam for Injection is an injectable antibacterial combination consisting of the semisynthetic antibacterial ampicillin sodium and the beta-lactamase inhibitor sulbactam sodium for intravenous and intramuscular administration. Ampicillin sodium is derived from the penicillin nucleus, 6-aminopenicillanic acid. Chemically, it is monosodium (2S,5R,6R)-6-[(R)-2-amino-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate and has a molecular weight of 371.39. Its chemical formula is C 16H 18N 3NaO 4S. The structural formula is:. Sulbactam sodium is a derivative of the basic penicillin nucleus. Chemically, sulbactam sodium is sodium penicillinate sulfone; sodium (2S, 5R)-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylate 4,4-dioxide. Its chemical formula is C 8H 10NNaO 5S with a molecular weight of 255.22. The structural formula is:. Ampicillin and sulbactam for Injection, ampicillin sodium/sulbactam sodium parenteral combination, is available as a white to off-white dry powder for reconstitution. Ampicillin and sulbactam for Injection dry powder is freely soluble in aqueous diluents to yield pale yellow to yellow solutions containing ampicillin sodium and sulbactam sodium equivalent to 250 mg ampicillin per mL and 125 mg sulbactam per mL. The pH of the solutions is between 8.0 and 10.0. Dilute solutions (up to 30 mg ampicillin and 15 mg sulbactam per mL) are essentially colorless to pale yellow. The pH of dilute solutions remains the same. Each 1.5 gram of Ampicillin and sulbactam for Injection contains 1 gram ampicillin as the sodium salt plus 0.5 gram sulbactam as the sodium salt. The sodium content is approximately 115 mg (5 mEq) of sodium per vial. Each 3 gram of Ampicillin and sulbactam for Injection contains 2 gram ampicillin as the sodium salt plus 1 gram sulbactam as the sodium salt. The sodium content is approximately 230 mg (10 mEq) of sodium per vial.</Description>
</NDC>
<NDC>
<NDCCode>66794-209-41</NDCCode>
<PackageDescription>10 VIAL, SINGLE-DOSE in 1 CARTON (66794-209-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL, SINGLE-DOSE (66794-209-02) </PackageDescription>
<NDC11Code>66794-0209-41</NDC11Code>
<ProductNDC>66794-209</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Cefepime</ProprietaryName>
<NonProprietaryName>Cefepime</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20190520</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA091048</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc.</LabelerName>
<SubstanceName>CEFEPIME HYDROCHLORIDE</SubstanceName>
<StrengthNumber>1</StrengthNumber>
<StrengthUnit>g/1</StrengthUnit>
<Pharm_Classes>Cephalosporin Antibacterial [EPC], Cephalosporins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20190520</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>1.1 Pneumonia. Cefepime for Injection is indicated in the treatment of pneumonia (moderate to severe) caused by susceptible strains of Streptococcus pneumoniae, including cases associated with concurrent bacteremia, Pseudomonas aeruginosa, Klebsiella pneumoniae, or Enterobacter species. 1.2 Empiric Therapy for Febrile Neutropenic Patients. Cefepime for Injection as monotherapy is indicated for empiric treatment of febrile neutropenic patients. In patients at high risk for severe infection (including patients with a history of recent bone marrow transplantation, with hypotension at presentation, with an underlying hematologic malignancy, or with severe or prolonged neutropenia), antimicrobial monotherapy may not be appropriate. Insufficient data exist to support the efficacy of cefepime monotherapy in such patients [see Clinical Studies ( 14.1)]. 1.3 Uncomplicated and Complicated Urinary Tract Infections (including pyelonephritis). Cefepime for Injection is indicated in the treatment of uncomplicated and complicated urinary tract infections (including pyelonephritis) caused by susceptible isolates of Escherichia coli or Klebsiella pneumoniae, when the infection is severe, or caused by Escherichia coli, Klebsiella pneumoniae, or Proteus mirabilis, when the infection is mild to moderate, including cases associated with concurrent bacteremia with these bacteria. 1.4 Uncomplicated Skin and Skin Structure Infections. Cefepime for Injection is indicated in the treatment of uncomplicated skin and skin structure infections caused by Staphylococcus aureus (methicillin-susceptible isolates only) or Streptococcus pyogenes. 1.5 Complicated Intra-abdominal Infections (used in combination with metronidazole). Cefepime for Injection is indicated in the treatment of complicated intra-abdominal infections (used in combination with metronidazole) in adults caused by susceptible isolates of Escherichia coli, viridans group streptococci, Pseudomonas aeruginosa, Klebsiella pneumoniae, Enterobacter species, or Bacteroides fragilis [see Clinical Studies ( 14.2)]. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Cefepime for Injection and other antibacterial drugs, Cefepime for Injection should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Cefepime for Injection, USP is a semi-synthetic, cephalosporin antibacterial for parenteral administration. The chemical name is 1-[[(6R,7R)-7-[2-(2-amino-4-thiazolyl)-glyoxylamido]-2-carboxy-8-oxo-5-thia-1-azabyciclo[4.2.0] oct-2-en-3-yl]methyl]-1-methylpyrrolidinum chloride,7 2-(Z)-O-methyloxime), monohydrochloride, monohydrate, which corresponds to the following structural formula:. Cefepime hydrochloride is a white to pale yellow powder. Cefepime hydrochloride contains the equivalent of not less than 825 mcg and not more than 911 mcg of cefepime (C 19H 24N 6O 5S 2) per mg, calculated on an anhydrous basis. It is highly soluble in water. Cefepime for Injection, USP is supplied for intramuscular or intravenous administration in strengths equivalent to 1 gram and 2 grams of cefepime. Cefepime for Injection, USP is a sterile, dry mixture of cefepime hydrochloride and L-arginine. The L-arginine, at an approximate concentration of 707 mg/g of cefepime, is added to control the pH of the constituted solution at 4 to 6. Freshly constituted solutions of Cefepime for Injection, USP will range in color from pale yellow to amber.</Description>
</NDC>
<NDC>
<NDCCode>66794-210-41</NDCCode>
<PackageDescription>10 VIAL, SINGLE-DOSE in 1 CARTON (66794-210-41) > 2 INJECTION, POWDER, FOR SOLUTION in 1 VIAL, SINGLE-DOSE (66794-210-02) </PackageDescription>
<NDC11Code>66794-0210-41</NDC11Code>
<ProductNDC>66794-210</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Cefepime</ProprietaryName>
<NonProprietaryName>Cefepime</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20190520</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA091048</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc.</LabelerName>
<SubstanceName>CEFEPIME HYDROCHLORIDE</SubstanceName>
<StrengthNumber>2</StrengthNumber>
<StrengthUnit>g/1</StrengthUnit>
<Pharm_Classes>Cephalosporin Antibacterial [EPC], Cephalosporins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20190520</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>1.1 Pneumonia. Cefepime for Injection is indicated in the treatment of pneumonia (moderate to severe) caused by susceptible strains of Streptococcus pneumoniae, including cases associated with concurrent bacteremia, Pseudomonas aeruginosa, Klebsiella pneumoniae, or Enterobacter species. 1.2 Empiric Therapy for Febrile Neutropenic Patients. Cefepime for Injection as monotherapy is indicated for empiric treatment of febrile neutropenic patients. In patients at high risk for severe infection (including patients with a history of recent bone marrow transplantation, with hypotension at presentation, with an underlying hematologic malignancy, or with severe or prolonged neutropenia), antimicrobial monotherapy may not be appropriate. Insufficient data exist to support the efficacy of cefepime monotherapy in such patients [see Clinical Studies ( 14.1)]. 1.3 Uncomplicated and Complicated Urinary Tract Infections (including pyelonephritis). Cefepime for Injection is indicated in the treatment of uncomplicated and complicated urinary tract infections (including pyelonephritis) caused by susceptible isolates of Escherichia coli or Klebsiella pneumoniae, when the infection is severe, or caused by Escherichia coli, Klebsiella pneumoniae, or Proteus mirabilis, when the infection is mild to moderate, including cases associated with concurrent bacteremia with these bacteria. 1.4 Uncomplicated Skin and Skin Structure Infections. Cefepime for Injection is indicated in the treatment of uncomplicated skin and skin structure infections caused by Staphylococcus aureus (methicillin-susceptible isolates only) or Streptococcus pyogenes. 1.5 Complicated Intra-abdominal Infections (used in combination with metronidazole). Cefepime for Injection is indicated in the treatment of complicated intra-abdominal infections (used in combination with metronidazole) in adults caused by susceptible isolates of Escherichia coli, viridans group streptococci, Pseudomonas aeruginosa, Klebsiella pneumoniae, Enterobacter species, or Bacteroides fragilis [see Clinical Studies ( 14.2)]. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Cefepime for Injection and other antibacterial drugs, Cefepime for Injection should be used only to treat infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Cefepime for Injection, USP is a semi-synthetic, cephalosporin antibacterial for parenteral administration. The chemical name is 1-[[(6R,7R)-7-[2-(2-amino-4-thiazolyl)-glyoxylamido]-2-carboxy-8-oxo-5-thia-1-azabyciclo[4.2.0] oct-2-en-3-yl]methyl]-1-methylpyrrolidinum chloride,7 2-(Z)-O-methyloxime), monohydrochloride, monohydrate, which corresponds to the following structural formula:. Cefepime hydrochloride is a white to pale yellow powder. Cefepime hydrochloride contains the equivalent of not less than 825 mcg and not more than 911 mcg of cefepime (C 19H 24N 6O 5S 2) per mg, calculated on an anhydrous basis. It is highly soluble in water. Cefepime for Injection, USP is supplied for intramuscular or intravenous administration in strengths equivalent to 1 gram and 2 grams of cefepime. Cefepime for Injection, USP is a sterile, dry mixture of cefepime hydrochloride and L-arginine. The L-arginine, at an approximate concentration of 707 mg/g of cefepime, is added to control the pH of the constituted solution at 4 to 6. Freshly constituted solutions of Cefepime for Injection, USP will range in color from pale yellow to amber.</Description>
</NDC>
<NDC>
<NDCCode>66794-216-41</NDCCode>
<PackageDescription>10 VIAL, SINGLE-USE in 1 CARTON (66794-216-41) > 10 mL in 1 VIAL, SINGLE-USE (66794-216-02) </PackageDescription>
<NDC11Code>66794-0216-41</NDC11Code>
<ProductNDC>66794-216</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Piperacillin And Tazobactam</ProprietaryName>
<NonProprietaryName>Piperacillin And Tazobactam</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20200316</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA212287</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>PIPERACILLIN SODIUM; TAZOBACTAM SODIUM</SubstanceName>
<StrengthNumber>2; .25</StrengthNumber>
<StrengthUnit>g/10mL; g/10mL</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200316</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>1.1 Intra-abdominal Infections Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of appendicitis (complicated by rupture or abscess) and peritonitis caused by beta-lactamase producing isolates of Escherichia coli or the following members of the Bacteroides fragilis group: B. fragilis, B. ovatus, B. thetaiotaomicron, or B. vulgatus. 1.2 Nosocomial Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of nosocomial pneumonia (moderate to severe) caused by beta-lactamase producing isolates of Staphylococcus aureus and by piperacillin/tazobactam-susceptible Acinetobacter baumannii, Haemophilus influenzae, Klebsiella pneumoniae, and Pseudomonas aeruginosa ( Nosocomial pneumonia caused by P. aeruginosa should be treated in combination with an aminoglycoside) [see Dosage and Administration ( 2)]. 1.3 Skin and Skin Structure Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of uncomplicated and complicated skin and skin structure infections, including cellulitis, cutaneous abscesses and ischemic/diabetic foot infections caused by beta-lactamase producing isolates of Staphylococcus aureus. 1.4 Female Pelvic Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of postpartum endometritis or pelvic inflammatory disease caused by beta-lactamase producing isolates of Escherichia coli. 1.5 Community-acquired Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of community-acquired pneumonia (moderate severity only) caused by beta-lactamase producing isolates of Haemophilus influenzae. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Piperacillin and Tazobactam for Injection and other antibacterial drugs, Piperacillin and Tazobactam for Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Piperacillin and tazobactam for injection, USP is an injectable antibacterial combination product consisting of the semisynthetic antibacterial piperacillin sodium and the beta-lactamase inhibitor tazobactam sodium for intravenous administration. Piperacillin sodium is derived from D(-)-α-aminobenzyl-penicillin. The chemical name of piperacillin sodium is sodium (2S,5R,6R)-6-[(R)-2-(4-ethyl-2,3-dioxo-1-piperazine- carboxamido)-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2- carboxylate. The chemical formula is C 23H 26N 5NaO 7S and the molecular weight is 539.5. The chemical structure of piperacillin sodium is:. Tazobactam sodium, a derivative of the penicillin nucleus, is a penicillanic acid sulfone. Its chemical name is sodium (2S,3S,5R)-3-methyl-7-oxo-3-(1H-1,2,3-triazol-1-ylmethyl)-4-thia-1- azabicyclo[3.2.0]heptane-2-carboxylate-4,4-dioxide. The chemical formula is C 10H 11N 4NaO 5S and the molecular weight is 322.3. The chemical structure of tazobactam sodium is:. Piperacillin and tazobactam for injection, USP, is a white to off-white sterile, powder consisting of piperacillin and tazobactam as their sodium salts packaged in glass vials. Each piperacillin and tazobactam for injection, USP 2.25 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 2 grams of piperacillin and tazobactam sodium equivalent to 0.25 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 3.375 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 3 grams of piperacillin and tazobactam sodium equivalent to 0.375 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 4.5 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 4 grams of piperacillin and tazobactam sodium equivalent to 0.5 gram of tazobactam. Piperacillin and tazobactam for injection, USP is a monosodium salt of piperacillin and a monosodium salt of tazobactam containing a total of 2.35 mEq (54 mg) of sodium (Na+) per gram of piperacillin in the combination product.</Description>
</NDC>
<NDC>
<NDCCode>66794-217-41</NDCCode>
<PackageDescription>10 VIAL, SINGLE-USE in 1 CARTON (66794-217-41) > 15 mL in 1 VIAL, SINGLE-USE (66794-217-02) </PackageDescription>
<NDC11Code>66794-0217-41</NDC11Code>
<ProductNDC>66794-217</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Piperacillin And Tazobactam</ProprietaryName>
<NonProprietaryName>Piperacillin And Tazobactam</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20200316</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA212287</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>PIPERACILLIN SODIUM; TAZOBACTAM SODIUM</SubstanceName>
<StrengthNumber>3; .375</StrengthNumber>
<StrengthUnit>g/15mL; g/15mL</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]</Pharm_Classes>
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<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200316</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>1.1 Intra-abdominal Infections Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of appendicitis (complicated by rupture or abscess) and peritonitis caused by beta-lactamase producing isolates of Escherichia coli or the following members of the Bacteroides fragilis group: B. fragilis, B. ovatus, B. thetaiotaomicron, or B. vulgatus. 1.2 Nosocomial Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of nosocomial pneumonia (moderate to severe) caused by beta-lactamase producing isolates of Staphylococcus aureus and by piperacillin/tazobactam-susceptible Acinetobacter baumannii, Haemophilus influenzae, Klebsiella pneumoniae, and Pseudomonas aeruginosa ( Nosocomial pneumonia caused by P. aeruginosa should be treated in combination with an aminoglycoside) [see Dosage and Administration ( 2)]. 1.3 Skin and Skin Structure Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of uncomplicated and complicated skin and skin structure infections, including cellulitis, cutaneous abscesses and ischemic/diabetic foot infections caused by beta-lactamase producing isolates of Staphylococcus aureus. 1.4 Female Pelvic Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of postpartum endometritis or pelvic inflammatory disease caused by beta-lactamase producing isolates of Escherichia coli. 1.5 Community-acquired Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of community-acquired pneumonia (moderate severity only) caused by beta-lactamase producing isolates of Haemophilus influenzae. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Piperacillin and Tazobactam for Injection and other antibacterial drugs, Piperacillin and Tazobactam for Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Piperacillin and tazobactam for injection, USP is an injectable antibacterial combination product consisting of the semisynthetic antibacterial piperacillin sodium and the beta-lactamase inhibitor tazobactam sodium for intravenous administration. Piperacillin sodium is derived from D(-)-α-aminobenzyl-penicillin. The chemical name of piperacillin sodium is sodium (2S,5R,6R)-6-[(R)-2-(4-ethyl-2,3-dioxo-1-piperazine- carboxamido)-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2- carboxylate. The chemical formula is C 23H 26N 5NaO 7S and the molecular weight is 539.5. The chemical structure of piperacillin sodium is:. Tazobactam sodium, a derivative of the penicillin nucleus, is a penicillanic acid sulfone. Its chemical name is sodium (2S,3S,5R)-3-methyl-7-oxo-3-(1H-1,2,3-triazol-1-ylmethyl)-4-thia-1- azabicyclo[3.2.0]heptane-2-carboxylate-4,4-dioxide. The chemical formula is C 10H 11N 4NaO 5S and the molecular weight is 322.3. The chemical structure of tazobactam sodium is:. Piperacillin and tazobactam for injection, USP, is a white to off-white sterile, powder consisting of piperacillin and tazobactam as their sodium salts packaged in glass vials. Each piperacillin and tazobactam for injection, USP 2.25 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 2 grams of piperacillin and tazobactam sodium equivalent to 0.25 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 3.375 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 3 grams of piperacillin and tazobactam sodium equivalent to 0.375 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 4.5 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 4 grams of piperacillin and tazobactam sodium equivalent to 0.5 gram of tazobactam. Piperacillin and tazobactam for injection, USP is a monosodium salt of piperacillin and a monosodium salt of tazobactam containing a total of 2.35 mEq (54 mg) of sodium (Na+) per gram of piperacillin in the combination product.</Description>
</NDC>
<NDC>
<NDCCode>66794-218-41</NDCCode>
<PackageDescription>10 VIAL, SINGLE-USE in 1 CARTON (66794-218-41) > 20 mL in 1 VIAL, SINGLE-USE (66794-218-02) </PackageDescription>
<NDC11Code>66794-0218-41</NDC11Code>
<ProductNDC>66794-218</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Piperacillin And Tazobactam</ProprietaryName>
<NonProprietaryName>Piperacillin And Tazobactam</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20200316</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA212287</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>PIPERACILLIN SODIUM; TAZOBACTAM SODIUM</SubstanceName>
<StrengthNumber>4; .5</StrengthNumber>
<StrengthUnit>g/20mL; g/20mL</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS], beta Lactamase Inhibitor [EPC], beta Lactamase Inhibitors [MoA]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200316</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>1.1 Intra-abdominal Infections Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of appendicitis (complicated by rupture or abscess) and peritonitis caused by beta-lactamase producing isolates of Escherichia coli or the following members of the Bacteroides fragilis group: B. fragilis, B. ovatus, B. thetaiotaomicron, or B. vulgatus. 1.2 Nosocomial Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults and pediatric patients (2 months of age and older) for the treatment of nosocomial pneumonia (moderate to severe) caused by beta-lactamase producing isolates of Staphylococcus aureus and by piperacillin/tazobactam-susceptible Acinetobacter baumannii, Haemophilus influenzae, Klebsiella pneumoniae, and Pseudomonas aeruginosa ( Nosocomial pneumonia caused by P. aeruginosa should be treated in combination with an aminoglycoside) [see Dosage and Administration ( 2)]. 1.3 Skin and Skin Structure Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of uncomplicated and complicated skin and skin structure infections, including cellulitis, cutaneous abscesses and ischemic/diabetic foot infections caused by beta-lactamase producing isolates of Staphylococcus aureus. 1.4 Female Pelvic Infections Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of postpartum endometritis or pelvic inflammatory disease caused by beta-lactamase producing isolates of Escherichia coli. 1.5 Community-acquired Pneumonia Piperacillin and Tazobactam for Injection is indicated in adults for the treatment of community-acquired pneumonia (moderate severity only) caused by beta-lactamase producing isolates of Haemophilus influenzae. 1.6 Usage. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Piperacillin and Tazobactam for Injection and other antibacterial drugs, Piperacillin and Tazobactam for Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy.</IndicationAndUsage>
<Description>Piperacillin and tazobactam for injection, USP is an injectable antibacterial combination product consisting of the semisynthetic antibacterial piperacillin sodium and the beta-lactamase inhibitor tazobactam sodium for intravenous administration. Piperacillin sodium is derived from D(-)-α-aminobenzyl-penicillin. The chemical name of piperacillin sodium is sodium (2S,5R,6R)-6-[(R)-2-(4-ethyl-2,3-dioxo-1-piperazine- carboxamido)-2-phenylacetamido]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2- carboxylate. The chemical formula is C 23H 26N 5NaO 7S and the molecular weight is 539.5. The chemical structure of piperacillin sodium is:. Tazobactam sodium, a derivative of the penicillin nucleus, is a penicillanic acid sulfone. Its chemical name is sodium (2S,3S,5R)-3-methyl-7-oxo-3-(1H-1,2,3-triazol-1-ylmethyl)-4-thia-1- azabicyclo[3.2.0]heptane-2-carboxylate-4,4-dioxide. The chemical formula is C 10H 11N 4NaO 5S and the molecular weight is 322.3. The chemical structure of tazobactam sodium is:. Piperacillin and tazobactam for injection, USP, is a white to off-white sterile, powder consisting of piperacillin and tazobactam as their sodium salts packaged in glass vials. Each piperacillin and tazobactam for injection, USP 2.25 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 2 grams of piperacillin and tazobactam sodium equivalent to 0.25 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 3.375 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 3 grams of piperacillin and tazobactam sodium equivalent to 0.375 gram of tazobactam. Each piperacillin and tazobactam for injection, USP 4.5 gram single-dose vial contains an amount of drug sufficient for withdrawal of piperacillin sodium equivalent to 4 grams of piperacillin and tazobactam sodium equivalent to 0.5 gram of tazobactam. Piperacillin and tazobactam for injection, USP is a monosodium salt of piperacillin and a monosodium salt of tazobactam containing a total of 2.35 mEq (54 mg) of sodium (Na+) per gram of piperacillin in the combination product.</Description>
</NDC>
<NDC>
<NDCCode>66794-219-43</NDCCode>
<PackageDescription>10 BAG in 1 CARTON (66794-219-43) / 300 mL in 1 BAG (66794-219-63) </PackageDescription>
<NDC11Code>66794-0219-43</NDC11Code>
<ProductNDC>66794-219</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Linezolid</ProprietaryName>
<NonProprietaryName>Linezolid</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20240308</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA207001</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>LINEZOLID</SubstanceName>
<StrengthNumber>600</StrengthNumber>
<StrengthUnit>mg/300mL</StrengthUnit>
<Pharm_Classes>Oxazolidinone Antibacterial [EPC], Oxazolidinones [CS]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-09-26</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20240308</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<Description>Linezolid Injection, contains linezolid, which is a synthetic antibacterial agent of the oxazolidinone class. The chemical name for linezolid is (S)-N-[[3-[3-Fluoro-4-(4morpholinyl)phenyl]-2-oxo-5-oxazolidinyl] methyl]-acetamide. The empirical formula is C 16H 20FN 3O 4. Its molecular weight is 337.35, and its chemical structure is represented below:. Linezolid Injection is supplied as a ready-to-use sterile isotonic solution for intravenous infusion. Each mL contains 2 mg of linezolid. Inactive ingredients are sodium citrate, citric acid, and dextrose in an aqueous vehicle for intravenous administration. pH adjusted to 4.8 with sodium hydroxide or hydrochloric acid.The sodium (Na+) content is 0.38 mg/mL (5 mEq/300 mL bag).</Description>
</NDC>
<NDC>
<NDCCode>66794-220-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-220-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-220-02) </PackageDescription>
<NDC11Code>66794-0220-41</NDC11Code>
<ProductNDC>66794-220</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ampicillin</ProprietaryName>
<NonProprietaryName>Ampicillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20200309</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090583</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>AMPICILLIN SODIUM</SubstanceName>
<StrengthNumber>250</StrengthNumber>
<StrengthUnit>mg/1</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200309</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.</IndicationAndUsage>
<Description>Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10.</Description>
</NDC>
<NDC>
<NDCCode>66794-221-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-221-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-221-02) </PackageDescription>
<NDC11Code>66794-0221-41</NDC11Code>
<ProductNDC>66794-221</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ampicillin</ProprietaryName>
<NonProprietaryName>Ampicillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20200309</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090583</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>AMPICILLIN SODIUM</SubstanceName>
<StrengthNumber>500</StrengthNumber>
<StrengthUnit>mg/1</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200309</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.</IndicationAndUsage>
<Description>Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10.</Description>
</NDC>
<NDC>
<NDCCode>66794-222-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-222-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-222-02) </PackageDescription>
<NDC11Code>66794-0222-41</NDC11Code>
<ProductNDC>66794-222</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ampicillin</ProprietaryName>
<NonProprietaryName>Ampicillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20200309</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090583</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>AMPICILLIN SODIUM</SubstanceName>
<StrengthNumber>1</StrengthNumber>
<StrengthUnit>g/1</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200309</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.</IndicationAndUsage>
<Description>Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10.</Description>
</NDC>
<NDC>
<NDCCode>66794-223-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-223-41) > 1 INJECTION, POWDER, FOR SOLUTION in 1 VIAL (66794-223-02) </PackageDescription>
<NDC11Code>66794-0223-41</NDC11Code>
<ProductNDC>66794-223</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ampicillin</ProprietaryName>
<NonProprietaryName>Ampicillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20200309</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090583</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>AMPICILLIN SODIUM</SubstanceName>
<StrengthNumber>2</StrengthNumber>
<StrengthUnit>g/1</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2024-01-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20231231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200309</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Ampicillin for Injection, USP is indicated in the treatment of infections caused by susceptible strains of the designated organisms in the following conditions. Respiratory Tract Infections caused by Streptococcus pneumoniae, Staphylococcus aureus (penicillinase and nonpenicillinase-producing), H. influenzae, and Group A beta-hemolytic streptococci. Bacterial Meningitis caused by E. coli, Group B streptococci, and other Gram-negative bacteria ( Listeria monocytogenes, N. meningitidis). The addition of an aminoglycoside with ampicillin may increase its effectiveness against Gram-negative bacteria. Septicemia and Endocarditis caused by susceptible Gram-positive organisms including Streptococcus spp., penicillin G-susceptible staphylococci, and enterococci. Gram-negative sepsis caused by E. coli, Proteus mirabilis and Salmonella spp. responds to ampicillin. Endocarditis due to enterococcal strains usually respond to intravenous therapy. The addition of an aminoglycoside may enhance the effectiveness of ampicillin when treating streptococcal endocarditis. Urinary Tract Infections caused by sensitive strains of E. coli and Proteus mirabilis. Gastrointestinal Infections caused by Salmonella typhi (typhoid fever), other Salmonella spp., and Shigella spp. (dysentery) usually respond to oral or intravenous therapy. Bacteriology studies to determine the causative organisms and their susceptibility to ampicillin should be performed. Therapy may be instituted prior to obtaining results of susceptibility testing. It is advisable to reserve the parenteral form of this drug for moderately severe and severe infections and for patients who are unable to take the oral forms. A change to oral ampicillin may be made as soon as appropriate. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Ampicillin for Injection, USP and other antibacterial drugs, Ampicillin for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Indicated surgical procedures should be performed.</IndicationAndUsage>
<Description>Ampicillin for Injection, USP the monosodium salt of [2S-[2α, 5α, 6β(S*)]]-6-[(aminophenylacetyl)amino]-3,3-dimethyl-7-oxo-4-thia-1-azabicyclo[3.2.0]heptane-2-carboxylic acid, is a synthetic penicillin. It is an antibacterial agent with a broad spectrum of bactericidal activity against both penicillin-susceptible Gram-positive organisms and many common Gram-negative pathogens. Ampicillin for Injection, USP is a dry, white to off-white powder. The reconstituted solution is clear, colorless and free from visible particulates. Each vial of Ampicillin for Injection, USP contains ampicillin sodium equivalent to 250 mg, 500 mg, 1 gram or 2 grams ampicillin. Ampicillin for Injection, USP contains 65.8 mg [2.9 mEq] sodium per gram ampicillin. It has the following molecular structure. The molecular formula is C 16H 18N 3NaO 4S, and the molecular weight is 371.39. The pH range of the reconstituted solution is 8 to 10.</Description>
</NDC>
<NDC>
<NDCCode>66794-225-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-225-41) > 1 g in 1 VIAL (66794-225-02) </PackageDescription>
<NDC11Code>66794-0225-41</NDC11Code>
<ProductNDC>66794-225</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Oxacillin</ProprietaryName>
<NonProprietaryName>Oxacillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20180601</StartMarketingDate>
<EndMarketingDate>20220801</EndMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA206681</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>OXACILLIN SODIUM</SubstanceName>
<StrengthNumber>1</StrengthNumber>
<StrengthUnit>g/g</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2022-08-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<StartMarketingDatePackage>20180601</StartMarketingDatePackage>
<EndMarketingDatePackage>20220801</EndMarketingDatePackage>
<SamplePackage>N</SamplePackage>
</NDC>
<NDC>
<NDCCode>66794-226-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-226-41) > 2 g in 1 VIAL (66794-226-02) </PackageDescription>
<NDC11Code>66794-0226-41</NDC11Code>
<ProductNDC>66794-226</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Oxacillin</ProprietaryName>
<NonProprietaryName>Oxacillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20180601</StartMarketingDate>
<EndMarketingDate>20220801</EndMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA206681</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>OXACILLIN SODIUM</SubstanceName>
<StrengthNumber>2</StrengthNumber>
<StrengthUnit>g/2g</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2022-08-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<StartMarketingDatePackage>20180601</StartMarketingDatePackage>
<EndMarketingDatePackage>20220801</EndMarketingDatePackage>
<SamplePackage>N</SamplePackage>
</NDC>
<NDC>
<NDCCode>66794-227-41</NDCCode>
<PackageDescription>10 BOTTLE in 1 CARTON (66794-227-41) > 10 g in 1 BOTTLE</PackageDescription>
<NDC11Code>66794-0227-41</NDC11Code>
<ProductNDC>66794-227</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Oxacillin</ProprietaryName>
<NonProprietaryName>Oxacillin</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, FOR SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20180801</StartMarketingDate>
<EndMarketingDate>20230901</EndMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA206760</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>OXACILLIN SODIUM</SubstanceName>
<StrengthNumber>10</StrengthNumber>
<StrengthUnit>g/10g</StrengthUnit>
<Pharm_Classes>Penicillin-class Antibacterial [EPC], Penicillins [CS]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2023-09-02</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<StartMarketingDatePackage>20180801</StartMarketingDatePackage>
<EndMarketingDatePackage>20230901</EndMarketingDatePackage>
<SamplePackage>N</SamplePackage>
</NDC>
<NDC>
<NDCCode>66794-228-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-228-41) / 5 mL in 1 VIAL (66794-228-02) </PackageDescription>
<NDC11Code>66794-0228-41</NDC11Code>
<ProductNDC>66794-228</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Rocuronium</ProprietaryName>
<NonProprietaryName>Rocuronium</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20200720</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA210437</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>ROCURONIUM BROMIDE</SubstanceName>
<StrengthNumber>50</StrengthNumber>
<StrengthUnit>mg/5mL</StrengthUnit>
<Pharm_Classes>Neuromuscular Nondepolarizing Blockade [PE], Nondepolarizing Neuromuscular Blocker [EPC]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-09-26</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200720</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Rocuronium bromide injection is indicated for inpatients and outpatients as an adjunct to general anesthesia to facilitate both rapid sequence and routine tracheal intubation, and to provide skeletal muscle relaxation during surgery or mechanical ventilation.</IndicationAndUsage>
<Description>Rocuronium bromide injection is a nondepolarizing neuromuscular blocking agent with a rapid to intermediate onset depending on dose and intermediate duration. Rocuronium bromide is chemically designated as 1- [17β-(acetyloxy)-3α-hydroxy-2β-(4-morpholinyl)-5α-androstan-16β-yl]-1-(2-propenyl)pyrrolidinium bromide. The structural formula is. The chemical formula is C 32H 53BrN 2O 4 with a molecular weight of 609.70. The partition coefficient of rocuronium bromide in n-octanol/water is 0.5 at 20°C. Rocuronium bromide is supplied as a sterile, nonpyrogenic, isotonic solution that is clear, colorless to yellow/orange, for intravenous injection only. Each mL contains 10 mg rocuronium bromide and 2 mg sodium acetate. The aqueous solution is adjusted to isotonicity with sodium chloride and to a pH of 4 with acetic acid and/or sodium hydroxide.</Description>
</NDC>
<NDC>
<NDCCode>66794-229-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-229-41) / 10 mL in 1 VIAL (66794-229-02) </PackageDescription>
<NDC11Code>66794-0229-41</NDC11Code>
<ProductNDC>66794-229</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Rocuronium</ProprietaryName>
<NonProprietaryName>Rocuronium</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20200720</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA210437</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>ROCURONIUM BROMIDE</SubstanceName>
<StrengthNumber>100</StrengthNumber>
<StrengthUnit>mg/10mL</StrengthUnit>
<Pharm_Classes>Neuromuscular Nondepolarizing Blockade [PE], Nondepolarizing Neuromuscular Blocker [EPC]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-09-26</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200720</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Rocuronium bromide injection is indicated for inpatients and outpatients as an adjunct to general anesthesia to facilitate both rapid sequence and routine tracheal intubation, and to provide skeletal muscle relaxation during surgery or mechanical ventilation.</IndicationAndUsage>
<Description>Rocuronium bromide injection is a nondepolarizing neuromuscular blocking agent with a rapid to intermediate onset depending on dose and intermediate duration. Rocuronium bromide is chemically designated as 1- [17β-(acetyloxy)-3α-hydroxy-2β-(4-morpholinyl)-5α-androstan-16β-yl]-1-(2-propenyl)pyrrolidinium bromide. The structural formula is. The chemical formula is C 32H 53BrN 2O 4 with a molecular weight of 609.70. The partition coefficient of rocuronium bromide in n-octanol/water is 0.5 at 20°C. Rocuronium bromide is supplied as a sterile, nonpyrogenic, isotonic solution that is clear, colorless to yellow/orange, for intravenous injection only. Each mL contains 10 mg rocuronium bromide and 2 mg sodium acetate. The aqueous solution is adjusted to isotonicity with sodium chloride and to a pH of 4 with acetic acid and/or sodium hydroxide.</Description>
</NDC>
<NDC>
<NDCCode>66794-232-42</NDCCode>
<PackageDescription>25 VIAL, MULTI-DOSE in 1 CARTON (66794-232-42) / 10 mL in 1 VIAL, MULTI-DOSE (66794-232-02) </PackageDescription>
<NDC11Code>66794-0232-42</NDC11Code>
<ProductNDC>66794-232</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Succinylcholine Chloride</ProprietaryName>
<NonProprietaryName>Succinylcholine Chloride</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>INTRAMUSCULAR; INTRAVENOUS</RouteName>
<StartMarketingDate>20210120</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA214246</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>SUCCINYLCHOLINE CHLORIDE</SubstanceName>
<StrengthNumber>20</StrengthNumber>
<StrengthUnit>mg/mL</StrengthUnit>
<Pharm_Classes>Depolarizing Neuromuscular Blocker [EPC], Neuromuscular Depolarizing Blockade [PE]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-10-09</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20210120</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Succinylcholine Chloride Injection is indicated in adults and pediatric patients. as an adjunct to general anesthesia. to facilitate tracheal intubation. to provide skeletal muscle relaxation during surgery or mechanical ventilation.</IndicationAndUsage>
<Description>Succinylcholine Chloride Injection, USP is a sterile, nonpyrogenic solution to be used as a short-acting, depolarizing neuromuscular blocker for intravenous or intramuscular use. Succinylcholine Chloride Injection, USP contains succinylcholine chloride as the active pharmaceutical ingredient. Succinylcholine Chloride, USP is chemically designated C 14H 30Cl 2N 2O 4 and its molecular weight is 361.31. The chemical name of succinylcholine chloride is ethanaminium, 2,2'-[(1,4-dioxo-1,4 butanediyl)bis(oxy)]bis[N,N,N-trimethyl-], dichloride. Succinylcholine chloride is a diquaternary base consisting of the dichloride salt of the dicholine ester of succinic acid. It is a white, odorless, slightly bitter powder, very soluble in water. It has the following structural formula:. Succinylcholine Chloride Injection, USP 200 mg/10 mL (20 mg/mL) is intended for multiple-dose administration and contains preservative. Each 1 mL of Succinylcholine Chloride Injection, USP 200 mg/10 mL (20 mg/mL) multiple-dose fliptop vials contains: 20 mg of succinylcholine chloride, USP (equivalent to 22 mg of Succinylcholine Chloride dihydrate, USP), 1.8 mg of methylparaben and 0.2 mg of propylparaben as preservatives, 4.8 mg of sodium chloride as iso-osmotic agent, and sodium hydroxide and hydrochloric acid as pH adjusters in water for injection. The pH of the solution is between 3.0 and 4.5, with an osmolarity of 0.338 mOsm/mL (calc.).</Description>
</NDC>
<NDC>
<NDCCode>66794-235-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-235-41) / 100 mL in 1 VIAL (66794-235-02) </PackageDescription>
<NDC11Code>66794-0235-41</NDC11Code>
<ProductNDC>66794-235</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Dexmedetomidine Hydrochloride</ProprietaryName>
<NonProprietaryName>Dexmedetomidine Hydrochloride</NonProprietaryName>
<DosageFormName>INJECTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20210401</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA209307</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>DEXMEDETOMIDINE HYDROCHLORIDE</SubstanceName>
<StrengthNumber>4</StrengthNumber>
<StrengthUnit>ug/mL</StrengthUnit>
<Pharm_Classes>Adrenergic alpha2-Agonists [MoA], Central alpha-2 Adrenergic Agonist [EPC], General Anesthesia [PE]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2026-08-12</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20210401</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<Description>Dexmedetomidine hydrochloride in 0.9% sodium chloride injection (4 mcg/mL) is a sterile, nonpyrogenic ready to use solution suitable for intravenous infusion. Dexmedetomidine hydrochloride in 0.9% sodium chloride injection contains dexmedetomidine hydrochloride as the active pharmaceutical ingredient. Dexmedetomidine hydrochloride is a central alpha2-adrenergic agonist. Dexmedetomidine hydrochloride is the S-enantiomer of medetomidine. Dexmedetomidine hydrochloride chemical name is 1H-Imidazole, 4-[1-(2,3-dimethylphenyl)ethyl]-, monohydrochloride, (S). Dexmedetomidine hydrochloride has a molecular weight of 236.7 and the empirical formula is C 13H 16N 2 HCl and the structural formula is:. Dexmedetomidine hydrochloride, USP is a white or almost white powder that is freely soluble in water and has a pKa of 7.1. Its partition coefficient in-octanol: water at pH 7.4 is 2.89. Dexmedetomidine hydrochloride in 0.9% sodium chloride injection is ready to be used. It is supplied as a clear, colorless, isotonic solution with a pH between 4.5 to 7.0. Each mL contains 4.72 mcg of dexmedetomidine hydrochloride, USP (equivalent to 4 mcg or 0.004 mg of dexmedetomidine) and 9 mg sodium chloride in water for injection. The solution is preservative-free and contains no additives or chemical stabilizers.</Description>
</NDC>
<NDC>
<NDCCode>66794-236-43</NDCCode>
<PackageDescription>10 BAG in 1 CARTON (66794-236-43) / 300 mL in 1 BAG (66794-236-63) </PackageDescription>
<NDC11Code>66794-0236-43</NDC11Code>
<ProductNDC>66794-236</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Linezolid</ProprietaryName>
<NonProprietaryName>Linezolid</NonProprietaryName>
<DosageFormName>INJECTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20240308</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA207001</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc.</LabelerName>
<SubstanceName>LINEZOLID</SubstanceName>
<StrengthNumber>600</StrengthNumber>
<StrengthUnit>mg/300mL</StrengthUnit>
<Pharm_Classes>Oxazolidinone Antibacterial [EPC], Oxazolidinones [CS]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-10-23</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20240308</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Linezolid Injection is an oxazolidinone-class antibacterial indicated in adults and children for the treatment of the following infections caused by susceptible Gram-positive bacteria: Nosocomial pneumonia ( 1.1); Community-acquired pneumonia ( 1.2); Complicated skin and skin structure infections, including diabetic foot infections, without concomitant osteomyelitis ( 1.3); Uncomplicated skin and skin structure infections ( 1.4); Vancomycin-resistant Enterococcus faecium infections. ( 1.5). Limitations of Use ( 1.6):. Linezolid Injection is not indicated for the treatment of Gram-negative infections. The safety and efficacy of Linezolid Injection formulations given for longer than 28 days have not been evaluated in controlled clinical trials. To reduce the development of drug-resistant bacteria and maintain the effectiveness of Linezolid Injection formulations and other antibacterial drugs, Linezolid Injection should be used only to treat or prevent infections that are proven or strongly suspected to be caused by bacteria. ( 1.7).</IndicationAndUsage>
<Description>Linezolid Injection, contains linezolid, which is a synthetic antibacterial agent of the oxazolidinone class. The chemical name for linezolid is (S)-N-[[3-[3-Fluoro-4-(4-morpholinyl)phenyl]-2-oxo-5-oxazolidinyl] methyl]-acetamide. The empirical formula is C 16H 20FN 3O 4. Its molecular weight is 337.35, and its chemical structure is represented below:. Linezolid Injection is supplied as a ready-to-use sterile isotonic solution for intravenous infusion. Each mL contains 2 mg of linezolid. Inactive ingredients are dextrose monohydrate 50.24 mg/mL in an aqueous vehicle for intravenous administration, sodium citrate dihydrate 1.64 mg/mL, and citric acid anhydrous 0.85 mg/mL. pH adjusted to 4.8 with sodium hydroxide or hydrochloric acid.The sodium (Na+) content is 0.38 mg/mL (5 mEq/300 mL bag).</Description>
</NDC>
<NDC>
<NDCCode>66794-237-41</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-237-41) / 10 mL in 1 VIAL</PackageDescription>
<NDC11Code>66794-0237-41</NDC11Code>
<ProductNDC>66794-237</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Doxycycline</ProprietaryName>
<NonProprietaryName>Doxycycline</NonProprietaryName>
<DosageFormName>INJECTION, POWDER, LYOPHILIZED, FOR SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20230605</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA215583</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>DOXYCYCLINE HYCLATE</SubstanceName>
<StrengthNumber>100</StrengthNumber>
<StrengthUnit>mg/10mL</StrengthUnit>
<Pharm_Classes>Tetracycline-class Drug [EPC], Tetracyclines [CS]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2025-09-24</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20230605</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>To reduce the development of drug-resistant bacteria and maintain the effectiveness of Doxycycline for Injection, USP and other antibacterial drugs, Doxycycline for Injection, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to the empiric selection of therapy. Doxycycline for Injection, USP is indicated in infections caused by the following microorganisms. Rickettsiae (Rocky Mountain spotted fever, typhus fever, and the typhus group, Q fever, rickettsial pox and tick fevers). Mycoplasma pneumoniae (PPLO, Eaton Agent). Agents of psittacosis and ornithosis. Agents of lymphogranuloma venereum and granuloma inguinale. The spirochetal agent of relapsing fever (Borrelia recurrentis). The following gram-negative microorganisms. Haemophilus ducreyi (chancroid). Yersinia pestis and Francisella tularensis. Bartonella bacilliformis. Bacteroides species. Vibrio cholerae and Campylobacter fetus. Brucella species (in conjunction with streptomycin). Because many strains of the following groups of microorganisms have been shown to be resistant to tetracyclines, culture and susceptibility testing are recommended. Doxycycline is indicated for treatment of infections caused by the following gram-negative microorganisms when bacteriologic testing indicates appropriate susceptibility to the drug. Escherichia coli. Enterobacter aerogenes. Shigella species. Acinetobacter species. Haemophilus influenzae (respiratory infections). Klebsiella species (respiratory and urinary infections). Doxycycline is indicated for treatment of infections caused by the following gram-positive microorganisms when bacteriologic testing indicates appropriate susceptibility to the drug. Streptococcus species:. Up to 44 percent of strains of Streptococcus pyogenes and 74 percent of Enterococcus faecalis have been found to be resistant to tetracycline drugs. Therefore, tetracyclines should not be used for streptococcal disease unless the organism has been demonstrated to be sensitive. For upper respiratory infections due to group A beta-hemolytic streptococci, penicillin is the usual drug of choice, including prophylaxis of rheumatic fever. Streptococcus pneumoniae. Staphylococcus aureus, respiratory, skin and soft tissue infections. Tetracyclines are not the drugs of choice in the treatment of any type of staphylococcal infections. Anthrax due to Bacillus anthracis, including inhalational anthrax (post-exposure): to reduce the incidence or progression of disease following exposure to aerosolized Bacillus anthracis. When penicillin is contraindicated, doxycycline is an alternative drug in the treatment of infections due to. Neisseria gonorrhoeae and N. meningitidis. Treponema pallidum and Treponema pallidum subspecies pertenue (syphilis and yaws). Listeria monocytogenes. Clostridium species. Fusobacterium fusiforme (Vincent's infection). Actinomyces species. In acute intestinal amebiasis, doxycycline may be a useful adjunct to amebicides. Doxycycline is indicated in the treatment of trachoma, although the infectious agent is not always eliminated, as judged by immunofluorescence.</IndicationAndUsage>
<Description>Doxycycline for Injection, USP is a sterile, lyophilized powder prepared from a solution of doxycycline hyclate, ascorbic acid and mannitol in Water for Injection. Doxycycline hyclate is a broad spectrum antibiotic derived from oxytetracycline. It is meant for INTRAVENOUS use only after reconstitution. Doxycycline hyclate is a yellowish crystalline powder which is chemically designated 4-(Dimethylamino)-1,4,4a,5,5a,6,11,12a-octahydro-3,5,10,12,12a-pentahydroxy-6-methyl-1,11-demonohydrochloride, compound with ethyl alcohol (2:1), monohydrate. It has the following structural formula. Doxycycline hyclate is soluble in water and chars at 201°C without melting. The base doxycycline has a high degree of lipid solubility and a low affinity for calcium binding. It is highly stable in normal human serum. Each 100 mg vial contains: Doxycycline hyclate equivalent to 100 mg doxycycline; ascorbic acid 480 mg; mannitol 300 mg. pH of the reconstituted solution (10 mg/mL) is between 1.8 and 3.3.</Description>
</NDC>
<NDC>
<NDCCode>66794-238-43</NDCCode>
<PackageDescription>10 VIAL in 1 CARTON (66794-238-43) / 2 mL in 1 VIAL (66794-238-02) </PackageDescription>
<NDC11Code>66794-0238-43</NDC11Code>
<ProductNDC>66794-238</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Dexmedetomidine</ProprietaryName>
<NonProprietaryName>Dexmedetomidine</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>INTRAVENOUS</RouteName>
<StartMarketingDate>20200424</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA214794</ApplicationNumber>
<LabelerName>Piramal Critical Care Inc</LabelerName>
<SubstanceName>DEXMEDETOMIDINE HYDROCHLORIDE</SubstanceName>
<StrengthNumber>100</StrengthNumber>
<StrengthUnit>ug/mL</StrengthUnit>
<Pharm_Classes>Adrenergic alpha2-Agonists [MoA], Central alpha-2 Adrenergic Agonist [EPC], General Anesthesia [PE]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2026-01-21</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20261231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20200424</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
</NDC>
</NDCList>