{
"NDC": [
{
"NDCCode": "0781-3505-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3505-63) / 1 mL in 1 SYRINGE (0781-3505-01) ",
"NDC11Code": "00781-3505-63",
"ProductNDC": "0781-3505",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
"NonProprietaryName": "Enoxaparin Sodium Injection,usp",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
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"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "100",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
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"SamplePackage": "N",
"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3119-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3119-63) > .3 mL in 1 SYRINGE (0781-3119-01)",
"NDC11Code": "00781-3119-63",
"ProductNDC": "0781-3119",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium",
"NonProprietaryName": "Enoxaparin Sodium",
"DosageFormName": "INJECTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20100723",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA077857",
"LabelerName": "Sandoz Inc",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "100",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [Chemical/Ingredient],Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2015-01-30"
},
{
"NDCCode": "0781-3133-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3133-63) > .3 mL in 1 SYRINGE (0781-3133-01) ",
"NDC11Code": "00781-3133-63",
"ProductNDC": "0781-3133",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium",
"NonProprietaryName": "Enoxaparin Sodium",
"DosageFormName": "INJECTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20100723",
"EndMarketingDate": "20230531",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA077857",
"LabelerName": "Sandoz Inc",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "100",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2023-06-01",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"StartMarketingDatePackage": "20100723",
"EndMarketingDatePackage": "20230531",
"SamplePackage": "N"
},
{
"NDCCode": "0781-3238-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3238-63) / .3 mL in 1 SYRINGE (0781-3238-01) ",
"NDC11Code": "00781-3238-63",
"ProductNDC": "0781-3238",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium",
"NonProprietaryName": "Enoxaparin Sodium",
"DosageFormName": "INJECTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20100723",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA077857",
"LabelerName": "Sandoz Inc",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "100",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Active",
"LastUpdate": "2024-09-13",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20261231",
"StartMarketingDatePackage": "20210216",
"SamplePackage": "N",
"IndicationAndUsage": "Enoxaparin sodium injection, USP is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non-Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D-glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains a 1,6 anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. STRUCTURAL FORMULA. Enoxaparin Sodium Injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti-Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin Sodium Injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti-Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3460-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3460-63) / .3 mL in 1 SYRINGE (0781-3460-01) ",
"NDC11Code": "00781-3460-63",
"ProductNDC": "0781-3460",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
"NonProprietaryName": "Enoxaparin Sodium Injection,usp",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20230315",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "30",
"StrengthUnit": "mg/.3mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20251231",
"StartMarketingDatePackage": "20240709",
"SamplePackage": "N",
"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3482-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3482-63) / .4 mL in 1 SYRINGE (0781-3482-01) ",
"NDC11Code": "00781-3482-63",
"ProductNDC": "0781-3482",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
"NonProprietaryName": "Enoxaparin Sodium Injection,usp",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20230315",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "40",
"StrengthUnit": "mg/.4mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20251231",
"StartMarketingDatePackage": "20240709",
"SamplePackage": "N",
"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3488-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3488-63) / .6 mL in 1 SYRINGE (0781-3488-01) ",
"NDC11Code": "00781-3488-63",
"ProductNDC": "0781-3488",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
"NonProprietaryName": "Enoxaparin Sodium Injection,usp",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20230315",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "60",
"StrengthUnit": "mg/.6mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20251231",
"StartMarketingDatePackage": "20240709",
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"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3502-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3502-63) / .8 mL in 1 SYRINGE (0781-3502-01) ",
"NDC11Code": "00781-3502-63",
"ProductNDC": "0781-3502",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
"NonProprietaryName": "Enoxaparin Sodium Injection,usp",
"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20230315",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "80",
"StrengthUnit": "mg/.8mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
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"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3510-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3510-63) / 1 mL in 1 SYRINGE (0781-3510-01) ",
"NDC11Code": "00781-3510-63",
"ProductNDC": "0781-3510",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
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"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20230315",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "120",
"StrengthUnit": "mg/.8mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
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"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-3513-63",
"PackageDescription": "10 SYRINGE in 1 CARTON (0781-3513-63) / 1 mL in 1 SYRINGE (0781-3513-01) ",
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"ProductNDC": "0781-3513",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Enoxaparin Sodium Injection,usp",
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"DosageFormName": "INJECTION, SOLUTION",
"RouteName": "SUBCUTANEOUS",
"StartMarketingDate": "20230315",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA205660",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "ENOXAPARIN SODIUM",
"StrengthNumber": "150",
"StrengthUnit": "mg/mL",
"Pharm_Classes": "Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]",
"Status": "Deprecated",
"LastUpdate": "2025-02-14",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20251231",
"StartMarketingDatePackage": "20240709",
"SamplePackage": "N",
"IndicationAndUsage": "Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).",
"Description": "Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)]."
},
{
"NDCCode": "0781-7146-63",
"PackageDescription": "2 POUCH in 1 CARTON (0781-7146-63) > 30 AMPULE in 1 POUCH > 3 mL in 1 AMPULE",
"NDC11Code": "00781-7146-63",
"ProductNDC": "0781-7146",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Ipratropium Bromide And Albuterol Sulfate",
"NonProprietaryName": "Ipratropium Bromide And Albuterol Sulfate",
"DosageFormName": "SOLUTION",
"RouteName": "RESPIRATORY (INHALATION)",
"StartMarketingDate": "20130520",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202496",
"LabelerName": "Sandoz Inc.",
"SubstanceName": "IPRATROPIUM BROMIDE; ALBUTEROL SULFATE",
"StrengthNumber": ".5; 3",
"StrengthUnit": "mg/3mL; mg/3mL",
"Pharm_Classes": "Anticholinergic [EPC],Cholinergic Antagonists [MoA],Adrenergic beta2-Agonists [MoA],beta2-Adrenergic Agonist [EPC]",
"Status": "Deprecated",
"LastUpdate": "2019-09-21",
"ProductNdcExcludeFlag": "E",
"ListingRecordCertifiedThrough": "20181231"
},
{
"NDCCode": "69423-781-63",
"PackageDescription": "1 TUBE in 1 CARTON (69423-781-63) / 178 g in 1 TUBE",
"NDC11Code": "69423-0781-63",
"ProductNDC": "69423-781",
"ProductTypeName": "HUMAN OTC DRUG",
"ProprietaryName": "Crest",
"ProprietaryNameSuffix": "Pro Health Clean Mint",
"NonProprietaryName": "Stannous Fluoride",
"DosageFormName": "PASTE, DENTIFRICE",
"RouteName": "DENTAL",
"StartMarketingDate": "20221003",
"MarketingCategoryName": "OTC MONOGRAPH DRUG",
"ApplicationNumber": "M021",
"LabelerName": "The Procter & Gamble Manufacturing Company",
"SubstanceName": "STANNOUS FLUORIDE",
"StrengthNumber": "1.5",
"StrengthUnit": "mg/g",
"Status": "Active",
"LastUpdate": "2026-01-09",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20221003",
"SamplePackage": "N"
},
{
"NDCCode": "0781-5801-05",
"PackageDescription": "500 TABLET, FILM COATED in 1 BOTTLE (0781-5801-05) ",
"NDC11Code": "00781-5801-05",
"ProductNDC": "0781-5801",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"NonProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20251202",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202388",
"LabelerName": "Sandoz Inc",
"SubstanceName": "SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE",
"StrengthNumber": "50; 500",
"StrengthUnit": "mg/1; mg/1",
"Pharm_Classes": "Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]",
"Status": "Active",
"LastUpdate": "2026-04-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20251202",
"SamplePackage": "N",
"IndicationAndUsage": "Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].",
"Description": "Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate."
},
{
"NDCCode": "0781-5801-60",
"PackageDescription": "60 TABLET, FILM COATED in 1 BOTTLE (0781-5801-60) ",
"NDC11Code": "00781-5801-60",
"ProductNDC": "0781-5801",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"NonProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20251202",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202388",
"LabelerName": "Sandoz Inc",
"SubstanceName": "SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE",
"StrengthNumber": "50; 500",
"StrengthUnit": "mg/1; mg/1",
"Pharm_Classes": "Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]",
"Status": "Active",
"LastUpdate": "2026-04-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20251202",
"SamplePackage": "N",
"IndicationAndUsage": "Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].",
"Description": "Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate."
},
{
"NDCCode": "0781-5801-71",
"PackageDescription": "180 TABLET, FILM COATED in 1 BOTTLE (0781-5801-71) ",
"NDC11Code": "00781-5801-71",
"ProductNDC": "0781-5801",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"NonProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20251202",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202388",
"LabelerName": "Sandoz Inc",
"SubstanceName": "SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE",
"StrengthNumber": "50; 500",
"StrengthUnit": "mg/1; mg/1",
"Pharm_Classes": "Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]",
"Status": "Active",
"LastUpdate": "2026-04-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20251202",
"SamplePackage": "N",
"IndicationAndUsage": "Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].",
"Description": "Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate."
},
{
"NDCCode": "0781-5802-60",
"PackageDescription": "60 TABLET, FILM COATED in 1 BOTTLE (0781-5802-60) ",
"NDC11Code": "00781-5802-60",
"ProductNDC": "0781-5802",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"NonProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20251202",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202388",
"LabelerName": "Sandoz Inc",
"SubstanceName": "SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE",
"StrengthNumber": "50; 1000",
"StrengthUnit": "mg/1; mg/1",
"Pharm_Classes": "Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]",
"Status": "Active",
"LastUpdate": "2026-04-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20251202",
"SamplePackage": "N",
"IndicationAndUsage": "Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].",
"Description": "Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate."
},
{
"NDCCode": "0781-5802-71",
"PackageDescription": "180 TABLET, FILM COATED in 1 BOTTLE (0781-5802-71) ",
"NDC11Code": "00781-5802-71",
"ProductNDC": "0781-5802",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"NonProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20251202",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202388",
"LabelerName": "Sandoz Inc",
"SubstanceName": "SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE",
"StrengthNumber": "50; 1000",
"StrengthUnit": "mg/1; mg/1",
"Pharm_Classes": "Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]",
"Status": "Active",
"LastUpdate": "2026-04-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20251202",
"SamplePackage": "N",
"IndicationAndUsage": "Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].",
"Description": "Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate."
},
{
"NDCCode": "0781-5802-73",
"PackageDescription": "350 TABLET, FILM COATED in 1 BOTTLE (0781-5802-73) ",
"NDC11Code": "00781-5802-73",
"ProductNDC": "0781-5802",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"NonProprietaryName": "Sitagliptin And Metformin Hydrochloride",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20251202",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA202388",
"LabelerName": "Sandoz Inc",
"SubstanceName": "SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE",
"StrengthNumber": "50; 1000",
"StrengthUnit": "mg/1; mg/1",
"Pharm_Classes": "Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]",
"Status": "Active",
"LastUpdate": "2026-04-24",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20271231",
"StartMarketingDatePackage": "20251202",
"SamplePackage": "N",
"IndicationAndUsage": "Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].",
"Description": "Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate."
},
{
"NDCCode": "16590-781-30",
"PackageDescription": "30 TABLET in 1 BOTTLE, PLASTIC (16590-781-30)",
"NDC11Code": "16590-0781-30",
"ProductNDC": "16590-781",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Lithium Carbonate",
"NonProprietaryName": "Lithium Carbonate",
"DosageFormName": "TABLET",
"RouteName": "ORAL",
"StartMarketingDate": "19820129",
"MarketingCategoryName": "NDA",
"ApplicationNumber": "NDA018558",
"LabelerName": "STAT RX USA LLC",
"SubstanceName": "LITHIUM CARBONATE",
"StrengthNumber": "300",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Mood Stabilizer [EPC]",
"Status": "Deprecated",
"LastUpdate": "2018-02-07",
"ProductNdcExcludeFlag": "E",
"ListingRecordCertifiedThrough": "20171231",
"Description": "Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels. Facilities for prompt and accurate serum lithium determinations should be available before initiating therapy (see DOSAGE AND ADMINISTRATION). Each tablet for oral administration contains. Lithium Carbonate . . . . . . . . . . 300 mg. Each capsule for oral administration contains:. Lithium Carbonate . . . . . . . . . . 150 mg, 300 mg or 600 mg. Each 5 mL of solution for oral administration contains. Lithium ion (Li+) . . . . . . . . . . 8 mEq. (equivalent to amount of lithium in 300 mg of lithium carbonate), alcohol 0.3% v/v. The capsules contain talc, gelatin, FD and C Red No. 40, titanium dioxide, and the imprinting ink contains FD and C Blue No. 2, FD and C Yellow No. 6, FD and C Red No. 40, synthetic black iron oxide, and pharmaceutical glaze. The tablets contain calcium stearate, microcrystalline cellulose, povidone, sodium lauryl sulfate, and sodium starch glycolate. The solution contains alcohol, sorbitol, flavoring, water, and other ingredients. Lithium Oral Solution is a palatable oral dosage form of lithium ion. It is prepared in solution from lithium hydroxide and citric acid in a ratio approximately di-lithium citrate. Lithium is an element of the alkali-metal group with atomic number 3, atomic weight 6.94, and an emission line at 671 nm on the flame photometer. The empirical formula for Lithium Citrate is C6H 5Li3O7; molecular weight 209.92. Lithium acts as an antimanic. Lithium Carbonate is a white, light, alkaline powder with molecular formula Li2CO3 and molecular weight 73.89. Preclinical studies have shown that lithium alters sodium transport in nerve and muscle cells and effects a shift toward intraneuronal metabolism of catecholamines, but the specific biochemical mechanism of lithium action in mania is unknown. Lithium is indicated in the treatment of manic episodes of Bipolar Disorder. Bipolar Disorder, Manic (DSM-III) is equivalent to Manic Depressive illness, Manic, in the older DSM-II terminology. Lithium is also indicated as a maintenance treatment for individuals with a diagnosis of Bipolar Disorder. Maintenance therapy reduces the frequency of manic episodes and diminishes the intensity of those episodes which may occur. Typical symptoms of mania include pressure of speech, motor hyperactivity, reduced need for sleep, flight of ideas, grandiosity, elation, poor judgment, aggressiveness, and possibly hostility. When given to a patient experiencing a manic episode, lithium may produce a normalization of symptomatology within 1 to 3 weeks. Lithium should generally not be given to patients with significant renal or cardiovascular disease, severe debilitation or dehydration, or sodium depletion, and to patients receiving diuretics, since the risk of lithium toxicity is very high in such patients. If the psychiatric indication is life-threatening, and if such a patient fails to respond to other measures, lithium treatment may be undertaken with extreme caution, including daily serum lithium determinations and adjustment to the usually low doses ordinarily tolerated by these individuals. In such instances, hospitalization is a necessity. Lithium may cause fetal harm when administered to a pregnant woman. There have been reports of lithium having adverse effects on nidations in rats, embryo viability in mice, and metabolism in-vitro of rat testis and human spermatozoa have been attributed to lithium, as have teratogenicity in submammalian species and cleft palates in mice. Studies in rats, rabbits and monkeys have shown no evidence of lithium-induced teratology. Data from lithium birth registries suggest an increase in cardiac and other anomalies, especially Ebstein’s anomaly. If the patient becomes pregnant while taking lithium, she should be apprised of the potential risk to the fetus. If possible, lithium should be withdrawn for at least the first trimester unless it is determined that this would seriously endanger the mother. Chronic lithium therapy may be associated with diminution of renal concentrating ability, occasionally presenting as nephrogenic diabetes insipidus, with polyuria and polydipsia. Such patients should be carefully managed to avoid dehydration with resulting lithium retention and toxicity. This condition is usually reversible when lithium is discontinued. Morphologic changes with glomerular and interstitial fibrosis and nephron-atrophy have been reported in patients on chronic lithium therapy. Morphologic changes have also been seen in bipolar patients never exposed to lithium. The relationship between renal functional and morphologic changes and their association with lithium therapy has not been established. When kidney function is assessed, for baseline data prior to starting lithium therapy or thereafter, routine urinalysis and other tests may be used to evaluate tubular function (e.g., urine specific gravity or osmolality following a period of water deprivation, or 24-hour urine volume) and glomerular function (e.g., serum creatinine or creatinine clearance). During lithium therapy, progressive or sudden changes in renal function, even within the normal range, indicate the need for reevaluation of treatment. Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels (see DOSAGE AND ADMINISTRATION). The ability to tolerate lithium is greater during the acute manic phase and decreases when manic symptoms subside (see DOSAGE AND ADMINISTRATION). The distribution space of lithium approximates that of total body water. Lithium is primarily excreted in urine with insignificant excretion in feces. Renal excretion of lithium is proportional to its plasma concentration. The half-life of elimination of lithium is approximately 24 hours. Lithium decreases sodium reabsorption by the renal tubules which could lead to sodium depletion. Therefore, it is essential for the patient to maintain a normal diet, including salt, and an adequate fluid intake (2500-3000 mL) at least during the initial stabilization period. Decreased tolerance to lithium has been reported to ensue from protracted sweating or diarrhea and, if such occur, supplemental fluid and salt should be administered. In addition to sweating and diarrhea, concomitant infection with elevated temperatures may also necessitate a temporary reduction or cessation of medication. Previously existing underlying thyroid disorders do not necessarily constitute a contraindication to lithium treatment; where hypothyroidism exists, careful monitoring of thyroid function during lithium stabilization and maintenance allows for correction of changing thyroid parameters, if any. Where hypothyroidism occurs during lithium stabilization and maintenance, supplemental thyroid treatment may be used. Outpatients and their families should be warned that the patient must discontinue lithium therapy and contact his physician if such clinical signs of lithium toxicity as diarrhea, vomiting, tremor, mild ataxia, drowsiness, or muscular weakness occur. Lithium may impair mental and/or physical abilities. Caution patients about activities requiring alertness (e.g., operating vehicles or machinery). An encephalopathic syndrome (characterized by weakness, lethargy, fever, tremulousness and confusion, extrapyramidal symptoms, leucocytosis, elevated serum enzymes, BUN and FBS) followed by irreversible brain damage has occurred in a few patients treated with lithium plus haloperidol. A causal relationship between these events and the concomitant administration of lithium and haloperidol has not been established; however, patients receiving such combined therapy should be monitored closely for early evidence of neurological toxicity and treatment discontinued promptly if such signs appear. The possibility of similar adverse interactions with other antipsychotic medication exists. Lithium may prolong the effects of neuromuscular blocking agents. Therefore, neuromuscular blocking agents should be given with caution to patients receiving lithium. Caution should be used when lithium and diuretics or angiotensin converting enzyme (ACE) inhibitors are used concomitantly because sodium loss may reduce the renal clearance of lithium and increase serum lithium levels with risk of lithium toxicity. When such combinations are used, the lithium dosage may need to be decreased, and more frequent monitoring of lithium plasma levels is recommended. Lithium levels should be closely monitored when patients initiate or discontinue NSAID use. In some cases, lithium toxicity has resulted from interactions between an NSAID and lithium. Indomethacin and piroxicam have been reported to increase significantly steady-state plasma lithium concentrations. There is also evidence that other nonsteroidal anti-inflammatory agents, including the selective cyclooxygenase-2 (COX-2) inhibitors, have the same effect. In a study conducted in healthy subjects, mean steady-state lithium plasma levels increased approximately 17% in subjects receiving lithium 450 mg BID with celecoxib 200 mg BID as compared to subjects receiving lithium alone. See WARNINGS section. Lithium is excreted in human milk. Nursing should not be undertaken during lithium therapy except in rare and unusual circumstances where, in the view of the physician, the potential benefits to the mother outweigh possible hazards to the child. Since information regarding the safety and effectiveness of lithium in children under 12 years of age is not available, its use in such patients is not recommended at this time. There has been a report of a transient syndrome of acute dystonia and hyperreflexia occurring in a 15 kg child who ingested 300 mg of lithium carbonate. The likelihood of toxicity increases with increasing serum lithium levels. Serum lithium levels greater than 1.5 mEq/l carry a greater risk than lower levels. However, patients sensitive to lithium may exhibit toxic signs at serum levels below 1.5 mEq/l. Diarrhea, vomiting, drowsiness, muscular weakness and lack of coordination may be early signs of lithium toxicity, and can occur at lithium levels below 2.0 mEq/l. At higher levels, giddiness, ataxia, blurred vision, tinnitus and a large output of dilute urine may be seen. Serum lithium levels above 3.0 mEq/l may produce a complex clinical picture involving multiple organs and organ systems. Serum lithium levels should not be permitted to exceed 2.0 mEq/l during the acute treatment phase. Fine hand tremor, polyuria and mild thirst may occur during initial therapy for the acute manic phase, and may persist throughout treatment. Transient and mild nausea and general discomfort may also appear during the first few days of lithium administration. These side effects are an inconvenience rather than a disabling condition, and usually subside with continued treatment or a temporary reduction or cessation of dosage. If persistent, a cessation of dosage is indicated. The following adverse reactions have been reported and do not appear to be directly related to serum lithium levels. Tremor, muscle hyperirritability (fasciculations, twitching, clonic movements of whole limbs), ataxia, choreo-athetotic movements, hyperactive deep tendon reflexes. Blackout spells, epileptiform seizures, slurred speech, dizziness, vertigo, incontinence of urine or feces, somnolence, psychomotor retardation, restlessness, confusion, stupor, coma, acute dystonia, downbeat nystagmus. Cardiac arrhythmia, hypotension, peripheral circulatory collapse, sinus node dysfunction with severe bradycardia (which may result in syncope). Cases of pseudotumor cerebri (increased intracranial pressure and papilledema) have been reported with lithium use. If undetected, this condition may result in enlargement of the blind spot, constriction of visual fields and eventual blindness due to optic atrophy. Lithium should be discontinued, if clinically possible, if this syndrome occurs. Anorexia, nausea, vomiting, diarrhea. Albuminuria, oliguria, polyuria, glycosuria. Drying and thinning of hair, anesthesia of skin, chronic folliculitis, xerosis cutis, alopecia and exacerbation of psoriasis. Blurred vision, dry mouth. Euthyroid goiter and/or hypothyroidism (including myxedema) accompanied by lower T3 and T4. Iodine 131 uptake may be elevated. (See PRECAUTIONS). Paradoxically, rare cases of hyperthyroidism have been reported. Diffuse slowing, widening of frequency spectrum, potentiation and disorganization of background rhythm. Reversible flattening, isoelectricity or inversion of T-waves. Fatigue, lethargy, transient scotomata, dehydration, weight loss, tendency to sleep. Transient electroencephalographic and electrocardiographic changes, leucocytosis, headache, diffuse non-toxic goiter with or without hypothyroidism, transient hyperglycemia, generalized pruritis with or without rash, cutaneous ulcers, albuminuria, worsening of organic brain syndromes, excessive weight gain, edematous swelling of ankles or wrists, and thirst or polyuria, sometimes resembling diabetes insipidus, and metallic taste. A single report has been received of the development of painful discoloration of fingers and toes and coldness of the extremities within one day of the starting of treatment of lithium. The mechanism through which these symptoms (resembling Raynaud’s Syndrome) developed is not known. Recovery followed discontinuance. The toxic levels for lithium are close to the therapeutic levels. It is therefore important that patients and their families be cautioned to watch for early symptoms and to discontinue the drug and inform the physician should they occur. Toxic symptoms are listed in detail under ADVERSE REACTIONS. No specific antidote for lithium poisoning is known. Early symptoms of lithium toxicity can usually be treated by reduction of cessation of dosage of the drug and resumption of the treatment at a lower dose after 24 to 48 hours. In severe cases of lithium poisoning, the first and foremost goal of treatment consists of elimination of this ion from the patient. Treatment is essentially the same as that used in barbiturate poisoning: 1) gastric lavage, 2) correction of fluid and electrolyte imbalance and 3) regulation of kidney functioning. Urea, mannitol, and aminophylline all produce significant increases in lithium excretion. Hemodialysis is an effective and rapid means of removing the ion from the severely toxic patient. Infection prophylaxis, regular chest X-rays, and preservation of adequate respiration are essential. Optimal patient response to Lithium Carbonate usually can be established and maintained with 600 mg t.i.d. Optimal patient response to Lithium Oral Solution usually can be established and maintained with 10 mL (2 full teaspoons) (16 mEq of lithium) t.i.d. Such doses will normally produce an effective serum lithium level ranging between 1.0 and 1.5 mEq/l. Dosage must be individualized according to serum levels and clinical response. Regular monitoring of the patient’s clinical state and of serum lithium levels is necessary. Serum levels should be determined twice per week during the acute phase, and until the serum level and clinical condition of the patient have been stabilized. The desirable serum lithium levels are 0.6 to 1.2 mEq/l. Dosage will vary from one individual to another, but usually 300 mg of Lithium Carbonate t.i.d. or q.i.d., or 5 mL (1 full teaspoon) (8 mEq of Lithium) of Lithium Oral Solution t.i.d. or q.i.d. will maintain this level. Serum lithium levels in uncomplicated cases receiving maintenance therapy during remission should be monitored at least every two months. Patients abnormally sensitive to lithium may exhibit toxic signs at serum levels of 1.0 to 1.5 mEq/l. Elderly patients often respond to reduced dosage, and may exhibit signs of toxicity at serum levels ordinarily tolerated by other patients. Blood samples for serum lithium determination should be drawn immediately prior to the next dose when lithium concentrations are relatively stable (i.e., 8-12 hours after the previous dose). Total reliance must not be placed on serum levels alone. Accurate patient evaluation requires both clinical and laboratory analysis. NDC 0054-8528-25: Unit dose, 10 tablets per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-4527-25: Bottles of 100 tablets. NDC 0054-4527-31: Bottles of 1000 tablets. (Identified 54 213). NDC 0054-8526-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2526-25: Bottles of 100 capsules. (Identified 54 463). NDC 0054-8527-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2527-25: Bottles of 100 capsules. NDC 0054-2527-31: Bottles of 1000 capsules. (size 0) (Identified 54 702). NDC 0054-8531-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2531-25: Bottles of 100 capsules. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Protect from moisture. Dispense in a tight container as defined in the USP/NF. NDC 0054-8529-04: Unit dose Patient Cup filled to deliver 5 mL, ten 5 mL Patient Cup per shelf pack, ten shelf packs per shipper. (For Institutional Use Only). NDC 0054-3527-63: Bottles of 500 mL. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Dispense in a tight container as defined in the USP/NF. 4055501//05. Rev March 2005. © RLI, 2005."
},
{
"NDCCode": "16590-781-60",
"PackageDescription": "60 TABLET in 1 BOTTLE, PLASTIC (16590-781-60)",
"NDC11Code": "16590-0781-60",
"ProductNDC": "16590-781",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Lithium Carbonate",
"NonProprietaryName": "Lithium Carbonate",
"DosageFormName": "TABLET",
"RouteName": "ORAL",
"StartMarketingDate": "19820129",
"MarketingCategoryName": "NDA",
"ApplicationNumber": "NDA018558",
"LabelerName": "STAT RX USA LLC",
"SubstanceName": "LITHIUM CARBONATE",
"StrengthNumber": "300",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Mood Stabilizer [EPC]",
"Status": "Deprecated",
"LastUpdate": "2018-02-07",
"ProductNdcExcludeFlag": "E",
"ListingRecordCertifiedThrough": "20171231",
"Description": "Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels. Facilities for prompt and accurate serum lithium determinations should be available before initiating therapy (see DOSAGE AND ADMINISTRATION). Each tablet for oral administration contains. Lithium Carbonate . . . . . . . . . . 300 mg. Each capsule for oral administration contains:. Lithium Carbonate . . . . . . . . . . 150 mg, 300 mg or 600 mg. Each 5 mL of solution for oral administration contains. Lithium ion (Li+) . . . . . . . . . . 8 mEq. (equivalent to amount of lithium in 300 mg of lithium carbonate), alcohol 0.3% v/v. The capsules contain talc, gelatin, FD and C Red No. 40, titanium dioxide, and the imprinting ink contains FD and C Blue No. 2, FD and C Yellow No. 6, FD and C Red No. 40, synthetic black iron oxide, and pharmaceutical glaze. The tablets contain calcium stearate, microcrystalline cellulose, povidone, sodium lauryl sulfate, and sodium starch glycolate. The solution contains alcohol, sorbitol, flavoring, water, and other ingredients. Lithium Oral Solution is a palatable oral dosage form of lithium ion. It is prepared in solution from lithium hydroxide and citric acid in a ratio approximately di-lithium citrate. Lithium is an element of the alkali-metal group with atomic number 3, atomic weight 6.94, and an emission line at 671 nm on the flame photometer. The empirical formula for Lithium Citrate is C6H 5Li3O7; molecular weight 209.92. Lithium acts as an antimanic. Lithium Carbonate is a white, light, alkaline powder with molecular formula Li2CO3 and molecular weight 73.89. Preclinical studies have shown that lithium alters sodium transport in nerve and muscle cells and effects a shift toward intraneuronal metabolism of catecholamines, but the specific biochemical mechanism of lithium action in mania is unknown. Lithium is indicated in the treatment of manic episodes of Bipolar Disorder. Bipolar Disorder, Manic (DSM-III) is equivalent to Manic Depressive illness, Manic, in the older DSM-II terminology. Lithium is also indicated as a maintenance treatment for individuals with a diagnosis of Bipolar Disorder. Maintenance therapy reduces the frequency of manic episodes and diminishes the intensity of those episodes which may occur. Typical symptoms of mania include pressure of speech, motor hyperactivity, reduced need for sleep, flight of ideas, grandiosity, elation, poor judgment, aggressiveness, and possibly hostility. When given to a patient experiencing a manic episode, lithium may produce a normalization of symptomatology within 1 to 3 weeks. Lithium should generally not be given to patients with significant renal or cardiovascular disease, severe debilitation or dehydration, or sodium depletion, and to patients receiving diuretics, since the risk of lithium toxicity is very high in such patients. If the psychiatric indication is life-threatening, and if such a patient fails to respond to other measures, lithium treatment may be undertaken with extreme caution, including daily serum lithium determinations and adjustment to the usually low doses ordinarily tolerated by these individuals. In such instances, hospitalization is a necessity. Lithium may cause fetal harm when administered to a pregnant woman. There have been reports of lithium having adverse effects on nidations in rats, embryo viability in mice, and metabolism in-vitro of rat testis and human spermatozoa have been attributed to lithium, as have teratogenicity in submammalian species and cleft palates in mice. Studies in rats, rabbits and monkeys have shown no evidence of lithium-induced teratology. Data from lithium birth registries suggest an increase in cardiac and other anomalies, especially Ebstein’s anomaly. If the patient becomes pregnant while taking lithium, she should be apprised of the potential risk to the fetus. If possible, lithium should be withdrawn for at least the first trimester unless it is determined that this would seriously endanger the mother. Chronic lithium therapy may be associated with diminution of renal concentrating ability, occasionally presenting as nephrogenic diabetes insipidus, with polyuria and polydipsia. Such patients should be carefully managed to avoid dehydration with resulting lithium retention and toxicity. This condition is usually reversible when lithium is discontinued. Morphologic changes with glomerular and interstitial fibrosis and nephron-atrophy have been reported in patients on chronic lithium therapy. Morphologic changes have also been seen in bipolar patients never exposed to lithium. The relationship between renal functional and morphologic changes and their association with lithium therapy has not been established. When kidney function is assessed, for baseline data prior to starting lithium therapy or thereafter, routine urinalysis and other tests may be used to evaluate tubular function (e.g., urine specific gravity or osmolality following a period of water deprivation, or 24-hour urine volume) and glomerular function (e.g., serum creatinine or creatinine clearance). During lithium therapy, progressive or sudden changes in renal function, even within the normal range, indicate the need for reevaluation of treatment. Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels (see DOSAGE AND ADMINISTRATION). The ability to tolerate lithium is greater during the acute manic phase and decreases when manic symptoms subside (see DOSAGE AND ADMINISTRATION). The distribution space of lithium approximates that of total body water. Lithium is primarily excreted in urine with insignificant excretion in feces. Renal excretion of lithium is proportional to its plasma concentration. The half-life of elimination of lithium is approximately 24 hours. Lithium decreases sodium reabsorption by the renal tubules which could lead to sodium depletion. Therefore, it is essential for the patient to maintain a normal diet, including salt, and an adequate fluid intake (2500-3000 mL) at least during the initial stabilization period. Decreased tolerance to lithium has been reported to ensue from protracted sweating or diarrhea and, if such occur, supplemental fluid and salt should be administered. In addition to sweating and diarrhea, concomitant infection with elevated temperatures may also necessitate a temporary reduction or cessation of medication. Previously existing underlying thyroid disorders do not necessarily constitute a contraindication to lithium treatment; where hypothyroidism exists, careful monitoring of thyroid function during lithium stabilization and maintenance allows for correction of changing thyroid parameters, if any. Where hypothyroidism occurs during lithium stabilization and maintenance, supplemental thyroid treatment may be used. Outpatients and their families should be warned that the patient must discontinue lithium therapy and contact his physician if such clinical signs of lithium toxicity as diarrhea, vomiting, tremor, mild ataxia, drowsiness, or muscular weakness occur. Lithium may impair mental and/or physical abilities. Caution patients about activities requiring alertness (e.g., operating vehicles or machinery). An encephalopathic syndrome (characterized by weakness, lethargy, fever, tremulousness and confusion, extrapyramidal symptoms, leucocytosis, elevated serum enzymes, BUN and FBS) followed by irreversible brain damage has occurred in a few patients treated with lithium plus haloperidol. A causal relationship between these events and the concomitant administration of lithium and haloperidol has not been established; however, patients receiving such combined therapy should be monitored closely for early evidence of neurological toxicity and treatment discontinued promptly if such signs appear. The possibility of similar adverse interactions with other antipsychotic medication exists. Lithium may prolong the effects of neuromuscular blocking agents. Therefore, neuromuscular blocking agents should be given with caution to patients receiving lithium. Caution should be used when lithium and diuretics or angiotensin converting enzyme (ACE) inhibitors are used concomitantly because sodium loss may reduce the renal clearance of lithium and increase serum lithium levels with risk of lithium toxicity. When such combinations are used, the lithium dosage may need to be decreased, and more frequent monitoring of lithium plasma levels is recommended. Lithium levels should be closely monitored when patients initiate or discontinue NSAID use. In some cases, lithium toxicity has resulted from interactions between an NSAID and lithium. Indomethacin and piroxicam have been reported to increase significantly steady-state plasma lithium concentrations. There is also evidence that other nonsteroidal anti-inflammatory agents, including the selective cyclooxygenase-2 (COX-2) inhibitors, have the same effect. In a study conducted in healthy subjects, mean steady-state lithium plasma levels increased approximately 17% in subjects receiving lithium 450 mg BID with celecoxib 200 mg BID as compared to subjects receiving lithium alone. See WARNINGS section. Lithium is excreted in human milk. Nursing should not be undertaken during lithium therapy except in rare and unusual circumstances where, in the view of the physician, the potential benefits to the mother outweigh possible hazards to the child. Since information regarding the safety and effectiveness of lithium in children under 12 years of age is not available, its use in such patients is not recommended at this time. There has been a report of a transient syndrome of acute dystonia and hyperreflexia occurring in a 15 kg child who ingested 300 mg of lithium carbonate. The likelihood of toxicity increases with increasing serum lithium levels. Serum lithium levels greater than 1.5 mEq/l carry a greater risk than lower levels. However, patients sensitive to lithium may exhibit toxic signs at serum levels below 1.5 mEq/l. Diarrhea, vomiting, drowsiness, muscular weakness and lack of coordination may be early signs of lithium toxicity, and can occur at lithium levels below 2.0 mEq/l. At higher levels, giddiness, ataxia, blurred vision, tinnitus and a large output of dilute urine may be seen. Serum lithium levels above 3.0 mEq/l may produce a complex clinical picture involving multiple organs and organ systems. Serum lithium levels should not be permitted to exceed 2.0 mEq/l during the acute treatment phase. Fine hand tremor, polyuria and mild thirst may occur during initial therapy for the acute manic phase, and may persist throughout treatment. Transient and mild nausea and general discomfort may also appear during the first few days of lithium administration. These side effects are an inconvenience rather than a disabling condition, and usually subside with continued treatment or a temporary reduction or cessation of dosage. If persistent, a cessation of dosage is indicated. The following adverse reactions have been reported and do not appear to be directly related to serum lithium levels. Tremor, muscle hyperirritability (fasciculations, twitching, clonic movements of whole limbs), ataxia, choreo-athetotic movements, hyperactive deep tendon reflexes. Blackout spells, epileptiform seizures, slurred speech, dizziness, vertigo, incontinence of urine or feces, somnolence, psychomotor retardation, restlessness, confusion, stupor, coma, acute dystonia, downbeat nystagmus. Cardiac arrhythmia, hypotension, peripheral circulatory collapse, sinus node dysfunction with severe bradycardia (which may result in syncope). Cases of pseudotumor cerebri (increased intracranial pressure and papilledema) have been reported with lithium use. If undetected, this condition may result in enlargement of the blind spot, constriction of visual fields and eventual blindness due to optic atrophy. Lithium should be discontinued, if clinically possible, if this syndrome occurs. Anorexia, nausea, vomiting, diarrhea. Albuminuria, oliguria, polyuria, glycosuria. Drying and thinning of hair, anesthesia of skin, chronic folliculitis, xerosis cutis, alopecia and exacerbation of psoriasis. Blurred vision, dry mouth. Euthyroid goiter and/or hypothyroidism (including myxedema) accompanied by lower T3 and T4. Iodine 131 uptake may be elevated. (See PRECAUTIONS). Paradoxically, rare cases of hyperthyroidism have been reported. Diffuse slowing, widening of frequency spectrum, potentiation and disorganization of background rhythm. Reversible flattening, isoelectricity or inversion of T-waves. Fatigue, lethargy, transient scotomata, dehydration, weight loss, tendency to sleep. Transient electroencephalographic and electrocardiographic changes, leucocytosis, headache, diffuse non-toxic goiter with or without hypothyroidism, transient hyperglycemia, generalized pruritis with or without rash, cutaneous ulcers, albuminuria, worsening of organic brain syndromes, excessive weight gain, edematous swelling of ankles or wrists, and thirst or polyuria, sometimes resembling diabetes insipidus, and metallic taste. A single report has been received of the development of painful discoloration of fingers and toes and coldness of the extremities within one day of the starting of treatment of lithium. The mechanism through which these symptoms (resembling Raynaud’s Syndrome) developed is not known. Recovery followed discontinuance. The toxic levels for lithium are close to the therapeutic levels. It is therefore important that patients and their families be cautioned to watch for early symptoms and to discontinue the drug and inform the physician should they occur. Toxic symptoms are listed in detail under ADVERSE REACTIONS. No specific antidote for lithium poisoning is known. Early symptoms of lithium toxicity can usually be treated by reduction of cessation of dosage of the drug and resumption of the treatment at a lower dose after 24 to 48 hours. In severe cases of lithium poisoning, the first and foremost goal of treatment consists of elimination of this ion from the patient. Treatment is essentially the same as that used in barbiturate poisoning: 1) gastric lavage, 2) correction of fluid and electrolyte imbalance and 3) regulation of kidney functioning. Urea, mannitol, and aminophylline all produce significant increases in lithium excretion. Hemodialysis is an effective and rapid means of removing the ion from the severely toxic patient. Infection prophylaxis, regular chest X-rays, and preservation of adequate respiration are essential. Optimal patient response to Lithium Carbonate usually can be established and maintained with 600 mg t.i.d. Optimal patient response to Lithium Oral Solution usually can be established and maintained with 10 mL (2 full teaspoons) (16 mEq of lithium) t.i.d. Such doses will normally produce an effective serum lithium level ranging between 1.0 and 1.5 mEq/l. Dosage must be individualized according to serum levels and clinical response. Regular monitoring of the patient’s clinical state and of serum lithium levels is necessary. Serum levels should be determined twice per week during the acute phase, and until the serum level and clinical condition of the patient have been stabilized. The desirable serum lithium levels are 0.6 to 1.2 mEq/l. Dosage will vary from one individual to another, but usually 300 mg of Lithium Carbonate t.i.d. or q.i.d., or 5 mL (1 full teaspoon) (8 mEq of Lithium) of Lithium Oral Solution t.i.d. or q.i.d. will maintain this level. Serum lithium levels in uncomplicated cases receiving maintenance therapy during remission should be monitored at least every two months. Patients abnormally sensitive to lithium may exhibit toxic signs at serum levels of 1.0 to 1.5 mEq/l. Elderly patients often respond to reduced dosage, and may exhibit signs of toxicity at serum levels ordinarily tolerated by other patients. Blood samples for serum lithium determination should be drawn immediately prior to the next dose when lithium concentrations are relatively stable (i.e., 8-12 hours after the previous dose). Total reliance must not be placed on serum levels alone. Accurate patient evaluation requires both clinical and laboratory analysis. NDC 0054-8528-25: Unit dose, 10 tablets per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-4527-25: Bottles of 100 tablets. NDC 0054-4527-31: Bottles of 1000 tablets. (Identified 54 213). NDC 0054-8526-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2526-25: Bottles of 100 capsules. (Identified 54 463). NDC 0054-8527-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2527-25: Bottles of 100 capsules. NDC 0054-2527-31: Bottles of 1000 capsules. (size 0) (Identified 54 702). NDC 0054-8531-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2531-25: Bottles of 100 capsules. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Protect from moisture. Dispense in a tight container as defined in the USP/NF. NDC 0054-8529-04: Unit dose Patient Cup filled to deliver 5 mL, ten 5 mL Patient Cup per shelf pack, ten shelf packs per shipper. (For Institutional Use Only). NDC 0054-3527-63: Bottles of 500 mL. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Dispense in a tight container as defined in the USP/NF. 4055501//05. Rev March 2005. © RLI, 2005."
},
{
"NDCCode": "16590-781-90",
"PackageDescription": "90 TABLET in 1 BOTTLE, PLASTIC (16590-781-90)",
"NDC11Code": "16590-0781-90",
"ProductNDC": "16590-781",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Lithium Carbonate",
"NonProprietaryName": "Lithium Carbonate",
"DosageFormName": "TABLET",
"RouteName": "ORAL",
"StartMarketingDate": "19820129",
"MarketingCategoryName": "NDA",
"ApplicationNumber": "NDA018558",
"LabelerName": "STAT RX USA LLC",
"SubstanceName": "LITHIUM CARBONATE",
"StrengthNumber": "300",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Mood Stabilizer [EPC]",
"Status": "Deprecated",
"LastUpdate": "2018-02-07",
"ProductNdcExcludeFlag": "E",
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"Description": "Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels. Facilities for prompt and accurate serum lithium determinations should be available before initiating therapy (see DOSAGE AND ADMINISTRATION). Each tablet for oral administration contains. Lithium Carbonate . . . . . . . . . . 300 mg. Each capsule for oral administration contains:. Lithium Carbonate . . . . . . . . . . 150 mg, 300 mg or 600 mg. Each 5 mL of solution for oral administration contains. Lithium ion (Li+) . . . . . . . . . . 8 mEq. (equivalent to amount of lithium in 300 mg of lithium carbonate), alcohol 0.3% v/v. The capsules contain talc, gelatin, FD and C Red No. 40, titanium dioxide, and the imprinting ink contains FD and C Blue No. 2, FD and C Yellow No. 6, FD and C Red No. 40, synthetic black iron oxide, and pharmaceutical glaze. The tablets contain calcium stearate, microcrystalline cellulose, povidone, sodium lauryl sulfate, and sodium starch glycolate. The solution contains alcohol, sorbitol, flavoring, water, and other ingredients. Lithium Oral Solution is a palatable oral dosage form of lithium ion. It is prepared in solution from lithium hydroxide and citric acid in a ratio approximately di-lithium citrate. Lithium is an element of the alkali-metal group with atomic number 3, atomic weight 6.94, and an emission line at 671 nm on the flame photometer. The empirical formula for Lithium Citrate is C6H 5Li3O7; molecular weight 209.92. Lithium acts as an antimanic. Lithium Carbonate is a white, light, alkaline powder with molecular formula Li2CO3 and molecular weight 73.89. Preclinical studies have shown that lithium alters sodium transport in nerve and muscle cells and effects a shift toward intraneuronal metabolism of catecholamines, but the specific biochemical mechanism of lithium action in mania is unknown. Lithium is indicated in the treatment of manic episodes of Bipolar Disorder. Bipolar Disorder, Manic (DSM-III) is equivalent to Manic Depressive illness, Manic, in the older DSM-II terminology. Lithium is also indicated as a maintenance treatment for individuals with a diagnosis of Bipolar Disorder. Maintenance therapy reduces the frequency of manic episodes and diminishes the intensity of those episodes which may occur. Typical symptoms of mania include pressure of speech, motor hyperactivity, reduced need for sleep, flight of ideas, grandiosity, elation, poor judgment, aggressiveness, and possibly hostility. When given to a patient experiencing a manic episode, lithium may produce a normalization of symptomatology within 1 to 3 weeks. Lithium should generally not be given to patients with significant renal or cardiovascular disease, severe debilitation or dehydration, or sodium depletion, and to patients receiving diuretics, since the risk of lithium toxicity is very high in such patients. If the psychiatric indication is life-threatening, and if such a patient fails to respond to other measures, lithium treatment may be undertaken with extreme caution, including daily serum lithium determinations and adjustment to the usually low doses ordinarily tolerated by these individuals. In such instances, hospitalization is a necessity. Lithium may cause fetal harm when administered to a pregnant woman. There have been reports of lithium having adverse effects on nidations in rats, embryo viability in mice, and metabolism in-vitro of rat testis and human spermatozoa have been attributed to lithium, as have teratogenicity in submammalian species and cleft palates in mice. Studies in rats, rabbits and monkeys have shown no evidence of lithium-induced teratology. Data from lithium birth registries suggest an increase in cardiac and other anomalies, especially Ebstein’s anomaly. If the patient becomes pregnant while taking lithium, she should be apprised of the potential risk to the fetus. If possible, lithium should be withdrawn for at least the first trimester unless it is determined that this would seriously endanger the mother. Chronic lithium therapy may be associated with diminution of renal concentrating ability, occasionally presenting as nephrogenic diabetes insipidus, with polyuria and polydipsia. Such patients should be carefully managed to avoid dehydration with resulting lithium retention and toxicity. This condition is usually reversible when lithium is discontinued. Morphologic changes with glomerular and interstitial fibrosis and nephron-atrophy have been reported in patients on chronic lithium therapy. Morphologic changes have also been seen in bipolar patients never exposed to lithium. The relationship between renal functional and morphologic changes and their association with lithium therapy has not been established. When kidney function is assessed, for baseline data prior to starting lithium therapy or thereafter, routine urinalysis and other tests may be used to evaluate tubular function (e.g., urine specific gravity or osmolality following a period of water deprivation, or 24-hour urine volume) and glomerular function (e.g., serum creatinine or creatinine clearance). During lithium therapy, progressive or sudden changes in renal function, even within the normal range, indicate the need for reevaluation of treatment. Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels (see DOSAGE AND ADMINISTRATION). The ability to tolerate lithium is greater during the acute manic phase and decreases when manic symptoms subside (see DOSAGE AND ADMINISTRATION). The distribution space of lithium approximates that of total body water. Lithium is primarily excreted in urine with insignificant excretion in feces. Renal excretion of lithium is proportional to its plasma concentration. The half-life of elimination of lithium is approximately 24 hours. Lithium decreases sodium reabsorption by the renal tubules which could lead to sodium depletion. Therefore, it is essential for the patient to maintain a normal diet, including salt, and an adequate fluid intake (2500-3000 mL) at least during the initial stabilization period. Decreased tolerance to lithium has been reported to ensue from protracted sweating or diarrhea and, if such occur, supplemental fluid and salt should be administered. In addition to sweating and diarrhea, concomitant infection with elevated temperatures may also necessitate a temporary reduction or cessation of medication. Previously existing underlying thyroid disorders do not necessarily constitute a contraindication to lithium treatment; where hypothyroidism exists, careful monitoring of thyroid function during lithium stabilization and maintenance allows for correction of changing thyroid parameters, if any. Where hypothyroidism occurs during lithium stabilization and maintenance, supplemental thyroid treatment may be used. Outpatients and their families should be warned that the patient must discontinue lithium therapy and contact his physician if such clinical signs of lithium toxicity as diarrhea, vomiting, tremor, mild ataxia, drowsiness, or muscular weakness occur. Lithium may impair mental and/or physical abilities. Caution patients about activities requiring alertness (e.g., operating vehicles or machinery). An encephalopathic syndrome (characterized by weakness, lethargy, fever, tremulousness and confusion, extrapyramidal symptoms, leucocytosis, elevated serum enzymes, BUN and FBS) followed by irreversible brain damage has occurred in a few patients treated with lithium plus haloperidol. A causal relationship between these events and the concomitant administration of lithium and haloperidol has not been established; however, patients receiving such combined therapy should be monitored closely for early evidence of neurological toxicity and treatment discontinued promptly if such signs appear. The possibility of similar adverse interactions with other antipsychotic medication exists. Lithium may prolong the effects of neuromuscular blocking agents. Therefore, neuromuscular blocking agents should be given with caution to patients receiving lithium. Caution should be used when lithium and diuretics or angiotensin converting enzyme (ACE) inhibitors are used concomitantly because sodium loss may reduce the renal clearance of lithium and increase serum lithium levels with risk of lithium toxicity. When such combinations are used, the lithium dosage may need to be decreased, and more frequent monitoring of lithium plasma levels is recommended. Lithium levels should be closely monitored when patients initiate or discontinue NSAID use. In some cases, lithium toxicity has resulted from interactions between an NSAID and lithium. Indomethacin and piroxicam have been reported to increase significantly steady-state plasma lithium concentrations. There is also evidence that other nonsteroidal anti-inflammatory agents, including the selective cyclooxygenase-2 (COX-2) inhibitors, have the same effect. In a study conducted in healthy subjects, mean steady-state lithium plasma levels increased approximately 17% in subjects receiving lithium 450 mg BID with celecoxib 200 mg BID as compared to subjects receiving lithium alone. See WARNINGS section. Lithium is excreted in human milk. Nursing should not be undertaken during lithium therapy except in rare and unusual circumstances where, in the view of the physician, the potential benefits to the mother outweigh possible hazards to the child. Since information regarding the safety and effectiveness of lithium in children under 12 years of age is not available, its use in such patients is not recommended at this time. There has been a report of a transient syndrome of acute dystonia and hyperreflexia occurring in a 15 kg child who ingested 300 mg of lithium carbonate. The likelihood of toxicity increases with increasing serum lithium levels. Serum lithium levels greater than 1.5 mEq/l carry a greater risk than lower levels. However, patients sensitive to lithium may exhibit toxic signs at serum levels below 1.5 mEq/l. Diarrhea, vomiting, drowsiness, muscular weakness and lack of coordination may be early signs of lithium toxicity, and can occur at lithium levels below 2.0 mEq/l. At higher levels, giddiness, ataxia, blurred vision, tinnitus and a large output of dilute urine may be seen. Serum lithium levels above 3.0 mEq/l may produce a complex clinical picture involving multiple organs and organ systems. Serum lithium levels should not be permitted to exceed 2.0 mEq/l during the acute treatment phase. Fine hand tremor, polyuria and mild thirst may occur during initial therapy for the acute manic phase, and may persist throughout treatment. Transient and mild nausea and general discomfort may also appear during the first few days of lithium administration. These side effects are an inconvenience rather than a disabling condition, and usually subside with continued treatment or a temporary reduction or cessation of dosage. If persistent, a cessation of dosage is indicated. The following adverse reactions have been reported and do not appear to be directly related to serum lithium levels. Tremor, muscle hyperirritability (fasciculations, twitching, clonic movements of whole limbs), ataxia, choreo-athetotic movements, hyperactive deep tendon reflexes. Blackout spells, epileptiform seizures, slurred speech, dizziness, vertigo, incontinence of urine or feces, somnolence, psychomotor retardation, restlessness, confusion, stupor, coma, acute dystonia, downbeat nystagmus. Cardiac arrhythmia, hypotension, peripheral circulatory collapse, sinus node dysfunction with severe bradycardia (which may result in syncope). Cases of pseudotumor cerebri (increased intracranial pressure and papilledema) have been reported with lithium use. If undetected, this condition may result in enlargement of the blind spot, constriction of visual fields and eventual blindness due to optic atrophy. Lithium should be discontinued, if clinically possible, if this syndrome occurs. Anorexia, nausea, vomiting, diarrhea. Albuminuria, oliguria, polyuria, glycosuria. Drying and thinning of hair, anesthesia of skin, chronic folliculitis, xerosis cutis, alopecia and exacerbation of psoriasis. Blurred vision, dry mouth. Euthyroid goiter and/or hypothyroidism (including myxedema) accompanied by lower T3 and T4. Iodine 131 uptake may be elevated. (See PRECAUTIONS). Paradoxically, rare cases of hyperthyroidism have been reported. Diffuse slowing, widening of frequency spectrum, potentiation and disorganization of background rhythm. Reversible flattening, isoelectricity or inversion of T-waves. Fatigue, lethargy, transient scotomata, dehydration, weight loss, tendency to sleep. Transient electroencephalographic and electrocardiographic changes, leucocytosis, headache, diffuse non-toxic goiter with or without hypothyroidism, transient hyperglycemia, generalized pruritis with or without rash, cutaneous ulcers, albuminuria, worsening of organic brain syndromes, excessive weight gain, edematous swelling of ankles or wrists, and thirst or polyuria, sometimes resembling diabetes insipidus, and metallic taste. A single report has been received of the development of painful discoloration of fingers and toes and coldness of the extremities within one day of the starting of treatment of lithium. The mechanism through which these symptoms (resembling Raynaud’s Syndrome) developed is not known. Recovery followed discontinuance. The toxic levels for lithium are close to the therapeutic levels. It is therefore important that patients and their families be cautioned to watch for early symptoms and to discontinue the drug and inform the physician should they occur. Toxic symptoms are listed in detail under ADVERSE REACTIONS. No specific antidote for lithium poisoning is known. Early symptoms of lithium toxicity can usually be treated by reduction of cessation of dosage of the drug and resumption of the treatment at a lower dose after 24 to 48 hours. In severe cases of lithium poisoning, the first and foremost goal of treatment consists of elimination of this ion from the patient. Treatment is essentially the same as that used in barbiturate poisoning: 1) gastric lavage, 2) correction of fluid and electrolyte imbalance and 3) regulation of kidney functioning. Urea, mannitol, and aminophylline all produce significant increases in lithium excretion. Hemodialysis is an effective and rapid means of removing the ion from the severely toxic patient. Infection prophylaxis, regular chest X-rays, and preservation of adequate respiration are essential. Optimal patient response to Lithium Carbonate usually can be established and maintained with 600 mg t.i.d. Optimal patient response to Lithium Oral Solution usually can be established and maintained with 10 mL (2 full teaspoons) (16 mEq of lithium) t.i.d. Such doses will normally produce an effective serum lithium level ranging between 1.0 and 1.5 mEq/l. Dosage must be individualized according to serum levels and clinical response. Regular monitoring of the patient’s clinical state and of serum lithium levels is necessary. Serum levels should be determined twice per week during the acute phase, and until the serum level and clinical condition of the patient have been stabilized. The desirable serum lithium levels are 0.6 to 1.2 mEq/l. Dosage will vary from one individual to another, but usually 300 mg of Lithium Carbonate t.i.d. or q.i.d., or 5 mL (1 full teaspoon) (8 mEq of Lithium) of Lithium Oral Solution t.i.d. or q.i.d. will maintain this level. Serum lithium levels in uncomplicated cases receiving maintenance therapy during remission should be monitored at least every two months. Patients abnormally sensitive to lithium may exhibit toxic signs at serum levels of 1.0 to 1.5 mEq/l. Elderly patients often respond to reduced dosage, and may exhibit signs of toxicity at serum levels ordinarily tolerated by other patients. Blood samples for serum lithium determination should be drawn immediately prior to the next dose when lithium concentrations are relatively stable (i.e., 8-12 hours after the previous dose). Total reliance must not be placed on serum levels alone. Accurate patient evaluation requires both clinical and laboratory analysis. NDC 0054-8528-25: Unit dose, 10 tablets per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-4527-25: Bottles of 100 tablets. NDC 0054-4527-31: Bottles of 1000 tablets. (Identified 54 213). NDC 0054-8526-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2526-25: Bottles of 100 capsules. (Identified 54 463). NDC 0054-8527-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2527-25: Bottles of 100 capsules. NDC 0054-2527-31: Bottles of 1000 capsules. (size 0) (Identified 54 702). NDC 0054-8531-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2531-25: Bottles of 100 capsules. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Protect from moisture. Dispense in a tight container as defined in the USP/NF. NDC 0054-8529-04: Unit dose Patient Cup filled to deliver 5 mL, ten 5 mL Patient Cup per shelf pack, ten shelf packs per shipper. (For Institutional Use Only). NDC 0054-3527-63: Bottles of 500 mL. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Dispense in a tight container as defined in the USP/NF. 4055501//05. Rev March 2005. © RLI, 2005."
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"ProductTypeName": "HUMAN OTC DRUG",
"ProprietaryName": "Hydrating Camo Cc Cream Spf30 Medium 330 W",
"NonProprietaryName": "Zinc Oxide, Titazinc Oxide, Titanium Dioxide, Homosalate, Octisalate, Octocrylenenium Dioxide, Homosalate, Octisalate",
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"StrengthUnit": "mg/g; mg/g; mg/g; mg/g; mg/g",
"Pharm_Classes": "Copper Absorption Inhibitor [EPC], Decreased Copper Ion Absorption [PE]",
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"IndicationAndUsage": "Helps prevent sunburn. If used as directed with other sun protection measures (see Directions) decreases the risk of skin cancer and early skin aging caused by the sun."
},
{
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"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
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"StrengthUnit": "mg/1",
"Pharm_Classes": "Increased Diuresis at Loop of Henle [PE],Loop Diuretic [EPC]",
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"IndicationAndUsage": "Lidocaine hydrochloride is indicated for the production of topical anesthesia of accessible mucous membranes of the oral and nasal cavities and proximal portions of the digestive tract.",
"Description": "Lidocaine Hydrochloride Topical Solution, USP contains a local anesthetic agent and is administered topically. See INDICATIONS for specific uses. Each mL contains. lidocaine hydrochloride, USP .................................................................................................... 40 mg. Methylparaben, Sodium Hydroxide (to adjust pH) in an aqueous solution. NOT FOR INJECTION. Lidocaine is a local anesthetic chemically designated as acetamide, 2-(diethylamino)-N-(2,6-dimethylphenyl)-, monohydrochloride, monohydrate. It has the following structural formula."
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"StrengthUnit": "mg/1",
"Pharm_Classes": "Full Opioid Agonists [MoA], Opioid Agonist [EPC]",
"DEASchedule": "CII",
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"LastUpdate": "2023-03-01",
"PackageNdcExcludeFlag": "N",
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"DEASchedule": "CII",
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"LastUpdate": "2022-04-19",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"ListingRecordCertifiedThrough": "20221231",
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},
{
"NDCCode": "0378-3505-01",
"PackageDescription": "100 TABLET, FILM COATED in 1 BOTTLE, PLASTIC (0378-3505-01)",
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"ProductNDC": "0378-3505",
"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Risperidone",
"NonProprietaryName": "Risperidone",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20080917",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA076288",
"LabelerName": "Mylan Pharmaceuticals Inc.",
"SubstanceName": "RISPERIDONE",
"StrengthNumber": ".5",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Atypical Antipsychotic [EPC]",
"Status": "Deprecated",
"LastUpdate": "2014-09-26"
},
{
"NDCCode": "0378-3505-05",
"PackageDescription": "500 TABLET, FILM COATED in 1 BOTTLE, PLASTIC (0378-3505-05) ",
"NDC11Code": "00378-3505-05",
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"ProductTypeName": "HUMAN PRESCRIPTION DRUG",
"ProprietaryName": "Risperidone",
"NonProprietaryName": "Risperidone",
"DosageFormName": "TABLET, FILM COATED",
"RouteName": "ORAL",
"StartMarketingDate": "20080917",
"EndMarketingDate": "20200930",
"MarketingCategoryName": "ANDA",
"ApplicationNumber": "ANDA076288",
"LabelerName": "Mylan Pharmaceuticals Inc.",
"SubstanceName": "RISPERIDONE",
"StrengthNumber": ".5",
"StrengthUnit": "mg/1",
"Pharm_Classes": "Atypical Antipsychotic [EPC]",
"Status": "Deprecated",
"LastUpdate": "2020-06-02",
"PackageNdcExcludeFlag": "N",
"ProductNdcExcludeFlag": "N",
"StartMarketingDatePackage": "20080917",
"EndMarketingDatePackage": "20200531",
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},
{
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<NonProprietaryName>Enoxaparin Sodium Injection,usp</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>SUBCUTANEOUS</RouteName>
<StartMarketingDate>20230315</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA205660</ApplicationNumber>
<LabelerName>Sandoz Inc.</LabelerName>
<SubstanceName>ENOXAPARIN SODIUM</SubstanceName>
<StrengthNumber>120</StrengthNumber>
<StrengthUnit>mg/.8mL</StrengthUnit>
<Pharm_Classes>Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2025-02-14</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20251231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20240709</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).</IndicationAndUsage>
<Description>Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)].</Description>
</NDC>
<NDC>
<NDCCode>0781-3513-63</NDCCode>
<PackageDescription>10 SYRINGE in 1 CARTON (0781-3513-63) / 1 mL in 1 SYRINGE (0781-3513-01) </PackageDescription>
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<ProductNDC>0781-3513</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Enoxaparin Sodium Injection,usp</ProprietaryName>
<NonProprietaryName>Enoxaparin Sodium Injection,usp</NonProprietaryName>
<DosageFormName>INJECTION, SOLUTION</DosageFormName>
<RouteName>SUBCUTANEOUS</RouteName>
<StartMarketingDate>20230315</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA205660</ApplicationNumber>
<LabelerName>Sandoz Inc.</LabelerName>
<SubstanceName>ENOXAPARIN SODIUM</SubstanceName>
<StrengthNumber>150</StrengthNumber>
<StrengthUnit>mg/mL</StrengthUnit>
<Pharm_Classes>Heparin, Low-Molecular-Weight [CS], Low Molecular Weight Heparin [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2025-02-14</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20251231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20240709</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Enoxaparin sodium injection is a low molecular weight heparin (LMWH) indicated for: 1 Prophylaxis of deep vein thrombosis (DVT) in abdominal surgery, hip replacement surgery, knee replacement surgery, or medical patients with severely restricted mobility during acute illness (1.1), 2 Inpatient treatment of acute DVT with or without pulmonary embolism (1.2), 3 Outpatient treatment of acute DVT without pulmonary embolism (1.2), 4 Prophylaxis of ischemic complications of unstable angina and non−Q-wave myocardial infarction (MI) (1.3), 5 Treatment of acute ST-segment elevation myocardial infarction (STEMI) managed medically or with subsequent percutaneous coronary intervention (PCI) (1.4).</IndicationAndUsage>
<Description>Enoxaparin sodium injection, USP is a sterile aqueous solution containing enoxaparin sodium USP, a low molecular weight heparin. The pH of the injection is 5.5 to 7.5. Enoxaparin sodium is obtained by alkaline depolymerization of heparin benzyl ester derived from porcine intestinal mucosa. Its structure is characterized by a 2-O-sulfo-4-enepyranosuronic acid group at the non-reducing end and a 2-N,6-O-disulfo-D- glucosamine at the reducing end of the chain. About 20% (ranging between 15% and 25%) of the enoxaparin structure contains an 1,6-anhydro derivative on the reducing end of the polysaccharide chain. The drug substance is the sodium salt. The average molecular weight is about 4500 daltons. The molecular weight distribution is. <2000 daltons ≤20%. 2000 to 8000 daltons ≥68%. >8000 daltons ≤18%. STRUCTURAL FORMULA. *X = Percent of polysaccharide chain containing 1,6-anhydro derivative on the reducing end. Enoxaparin sodium injection, USP 100 mg/mL Concentration contains 10 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1000 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. Enoxaparin sodium injection, USP 150 mg/mL Concentration contains 15 mg enoxaparin sodium (approximate anti- Factor Xa activity of 1500 IU [with reference to the W.H.O. First International Low Molecular Weight Heparin Reference Standard]) per 0.1 mL Water for Injection. The enoxaparin sodium injection, USP prefilled syringes and graduated prefilled syringes are preservative-free and intended for use only as a single-dose injection. [see Dosage and Administration (2) and How Supplied/Storage and Handling (16)].</Description>
</NDC>
<NDC>
<NDCCode>0781-7146-63</NDCCode>
<PackageDescription>2 POUCH in 1 CARTON (0781-7146-63) > 30 AMPULE in 1 POUCH > 3 mL in 1 AMPULE</PackageDescription>
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<ProductNDC>0781-7146</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Ipratropium Bromide And Albuterol Sulfate</ProprietaryName>
<NonProprietaryName>Ipratropium Bromide And Albuterol Sulfate</NonProprietaryName>
<DosageFormName>SOLUTION</DosageFormName>
<RouteName>RESPIRATORY (INHALATION)</RouteName>
<StartMarketingDate>20130520</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA202496</ApplicationNumber>
<LabelerName>Sandoz Inc.</LabelerName>
<SubstanceName>IPRATROPIUM BROMIDE; ALBUTEROL SULFATE</SubstanceName>
<StrengthNumber>.5; 3</StrengthNumber>
<StrengthUnit>mg/3mL; mg/3mL</StrengthUnit>
<Pharm_Classes>Anticholinergic [EPC],Cholinergic Antagonists [MoA],Adrenergic beta2-Agonists [MoA],beta2-Adrenergic Agonist [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2019-09-21</LastUpdate>
<ProductNdcExcludeFlag>E</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20181231</ListingRecordCertifiedThrough>
</NDC>
<NDC>
<NDCCode>69423-781-63</NDCCode>
<PackageDescription>1 TUBE in 1 CARTON (69423-781-63) / 178 g in 1 TUBE</PackageDescription>
<NDC11Code>69423-0781-63</NDC11Code>
<ProductNDC>69423-781</ProductNDC>
<ProductTypeName>HUMAN OTC DRUG</ProductTypeName>
<ProprietaryName>Crest</ProprietaryName>
<ProprietaryNameSuffix>Pro Health Clean Mint</ProprietaryNameSuffix>
<NonProprietaryName>Stannous Fluoride</NonProprietaryName>
<DosageFormName>PASTE, DENTIFRICE</DosageFormName>
<RouteName>DENTAL</RouteName>
<StartMarketingDate>20221003</StartMarketingDate>
<MarketingCategoryName>OTC MONOGRAPH DRUG</MarketingCategoryName>
<ApplicationNumber>M021</ApplicationNumber>
<LabelerName>The Procter & Gamble Manufacturing Company</LabelerName>
<SubstanceName>STANNOUS FLUORIDE</SubstanceName>
<StrengthNumber>1.5</StrengthNumber>
<StrengthUnit>mg/g</StrengthUnit>
<Status>Active</Status>
<LastUpdate>2026-01-09</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20221003</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
</NDC>
<NDC>
<NDCCode>0781-5801-05</NDCCode>
<PackageDescription>500 TABLET, FILM COATED in 1 BOTTLE (0781-5801-05) </PackageDescription>
<NDC11Code>00781-5801-05</NDC11Code>
<ProductNDC>0781-5801</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Sitagliptin And Metformin Hydrochloride</ProprietaryName>
<NonProprietaryName>Sitagliptin And Metformin Hydrochloride</NonProprietaryName>
<DosageFormName>TABLET, FILM COATED</DosageFormName>
<RouteName>ORAL</RouteName>
<StartMarketingDate>20251202</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA202388</ApplicationNumber>
<LabelerName>Sandoz Inc</LabelerName>
<SubstanceName>SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE</SubstanceName>
<StrengthNumber>50; 500</StrengthNumber>
<StrengthUnit>mg/1; mg/1</StrengthUnit>
<Pharm_Classes>Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2026-04-24</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20251202</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].</IndicationAndUsage>
<Description>Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate.</Description>
</NDC>
<NDC>
<NDCCode>0781-5801-60</NDCCode>
<PackageDescription>60 TABLET, FILM COATED in 1 BOTTLE (0781-5801-60) </PackageDescription>
<NDC11Code>00781-5801-60</NDC11Code>
<ProductNDC>0781-5801</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Sitagliptin And Metformin Hydrochloride</ProprietaryName>
<NonProprietaryName>Sitagliptin And Metformin Hydrochloride</NonProprietaryName>
<DosageFormName>TABLET, FILM COATED</DosageFormName>
<RouteName>ORAL</RouteName>
<StartMarketingDate>20251202</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA202388</ApplicationNumber>
<LabelerName>Sandoz Inc</LabelerName>
<SubstanceName>SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE</SubstanceName>
<StrengthNumber>50; 500</StrengthNumber>
<StrengthUnit>mg/1; mg/1</StrengthUnit>
<Pharm_Classes>Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2026-04-24</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20251202</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].</IndicationAndUsage>
<Description>Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate.</Description>
</NDC>
<NDC>
<NDCCode>0781-5801-71</NDCCode>
<PackageDescription>180 TABLET, FILM COATED in 1 BOTTLE (0781-5801-71) </PackageDescription>
<NDC11Code>00781-5801-71</NDC11Code>
<ProductNDC>0781-5801</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Sitagliptin And Metformin Hydrochloride</ProprietaryName>
<NonProprietaryName>Sitagliptin And Metformin Hydrochloride</NonProprietaryName>
<DosageFormName>TABLET, FILM COATED</DosageFormName>
<RouteName>ORAL</RouteName>
<StartMarketingDate>20251202</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA202388</ApplicationNumber>
<LabelerName>Sandoz Inc</LabelerName>
<SubstanceName>SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE</SubstanceName>
<StrengthNumber>50; 500</StrengthNumber>
<StrengthUnit>mg/1; mg/1</StrengthUnit>
<Pharm_Classes>Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2026-04-24</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20251202</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].</IndicationAndUsage>
<Description>Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate.</Description>
</NDC>
<NDC>
<NDCCode>0781-5802-60</NDCCode>
<PackageDescription>60 TABLET, FILM COATED in 1 BOTTLE (0781-5802-60) </PackageDescription>
<NDC11Code>00781-5802-60</NDC11Code>
<ProductNDC>0781-5802</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Sitagliptin And Metformin Hydrochloride</ProprietaryName>
<NonProprietaryName>Sitagliptin And Metformin Hydrochloride</NonProprietaryName>
<DosageFormName>TABLET, FILM COATED</DosageFormName>
<RouteName>ORAL</RouteName>
<StartMarketingDate>20251202</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA202388</ApplicationNumber>
<LabelerName>Sandoz Inc</LabelerName>
<SubstanceName>SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE</SubstanceName>
<StrengthNumber>50; 1000</StrengthNumber>
<StrengthUnit>mg/1; mg/1</StrengthUnit>
<Pharm_Classes>Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]</Pharm_Classes>
<Status>Active</Status>
<LastUpdate>2026-04-24</LastUpdate>
<PackageNdcExcludeFlag>N</PackageNdcExcludeFlag>
<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20271231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20251202</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].</IndicationAndUsage>
<Description>Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate.</Description>
</NDC>
<NDC>
<NDCCode>0781-5802-71</NDCCode>
<PackageDescription>180 TABLET, FILM COATED in 1 BOTTLE (0781-5802-71) </PackageDescription>
<NDC11Code>00781-5802-71</NDC11Code>
<ProductNDC>0781-5802</ProductNDC>
<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
<ProprietaryName>Sitagliptin And Metformin Hydrochloride</ProprietaryName>
<NonProprietaryName>Sitagliptin And Metformin Hydrochloride</NonProprietaryName>
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<RouteName>ORAL</RouteName>
<StartMarketingDate>20251202</StartMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA202388</ApplicationNumber>
<LabelerName>Sandoz Inc</LabelerName>
<SubstanceName>SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE</SubstanceName>
<StrengthNumber>50; 1000</StrengthNumber>
<StrengthUnit>mg/1; mg/1</StrengthUnit>
<Pharm_Classes>Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]</Pharm_Classes>
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<LastUpdate>2026-04-24</LastUpdate>
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<IndicationAndUsage>Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].</IndicationAndUsage>
<Description>Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate.</Description>
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<LabelerName>Sandoz Inc</LabelerName>
<SubstanceName>SITAGLIPTIN PHOSPHATE; METFORMIN HYDROCHLORIDE</SubstanceName>
<StrengthNumber>50; 1000</StrengthNumber>
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<Pharm_Classes>Biguanide [EPC], Biguanides [CS], Dipeptidyl Peptidase 4 Inhibitor [EPC], Dipeptidyl Peptidase 4 Inhibitors [MoA]</Pharm_Classes>
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<SamplePackage>N</SamplePackage>
<IndicationAndUsage>Sitagliptin and metformin hydrochloride is indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus. Limitations of Use. Sitagliptin and metformin hydrochloride should not be used in patients with type 1 diabetes mellitus. Sitagliptin and metformin hydrochloride have not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at increased risk for the development of pancreatitis while using sitagliptin and metformin hydrochloride. [see Warnings and Precautions (5.2)].</IndicationAndUsage>
<Description>Sitagliptin and metformin hydrochloride tablets for oral use contain two oral antihyperglycemic drugs: sitagliptin and metformin hydrochloride. Sitagliptin. Sitagliptin is an orally-active inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Sitagliptin is present in Sitagliptin and metformin hydrochloride tablets in the form of sitagliptin phosphate monohydrate. Sitagliptin phosphate monohydrate is described chemically as 7-[(3R)-3-amino-1-oxo-4-(2,4,5-trifluorophenyl)butyl]-5,6,7,8-tetrahydro-3-(trifluoromethyl)-1,2,4-triazolo[4,3-a]pyrazine phosphate (1:1) monohydrate with a molecular formula of C16H15F6N5OH3PO4H2O and a molecular weight of 523.32. The structural formula is. Sitagliptin phosphate monohydrate is a white to off-white, crystalline, non-hygroscopic powder. It is soluble in water and N,N-dimethyl formamide; slightly soluble in methanol; very slightly soluble in ethanol, acetone, and acetonitrile; and insoluble in isopropanol and isopropyl acetate. Metformin hydrochloride. Metformin hydrochloride (N,N-dimethylimidodicarbonimidic diamide hydrochloride) is not chemically or pharmacologically related to any other classes of oral antihyperglycemic agents. Metformin hydrochloride is a white crystalline powder with a molecular formula of C4H11N5HCl and a molecular weight of 165.63. Metformin hydrochloride is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4. The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is as shown. Sitagliptin and metformin hydrochloride. Sitagliptin and metformin hydrochloride are available for oral administration as tablets containing 64.25 mg sitagliptin phosphate monohydrate and metformin hydrochloride equivalent to: 50 mg sitagliptin as free base and 500 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/500 mg) or 1,000 mg metformin hydrochloride (Sitagliptin and metformin hydrochloride 50 mg/1,000 mg). Each film-coated tablet of sitagliptin and metformin hydrochloride contains the following inactive ingredients: croscarmellose sodium, microcrystalline cellulose, povidone K30, sodium lauryl sulfate, and sodium stearyl fumarate. In addition, the film coating contains the following inactive ingredients: ferric oxide red, ferric oxide yellow, hypromellose, hydroxypropyl cellulose, talc, titanium dioxide, and triethyl citrate.</Description>
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<ProprietaryName>Lithium Carbonate</ProprietaryName>
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<MarketingCategoryName>NDA</MarketingCategoryName>
<ApplicationNumber>NDA018558</ApplicationNumber>
<LabelerName>STAT RX USA LLC</LabelerName>
<SubstanceName>LITHIUM CARBONATE</SubstanceName>
<StrengthNumber>300</StrengthNumber>
<StrengthUnit>mg/1</StrengthUnit>
<Pharm_Classes>Mood Stabilizer [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2018-02-07</LastUpdate>
<ProductNdcExcludeFlag>E</ProductNdcExcludeFlag>
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<Description>Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels. Facilities for prompt and accurate serum lithium determinations should be available before initiating therapy (see DOSAGE AND ADMINISTRATION). Each tablet for oral administration contains. Lithium Carbonate . . . . . . . . . . 300 mg. Each capsule for oral administration contains:. Lithium Carbonate . . . . . . . . . . 150 mg, 300 mg or 600 mg. Each 5 mL of solution for oral administration contains. Lithium ion (Li+) . . . . . . . . . . 8 mEq. (equivalent to amount of lithium in 300 mg of lithium carbonate), alcohol 0.3% v/v. The capsules contain talc, gelatin, FD and C Red No. 40, titanium dioxide, and the imprinting ink contains FD and C Blue No. 2, FD and C Yellow No. 6, FD and C Red No. 40, synthetic black iron oxide, and pharmaceutical glaze. The tablets contain calcium stearate, microcrystalline cellulose, povidone, sodium lauryl sulfate, and sodium starch glycolate. The solution contains alcohol, sorbitol, flavoring, water, and other ingredients. Lithium Oral Solution is a palatable oral dosage form of lithium ion. It is prepared in solution from lithium hydroxide and citric acid in a ratio approximately di-lithium citrate. Lithium is an element of the alkali-metal group with atomic number 3, atomic weight 6.94, and an emission line at 671 nm on the flame photometer. The empirical formula for Lithium Citrate is C6H 5Li3O7; molecular weight 209.92. Lithium acts as an antimanic. Lithium Carbonate is a white, light, alkaline powder with molecular formula Li2CO3 and molecular weight 73.89. Preclinical studies have shown that lithium alters sodium transport in nerve and muscle cells and effects a shift toward intraneuronal metabolism of catecholamines, but the specific biochemical mechanism of lithium action in mania is unknown. Lithium is indicated in the treatment of manic episodes of Bipolar Disorder. Bipolar Disorder, Manic (DSM-III) is equivalent to Manic Depressive illness, Manic, in the older DSM-II terminology. Lithium is also indicated as a maintenance treatment for individuals with a diagnosis of Bipolar Disorder. Maintenance therapy reduces the frequency of manic episodes and diminishes the intensity of those episodes which may occur. Typical symptoms of mania include pressure of speech, motor hyperactivity, reduced need for sleep, flight of ideas, grandiosity, elation, poor judgment, aggressiveness, and possibly hostility. When given to a patient experiencing a manic episode, lithium may produce a normalization of symptomatology within 1 to 3 weeks. Lithium should generally not be given to patients with significant renal or cardiovascular disease, severe debilitation or dehydration, or sodium depletion, and to patients receiving diuretics, since the risk of lithium toxicity is very high in such patients. If the psychiatric indication is life-threatening, and if such a patient fails to respond to other measures, lithium treatment may be undertaken with extreme caution, including daily serum lithium determinations and adjustment to the usually low doses ordinarily tolerated by these individuals. In such instances, hospitalization is a necessity. Lithium may cause fetal harm when administered to a pregnant woman. There have been reports of lithium having adverse effects on nidations in rats, embryo viability in mice, and metabolism in-vitro of rat testis and human spermatozoa have been attributed to lithium, as have teratogenicity in submammalian species and cleft palates in mice. Studies in rats, rabbits and monkeys have shown no evidence of lithium-induced teratology. Data from lithium birth registries suggest an increase in cardiac and other anomalies, especially Ebstein’s anomaly. If the patient becomes pregnant while taking lithium, she should be apprised of the potential risk to the fetus. If possible, lithium should be withdrawn for at least the first trimester unless it is determined that this would seriously endanger the mother. Chronic lithium therapy may be associated with diminution of renal concentrating ability, occasionally presenting as nephrogenic diabetes insipidus, with polyuria and polydipsia. Such patients should be carefully managed to avoid dehydration with resulting lithium retention and toxicity. This condition is usually reversible when lithium is discontinued. Morphologic changes with glomerular and interstitial fibrosis and nephron-atrophy have been reported in patients on chronic lithium therapy. Morphologic changes have also been seen in bipolar patients never exposed to lithium. The relationship between renal functional and morphologic changes and their association with lithium therapy has not been established. When kidney function is assessed, for baseline data prior to starting lithium therapy or thereafter, routine urinalysis and other tests may be used to evaluate tubular function (e.g., urine specific gravity or osmolality following a period of water deprivation, or 24-hour urine volume) and glomerular function (e.g., serum creatinine or creatinine clearance). During lithium therapy, progressive or sudden changes in renal function, even within the normal range, indicate the need for reevaluation of treatment. Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels (see DOSAGE AND ADMINISTRATION). The ability to tolerate lithium is greater during the acute manic phase and decreases when manic symptoms subside (see DOSAGE AND ADMINISTRATION). The distribution space of lithium approximates that of total body water. Lithium is primarily excreted in urine with insignificant excretion in feces. Renal excretion of lithium is proportional to its plasma concentration. The half-life of elimination of lithium is approximately 24 hours. Lithium decreases sodium reabsorption by the renal tubules which could lead to sodium depletion. Therefore, it is essential for the patient to maintain a normal diet, including salt, and an adequate fluid intake (2500-3000 mL) at least during the initial stabilization period. Decreased tolerance to lithium has been reported to ensue from protracted sweating or diarrhea and, if such occur, supplemental fluid and salt should be administered. In addition to sweating and diarrhea, concomitant infection with elevated temperatures may also necessitate a temporary reduction or cessation of medication. Previously existing underlying thyroid disorders do not necessarily constitute a contraindication to lithium treatment; where hypothyroidism exists, careful monitoring of thyroid function during lithium stabilization and maintenance allows for correction of changing thyroid parameters, if any. Where hypothyroidism occurs during lithium stabilization and maintenance, supplemental thyroid treatment may be used. Outpatients and their families should be warned that the patient must discontinue lithium therapy and contact his physician if such clinical signs of lithium toxicity as diarrhea, vomiting, tremor, mild ataxia, drowsiness, or muscular weakness occur. Lithium may impair mental and/or physical abilities. Caution patients about activities requiring alertness (e.g., operating vehicles or machinery). An encephalopathic syndrome (characterized by weakness, lethargy, fever, tremulousness and confusion, extrapyramidal symptoms, leucocytosis, elevated serum enzymes, BUN and FBS) followed by irreversible brain damage has occurred in a few patients treated with lithium plus haloperidol. A causal relationship between these events and the concomitant administration of lithium and haloperidol has not been established; however, patients receiving such combined therapy should be monitored closely for early evidence of neurological toxicity and treatment discontinued promptly if such signs appear. The possibility of similar adverse interactions with other antipsychotic medication exists. Lithium may prolong the effects of neuromuscular blocking agents. Therefore, neuromuscular blocking agents should be given with caution to patients receiving lithium. Caution should be used when lithium and diuretics or angiotensin converting enzyme (ACE) inhibitors are used concomitantly because sodium loss may reduce the renal clearance of lithium and increase serum lithium levels with risk of lithium toxicity. When such combinations are used, the lithium dosage may need to be decreased, and more frequent monitoring of lithium plasma levels is recommended. Lithium levels should be closely monitored when patients initiate or discontinue NSAID use. In some cases, lithium toxicity has resulted from interactions between an NSAID and lithium. Indomethacin and piroxicam have been reported to increase significantly steady-state plasma lithium concentrations. There is also evidence that other nonsteroidal anti-inflammatory agents, including the selective cyclooxygenase-2 (COX-2) inhibitors, have the same effect. In a study conducted in healthy subjects, mean steady-state lithium plasma levels increased approximately 17% in subjects receiving lithium 450 mg BID with celecoxib 200 mg BID as compared to subjects receiving lithium alone. See WARNINGS section. Lithium is excreted in human milk. Nursing should not be undertaken during lithium therapy except in rare and unusual circumstances where, in the view of the physician, the potential benefits to the mother outweigh possible hazards to the child. Since information regarding the safety and effectiveness of lithium in children under 12 years of age is not available, its use in such patients is not recommended at this time. There has been a report of a transient syndrome of acute dystonia and hyperreflexia occurring in a 15 kg child who ingested 300 mg of lithium carbonate. The likelihood of toxicity increases with increasing serum lithium levels. Serum lithium levels greater than 1.5 mEq/l carry a greater risk than lower levels. However, patients sensitive to lithium may exhibit toxic signs at serum levels below 1.5 mEq/l. Diarrhea, vomiting, drowsiness, muscular weakness and lack of coordination may be early signs of lithium toxicity, and can occur at lithium levels below 2.0 mEq/l. At higher levels, giddiness, ataxia, blurred vision, tinnitus and a large output of dilute urine may be seen. Serum lithium levels above 3.0 mEq/l may produce a complex clinical picture involving multiple organs and organ systems. Serum lithium levels should not be permitted to exceed 2.0 mEq/l during the acute treatment phase. Fine hand tremor, polyuria and mild thirst may occur during initial therapy for the acute manic phase, and may persist throughout treatment. Transient and mild nausea and general discomfort may also appear during the first few days of lithium administration. These side effects are an inconvenience rather than a disabling condition, and usually subside with continued treatment or a temporary reduction or cessation of dosage. If persistent, a cessation of dosage is indicated. The following adverse reactions have been reported and do not appear to be directly related to serum lithium levels. Tremor, muscle hyperirritability (fasciculations, twitching, clonic movements of whole limbs), ataxia, choreo-athetotic movements, hyperactive deep tendon reflexes. Blackout spells, epileptiform seizures, slurred speech, dizziness, vertigo, incontinence of urine or feces, somnolence, psychomotor retardation, restlessness, confusion, stupor, coma, acute dystonia, downbeat nystagmus. Cardiac arrhythmia, hypotension, peripheral circulatory collapse, sinus node dysfunction with severe bradycardia (which may result in syncope). Cases of pseudotumor cerebri (increased intracranial pressure and papilledema) have been reported with lithium use. If undetected, this condition may result in enlargement of the blind spot, constriction of visual fields and eventual blindness due to optic atrophy. Lithium should be discontinued, if clinically possible, if this syndrome occurs. Anorexia, nausea, vomiting, diarrhea. Albuminuria, oliguria, polyuria, glycosuria. Drying and thinning of hair, anesthesia of skin, chronic folliculitis, xerosis cutis, alopecia and exacerbation of psoriasis. Blurred vision, dry mouth. Euthyroid goiter and/or hypothyroidism (including myxedema) accompanied by lower T3 and T4. Iodine 131 uptake may be elevated. (See PRECAUTIONS). Paradoxically, rare cases of hyperthyroidism have been reported. Diffuse slowing, widening of frequency spectrum, potentiation and disorganization of background rhythm. Reversible flattening, isoelectricity or inversion of T-waves. Fatigue, lethargy, transient scotomata, dehydration, weight loss, tendency to sleep. Transient electroencephalographic and electrocardiographic changes, leucocytosis, headache, diffuse non-toxic goiter with or without hypothyroidism, transient hyperglycemia, generalized pruritis with or without rash, cutaneous ulcers, albuminuria, worsening of organic brain syndromes, excessive weight gain, edematous swelling of ankles or wrists, and thirst or polyuria, sometimes resembling diabetes insipidus, and metallic taste. A single report has been received of the development of painful discoloration of fingers and toes and coldness of the extremities within one day of the starting of treatment of lithium. The mechanism through which these symptoms (resembling Raynaud’s Syndrome) developed is not known. Recovery followed discontinuance. The toxic levels for lithium are close to the therapeutic levels. It is therefore important that patients and their families be cautioned to watch for early symptoms and to discontinue the drug and inform the physician should they occur. Toxic symptoms are listed in detail under ADVERSE REACTIONS. No specific antidote for lithium poisoning is known. Early symptoms of lithium toxicity can usually be treated by reduction of cessation of dosage of the drug and resumption of the treatment at a lower dose after 24 to 48 hours. In severe cases of lithium poisoning, the first and foremost goal of treatment consists of elimination of this ion from the patient. Treatment is essentially the same as that used in barbiturate poisoning: 1) gastric lavage, 2) correction of fluid and electrolyte imbalance and 3) regulation of kidney functioning. Urea, mannitol, and aminophylline all produce significant increases in lithium excretion. Hemodialysis is an effective and rapid means of removing the ion from the severely toxic patient. Infection prophylaxis, regular chest X-rays, and preservation of adequate respiration are essential. Optimal patient response to Lithium Carbonate usually can be established and maintained with 600 mg t.i.d. Optimal patient response to Lithium Oral Solution usually can be established and maintained with 10 mL (2 full teaspoons) (16 mEq of lithium) t.i.d. Such doses will normally produce an effective serum lithium level ranging between 1.0 and 1.5 mEq/l. Dosage must be individualized according to serum levels and clinical response. Regular monitoring of the patient’s clinical state and of serum lithium levels is necessary. Serum levels should be determined twice per week during the acute phase, and until the serum level and clinical condition of the patient have been stabilized. The desirable serum lithium levels are 0.6 to 1.2 mEq/l. Dosage will vary from one individual to another, but usually 300 mg of Lithium Carbonate t.i.d. or q.i.d., or 5 mL (1 full teaspoon) (8 mEq of Lithium) of Lithium Oral Solution t.i.d. or q.i.d. will maintain this level. Serum lithium levels in uncomplicated cases receiving maintenance therapy during remission should be monitored at least every two months. Patients abnormally sensitive to lithium may exhibit toxic signs at serum levels of 1.0 to 1.5 mEq/l. Elderly patients often respond to reduced dosage, and may exhibit signs of toxicity at serum levels ordinarily tolerated by other patients. Blood samples for serum lithium determination should be drawn immediately prior to the next dose when lithium concentrations are relatively stable (i.e., 8-12 hours after the previous dose). Total reliance must not be placed on serum levels alone. Accurate patient evaluation requires both clinical and laboratory analysis. NDC 0054-8528-25: Unit dose, 10 tablets per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-4527-25: Bottles of 100 tablets. NDC 0054-4527-31: Bottles of 1000 tablets. (Identified 54 213). NDC 0054-8526-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2526-25: Bottles of 100 capsules. (Identified 54 463). NDC 0054-8527-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2527-25: Bottles of 100 capsules. NDC 0054-2527-31: Bottles of 1000 capsules. (size 0) (Identified 54 702). NDC 0054-8531-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2531-25: Bottles of 100 capsules. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Protect from moisture. Dispense in a tight container as defined in the USP/NF. NDC 0054-8529-04: Unit dose Patient Cup filled to deliver 5 mL, ten 5 mL Patient Cup per shelf pack, ten shelf packs per shipper. (For Institutional Use Only). NDC 0054-3527-63: Bottles of 500 mL. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Dispense in a tight container as defined in the USP/NF. 4055501//05. Rev March 2005. © RLI, 2005.</Description>
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<Description>Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels. Facilities for prompt and accurate serum lithium determinations should be available before initiating therapy (see DOSAGE AND ADMINISTRATION). Each tablet for oral administration contains. Lithium Carbonate . . . . . . . . . . 300 mg. Each capsule for oral administration contains:. Lithium Carbonate . . . . . . . . . . 150 mg, 300 mg or 600 mg. Each 5 mL of solution for oral administration contains. Lithium ion (Li+) . . . . . . . . . . 8 mEq. (equivalent to amount of lithium in 300 mg of lithium carbonate), alcohol 0.3% v/v. The capsules contain talc, gelatin, FD and C Red No. 40, titanium dioxide, and the imprinting ink contains FD and C Blue No. 2, FD and C Yellow No. 6, FD and C Red No. 40, synthetic black iron oxide, and pharmaceutical glaze. The tablets contain calcium stearate, microcrystalline cellulose, povidone, sodium lauryl sulfate, and sodium starch glycolate. The solution contains alcohol, sorbitol, flavoring, water, and other ingredients. Lithium Oral Solution is a palatable oral dosage form of lithium ion. It is prepared in solution from lithium hydroxide and citric acid in a ratio approximately di-lithium citrate. Lithium is an element of the alkali-metal group with atomic number 3, atomic weight 6.94, and an emission line at 671 nm on the flame photometer. The empirical formula for Lithium Citrate is C6H 5Li3O7; molecular weight 209.92. Lithium acts as an antimanic. Lithium Carbonate is a white, light, alkaline powder with molecular formula Li2CO3 and molecular weight 73.89. Preclinical studies have shown that lithium alters sodium transport in nerve and muscle cells and effects a shift toward intraneuronal metabolism of catecholamines, but the specific biochemical mechanism of lithium action in mania is unknown. Lithium is indicated in the treatment of manic episodes of Bipolar Disorder. Bipolar Disorder, Manic (DSM-III) is equivalent to Manic Depressive illness, Manic, in the older DSM-II terminology. Lithium is also indicated as a maintenance treatment for individuals with a diagnosis of Bipolar Disorder. Maintenance therapy reduces the frequency of manic episodes and diminishes the intensity of those episodes which may occur. Typical symptoms of mania include pressure of speech, motor hyperactivity, reduced need for sleep, flight of ideas, grandiosity, elation, poor judgment, aggressiveness, and possibly hostility. When given to a patient experiencing a manic episode, lithium may produce a normalization of symptomatology within 1 to 3 weeks. Lithium should generally not be given to patients with significant renal or cardiovascular disease, severe debilitation or dehydration, or sodium depletion, and to patients receiving diuretics, since the risk of lithium toxicity is very high in such patients. If the psychiatric indication is life-threatening, and if such a patient fails to respond to other measures, lithium treatment may be undertaken with extreme caution, including daily serum lithium determinations and adjustment to the usually low doses ordinarily tolerated by these individuals. In such instances, hospitalization is a necessity. Lithium may cause fetal harm when administered to a pregnant woman. There have been reports of lithium having adverse effects on nidations in rats, embryo viability in mice, and metabolism in-vitro of rat testis and human spermatozoa have been attributed to lithium, as have teratogenicity in submammalian species and cleft palates in mice. Studies in rats, rabbits and monkeys have shown no evidence of lithium-induced teratology. Data from lithium birth registries suggest an increase in cardiac and other anomalies, especially Ebstein’s anomaly. If the patient becomes pregnant while taking lithium, she should be apprised of the potential risk to the fetus. If possible, lithium should be withdrawn for at least the first trimester unless it is determined that this would seriously endanger the mother. Chronic lithium therapy may be associated with diminution of renal concentrating ability, occasionally presenting as nephrogenic diabetes insipidus, with polyuria and polydipsia. Such patients should be carefully managed to avoid dehydration with resulting lithium retention and toxicity. This condition is usually reversible when lithium is discontinued. Morphologic changes with glomerular and interstitial fibrosis and nephron-atrophy have been reported in patients on chronic lithium therapy. Morphologic changes have also been seen in bipolar patients never exposed to lithium. The relationship between renal functional and morphologic changes and their association with lithium therapy has not been established. When kidney function is assessed, for baseline data prior to starting lithium therapy or thereafter, routine urinalysis and other tests may be used to evaluate tubular function (e.g., urine specific gravity or osmolality following a period of water deprivation, or 24-hour urine volume) and glomerular function (e.g., serum creatinine or creatinine clearance). During lithium therapy, progressive or sudden changes in renal function, even within the normal range, indicate the need for reevaluation of treatment. Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels (see DOSAGE AND ADMINISTRATION). The ability to tolerate lithium is greater during the acute manic phase and decreases when manic symptoms subside (see DOSAGE AND ADMINISTRATION). The distribution space of lithium approximates that of total body water. Lithium is primarily excreted in urine with insignificant excretion in feces. Renal excretion of lithium is proportional to its plasma concentration. The half-life of elimination of lithium is approximately 24 hours. Lithium decreases sodium reabsorption by the renal tubules which could lead to sodium depletion. Therefore, it is essential for the patient to maintain a normal diet, including salt, and an adequate fluid intake (2500-3000 mL) at least during the initial stabilization period. Decreased tolerance to lithium has been reported to ensue from protracted sweating or diarrhea and, if such occur, supplemental fluid and salt should be administered. In addition to sweating and diarrhea, concomitant infection with elevated temperatures may also necessitate a temporary reduction or cessation of medication. Previously existing underlying thyroid disorders do not necessarily constitute a contraindication to lithium treatment; where hypothyroidism exists, careful monitoring of thyroid function during lithium stabilization and maintenance allows for correction of changing thyroid parameters, if any. Where hypothyroidism occurs during lithium stabilization and maintenance, supplemental thyroid treatment may be used. Outpatients and their families should be warned that the patient must discontinue lithium therapy and contact his physician if such clinical signs of lithium toxicity as diarrhea, vomiting, tremor, mild ataxia, drowsiness, or muscular weakness occur. Lithium may impair mental and/or physical abilities. Caution patients about activities requiring alertness (e.g., operating vehicles or machinery). An encephalopathic syndrome (characterized by weakness, lethargy, fever, tremulousness and confusion, extrapyramidal symptoms, leucocytosis, elevated serum enzymes, BUN and FBS) followed by irreversible brain damage has occurred in a few patients treated with lithium plus haloperidol. A causal relationship between these events and the concomitant administration of lithium and haloperidol has not been established; however, patients receiving such combined therapy should be monitored closely for early evidence of neurological toxicity and treatment discontinued promptly if such signs appear. The possibility of similar adverse interactions with other antipsychotic medication exists. Lithium may prolong the effects of neuromuscular blocking agents. Therefore, neuromuscular blocking agents should be given with caution to patients receiving lithium. Caution should be used when lithium and diuretics or angiotensin converting enzyme (ACE) inhibitors are used concomitantly because sodium loss may reduce the renal clearance of lithium and increase serum lithium levels with risk of lithium toxicity. When such combinations are used, the lithium dosage may need to be decreased, and more frequent monitoring of lithium plasma levels is recommended. Lithium levels should be closely monitored when patients initiate or discontinue NSAID use. In some cases, lithium toxicity has resulted from interactions between an NSAID and lithium. Indomethacin and piroxicam have been reported to increase significantly steady-state plasma lithium concentrations. There is also evidence that other nonsteroidal anti-inflammatory agents, including the selective cyclooxygenase-2 (COX-2) inhibitors, have the same effect. In a study conducted in healthy subjects, mean steady-state lithium plasma levels increased approximately 17% in subjects receiving lithium 450 mg BID with celecoxib 200 mg BID as compared to subjects receiving lithium alone. See WARNINGS section. Lithium is excreted in human milk. Nursing should not be undertaken during lithium therapy except in rare and unusual circumstances where, in the view of the physician, the potential benefits to the mother outweigh possible hazards to the child. Since information regarding the safety and effectiveness of lithium in children under 12 years of age is not available, its use in such patients is not recommended at this time. There has been a report of a transient syndrome of acute dystonia and hyperreflexia occurring in a 15 kg child who ingested 300 mg of lithium carbonate. The likelihood of toxicity increases with increasing serum lithium levels. Serum lithium levels greater than 1.5 mEq/l carry a greater risk than lower levels. However, patients sensitive to lithium may exhibit toxic signs at serum levels below 1.5 mEq/l. Diarrhea, vomiting, drowsiness, muscular weakness and lack of coordination may be early signs of lithium toxicity, and can occur at lithium levels below 2.0 mEq/l. At higher levels, giddiness, ataxia, blurred vision, tinnitus and a large output of dilute urine may be seen. Serum lithium levels above 3.0 mEq/l may produce a complex clinical picture involving multiple organs and organ systems. Serum lithium levels should not be permitted to exceed 2.0 mEq/l during the acute treatment phase. Fine hand tremor, polyuria and mild thirst may occur during initial therapy for the acute manic phase, and may persist throughout treatment. Transient and mild nausea and general discomfort may also appear during the first few days of lithium administration. These side effects are an inconvenience rather than a disabling condition, and usually subside with continued treatment or a temporary reduction or cessation of dosage. If persistent, a cessation of dosage is indicated. The following adverse reactions have been reported and do not appear to be directly related to serum lithium levels. Tremor, muscle hyperirritability (fasciculations, twitching, clonic movements of whole limbs), ataxia, choreo-athetotic movements, hyperactive deep tendon reflexes. Blackout spells, epileptiform seizures, slurred speech, dizziness, vertigo, incontinence of urine or feces, somnolence, psychomotor retardation, restlessness, confusion, stupor, coma, acute dystonia, downbeat nystagmus. Cardiac arrhythmia, hypotension, peripheral circulatory collapse, sinus node dysfunction with severe bradycardia (which may result in syncope). Cases of pseudotumor cerebri (increased intracranial pressure and papilledema) have been reported with lithium use. If undetected, this condition may result in enlargement of the blind spot, constriction of visual fields and eventual blindness due to optic atrophy. Lithium should be discontinued, if clinically possible, if this syndrome occurs. Anorexia, nausea, vomiting, diarrhea. Albuminuria, oliguria, polyuria, glycosuria. Drying and thinning of hair, anesthesia of skin, chronic folliculitis, xerosis cutis, alopecia and exacerbation of psoriasis. Blurred vision, dry mouth. Euthyroid goiter and/or hypothyroidism (including myxedema) accompanied by lower T3 and T4. Iodine 131 uptake may be elevated. (See PRECAUTIONS). Paradoxically, rare cases of hyperthyroidism have been reported. Diffuse slowing, widening of frequency spectrum, potentiation and disorganization of background rhythm. Reversible flattening, isoelectricity or inversion of T-waves. Fatigue, lethargy, transient scotomata, dehydration, weight loss, tendency to sleep. Transient electroencephalographic and electrocardiographic changes, leucocytosis, headache, diffuse non-toxic goiter with or without hypothyroidism, transient hyperglycemia, generalized pruritis with or without rash, cutaneous ulcers, albuminuria, worsening of organic brain syndromes, excessive weight gain, edematous swelling of ankles or wrists, and thirst or polyuria, sometimes resembling diabetes insipidus, and metallic taste. A single report has been received of the development of painful discoloration of fingers and toes and coldness of the extremities within one day of the starting of treatment of lithium. The mechanism through which these symptoms (resembling Raynaud’s Syndrome) developed is not known. Recovery followed discontinuance. The toxic levels for lithium are close to the therapeutic levels. It is therefore important that patients and their families be cautioned to watch for early symptoms and to discontinue the drug and inform the physician should they occur. Toxic symptoms are listed in detail under ADVERSE REACTIONS. No specific antidote for lithium poisoning is known. Early symptoms of lithium toxicity can usually be treated by reduction of cessation of dosage of the drug and resumption of the treatment at a lower dose after 24 to 48 hours. In severe cases of lithium poisoning, the first and foremost goal of treatment consists of elimination of this ion from the patient. Treatment is essentially the same as that used in barbiturate poisoning: 1) gastric lavage, 2) correction of fluid and electrolyte imbalance and 3) regulation of kidney functioning. Urea, mannitol, and aminophylline all produce significant increases in lithium excretion. Hemodialysis is an effective and rapid means of removing the ion from the severely toxic patient. Infection prophylaxis, regular chest X-rays, and preservation of adequate respiration are essential. Optimal patient response to Lithium Carbonate usually can be established and maintained with 600 mg t.i.d. Optimal patient response to Lithium Oral Solution usually can be established and maintained with 10 mL (2 full teaspoons) (16 mEq of lithium) t.i.d. Such doses will normally produce an effective serum lithium level ranging between 1.0 and 1.5 mEq/l. Dosage must be individualized according to serum levels and clinical response. Regular monitoring of the patient’s clinical state and of serum lithium levels is necessary. Serum levels should be determined twice per week during the acute phase, and until the serum level and clinical condition of the patient have been stabilized. The desirable serum lithium levels are 0.6 to 1.2 mEq/l. Dosage will vary from one individual to another, but usually 300 mg of Lithium Carbonate t.i.d. or q.i.d., or 5 mL (1 full teaspoon) (8 mEq of Lithium) of Lithium Oral Solution t.i.d. or q.i.d. will maintain this level. Serum lithium levels in uncomplicated cases receiving maintenance therapy during remission should be monitored at least every two months. Patients abnormally sensitive to lithium may exhibit toxic signs at serum levels of 1.0 to 1.5 mEq/l. Elderly patients often respond to reduced dosage, and may exhibit signs of toxicity at serum levels ordinarily tolerated by other patients. Blood samples for serum lithium determination should be drawn immediately prior to the next dose when lithium concentrations are relatively stable (i.e., 8-12 hours after the previous dose). Total reliance must not be placed on serum levels alone. Accurate patient evaluation requires both clinical and laboratory analysis. NDC 0054-8528-25: Unit dose, 10 tablets per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-4527-25: Bottles of 100 tablets. NDC 0054-4527-31: Bottles of 1000 tablets. (Identified 54 213). NDC 0054-8526-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2526-25: Bottles of 100 capsules. (Identified 54 463). NDC 0054-8527-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2527-25: Bottles of 100 capsules. NDC 0054-2527-31: Bottles of 1000 capsules. (size 0) (Identified 54 702). NDC 0054-8531-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2531-25: Bottles of 100 capsules. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Protect from moisture. Dispense in a tight container as defined in the USP/NF. NDC 0054-8529-04: Unit dose Patient Cup filled to deliver 5 mL, ten 5 mL Patient Cup per shelf pack, ten shelf packs per shipper. (For Institutional Use Only). NDC 0054-3527-63: Bottles of 500 mL. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Dispense in a tight container as defined in the USP/NF. 4055501//05. Rev March 2005. © RLI, 2005.</Description>
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<Description>Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels. Facilities for prompt and accurate serum lithium determinations should be available before initiating therapy (see DOSAGE AND ADMINISTRATION). Each tablet for oral administration contains. Lithium Carbonate . . . . . . . . . . 300 mg. Each capsule for oral administration contains:. Lithium Carbonate . . . . . . . . . . 150 mg, 300 mg or 600 mg. Each 5 mL of solution for oral administration contains. Lithium ion (Li+) . . . . . . . . . . 8 mEq. (equivalent to amount of lithium in 300 mg of lithium carbonate), alcohol 0.3% v/v. The capsules contain talc, gelatin, FD and C Red No. 40, titanium dioxide, and the imprinting ink contains FD and C Blue No. 2, FD and C Yellow No. 6, FD and C Red No. 40, synthetic black iron oxide, and pharmaceutical glaze. The tablets contain calcium stearate, microcrystalline cellulose, povidone, sodium lauryl sulfate, and sodium starch glycolate. The solution contains alcohol, sorbitol, flavoring, water, and other ingredients. Lithium Oral Solution is a palatable oral dosage form of lithium ion. It is prepared in solution from lithium hydroxide and citric acid in a ratio approximately di-lithium citrate. Lithium is an element of the alkali-metal group with atomic number 3, atomic weight 6.94, and an emission line at 671 nm on the flame photometer. The empirical formula for Lithium Citrate is C6H 5Li3O7; molecular weight 209.92. Lithium acts as an antimanic. Lithium Carbonate is a white, light, alkaline powder with molecular formula Li2CO3 and molecular weight 73.89. Preclinical studies have shown that lithium alters sodium transport in nerve and muscle cells and effects a shift toward intraneuronal metabolism of catecholamines, but the specific biochemical mechanism of lithium action in mania is unknown. Lithium is indicated in the treatment of manic episodes of Bipolar Disorder. Bipolar Disorder, Manic (DSM-III) is equivalent to Manic Depressive illness, Manic, in the older DSM-II terminology. Lithium is also indicated as a maintenance treatment for individuals with a diagnosis of Bipolar Disorder. Maintenance therapy reduces the frequency of manic episodes and diminishes the intensity of those episodes which may occur. Typical symptoms of mania include pressure of speech, motor hyperactivity, reduced need for sleep, flight of ideas, grandiosity, elation, poor judgment, aggressiveness, and possibly hostility. When given to a patient experiencing a manic episode, lithium may produce a normalization of symptomatology within 1 to 3 weeks. Lithium should generally not be given to patients with significant renal or cardiovascular disease, severe debilitation or dehydration, or sodium depletion, and to patients receiving diuretics, since the risk of lithium toxicity is very high in such patients. If the psychiatric indication is life-threatening, and if such a patient fails to respond to other measures, lithium treatment may be undertaken with extreme caution, including daily serum lithium determinations and adjustment to the usually low doses ordinarily tolerated by these individuals. In such instances, hospitalization is a necessity. Lithium may cause fetal harm when administered to a pregnant woman. There have been reports of lithium having adverse effects on nidations in rats, embryo viability in mice, and metabolism in-vitro of rat testis and human spermatozoa have been attributed to lithium, as have teratogenicity in submammalian species and cleft palates in mice. Studies in rats, rabbits and monkeys have shown no evidence of lithium-induced teratology. Data from lithium birth registries suggest an increase in cardiac and other anomalies, especially Ebstein’s anomaly. If the patient becomes pregnant while taking lithium, she should be apprised of the potential risk to the fetus. If possible, lithium should be withdrawn for at least the first trimester unless it is determined that this would seriously endanger the mother. Chronic lithium therapy may be associated with diminution of renal concentrating ability, occasionally presenting as nephrogenic diabetes insipidus, with polyuria and polydipsia. Such patients should be carefully managed to avoid dehydration with resulting lithium retention and toxicity. This condition is usually reversible when lithium is discontinued. Morphologic changes with glomerular and interstitial fibrosis and nephron-atrophy have been reported in patients on chronic lithium therapy. Morphologic changes have also been seen in bipolar patients never exposed to lithium. The relationship between renal functional and morphologic changes and their association with lithium therapy has not been established. When kidney function is assessed, for baseline data prior to starting lithium therapy or thereafter, routine urinalysis and other tests may be used to evaluate tubular function (e.g., urine specific gravity or osmolality following a period of water deprivation, or 24-hour urine volume) and glomerular function (e.g., serum creatinine or creatinine clearance). During lithium therapy, progressive or sudden changes in renal function, even within the normal range, indicate the need for reevaluation of treatment. Lithium toxicity is closely related to serum lithium levels, and can occur at doses close to therapeutic levels (see DOSAGE AND ADMINISTRATION). The ability to tolerate lithium is greater during the acute manic phase and decreases when manic symptoms subside (see DOSAGE AND ADMINISTRATION). The distribution space of lithium approximates that of total body water. Lithium is primarily excreted in urine with insignificant excretion in feces. Renal excretion of lithium is proportional to its plasma concentration. The half-life of elimination of lithium is approximately 24 hours. Lithium decreases sodium reabsorption by the renal tubules which could lead to sodium depletion. Therefore, it is essential for the patient to maintain a normal diet, including salt, and an adequate fluid intake (2500-3000 mL) at least during the initial stabilization period. Decreased tolerance to lithium has been reported to ensue from protracted sweating or diarrhea and, if such occur, supplemental fluid and salt should be administered. In addition to sweating and diarrhea, concomitant infection with elevated temperatures may also necessitate a temporary reduction or cessation of medication. Previously existing underlying thyroid disorders do not necessarily constitute a contraindication to lithium treatment; where hypothyroidism exists, careful monitoring of thyroid function during lithium stabilization and maintenance allows for correction of changing thyroid parameters, if any. Where hypothyroidism occurs during lithium stabilization and maintenance, supplemental thyroid treatment may be used. Outpatients and their families should be warned that the patient must discontinue lithium therapy and contact his physician if such clinical signs of lithium toxicity as diarrhea, vomiting, tremor, mild ataxia, drowsiness, or muscular weakness occur. Lithium may impair mental and/or physical abilities. Caution patients about activities requiring alertness (e.g., operating vehicles or machinery). An encephalopathic syndrome (characterized by weakness, lethargy, fever, tremulousness and confusion, extrapyramidal symptoms, leucocytosis, elevated serum enzymes, BUN and FBS) followed by irreversible brain damage has occurred in a few patients treated with lithium plus haloperidol. A causal relationship between these events and the concomitant administration of lithium and haloperidol has not been established; however, patients receiving such combined therapy should be monitored closely for early evidence of neurological toxicity and treatment discontinued promptly if such signs appear. The possibility of similar adverse interactions with other antipsychotic medication exists. Lithium may prolong the effects of neuromuscular blocking agents. Therefore, neuromuscular blocking agents should be given with caution to patients receiving lithium. Caution should be used when lithium and diuretics or angiotensin converting enzyme (ACE) inhibitors are used concomitantly because sodium loss may reduce the renal clearance of lithium and increase serum lithium levels with risk of lithium toxicity. When such combinations are used, the lithium dosage may need to be decreased, and more frequent monitoring of lithium plasma levels is recommended. Lithium levels should be closely monitored when patients initiate or discontinue NSAID use. In some cases, lithium toxicity has resulted from interactions between an NSAID and lithium. Indomethacin and piroxicam have been reported to increase significantly steady-state plasma lithium concentrations. There is also evidence that other nonsteroidal anti-inflammatory agents, including the selective cyclooxygenase-2 (COX-2) inhibitors, have the same effect. In a study conducted in healthy subjects, mean steady-state lithium plasma levels increased approximately 17% in subjects receiving lithium 450 mg BID with celecoxib 200 mg BID as compared to subjects receiving lithium alone. See WARNINGS section. Lithium is excreted in human milk. Nursing should not be undertaken during lithium therapy except in rare and unusual circumstances where, in the view of the physician, the potential benefits to the mother outweigh possible hazards to the child. Since information regarding the safety and effectiveness of lithium in children under 12 years of age is not available, its use in such patients is not recommended at this time. There has been a report of a transient syndrome of acute dystonia and hyperreflexia occurring in a 15 kg child who ingested 300 mg of lithium carbonate. The likelihood of toxicity increases with increasing serum lithium levels. Serum lithium levels greater than 1.5 mEq/l carry a greater risk than lower levels. However, patients sensitive to lithium may exhibit toxic signs at serum levels below 1.5 mEq/l. Diarrhea, vomiting, drowsiness, muscular weakness and lack of coordination may be early signs of lithium toxicity, and can occur at lithium levels below 2.0 mEq/l. At higher levels, giddiness, ataxia, blurred vision, tinnitus and a large output of dilute urine may be seen. Serum lithium levels above 3.0 mEq/l may produce a complex clinical picture involving multiple organs and organ systems. Serum lithium levels should not be permitted to exceed 2.0 mEq/l during the acute treatment phase. Fine hand tremor, polyuria and mild thirst may occur during initial therapy for the acute manic phase, and may persist throughout treatment. Transient and mild nausea and general discomfort may also appear during the first few days of lithium administration. These side effects are an inconvenience rather than a disabling condition, and usually subside with continued treatment or a temporary reduction or cessation of dosage. If persistent, a cessation of dosage is indicated. The following adverse reactions have been reported and do not appear to be directly related to serum lithium levels. Tremor, muscle hyperirritability (fasciculations, twitching, clonic movements of whole limbs), ataxia, choreo-athetotic movements, hyperactive deep tendon reflexes. Blackout spells, epileptiform seizures, slurred speech, dizziness, vertigo, incontinence of urine or feces, somnolence, psychomotor retardation, restlessness, confusion, stupor, coma, acute dystonia, downbeat nystagmus. Cardiac arrhythmia, hypotension, peripheral circulatory collapse, sinus node dysfunction with severe bradycardia (which may result in syncope). Cases of pseudotumor cerebri (increased intracranial pressure and papilledema) have been reported with lithium use. If undetected, this condition may result in enlargement of the blind spot, constriction of visual fields and eventual blindness due to optic atrophy. Lithium should be discontinued, if clinically possible, if this syndrome occurs. Anorexia, nausea, vomiting, diarrhea. Albuminuria, oliguria, polyuria, glycosuria. Drying and thinning of hair, anesthesia of skin, chronic folliculitis, xerosis cutis, alopecia and exacerbation of psoriasis. Blurred vision, dry mouth. Euthyroid goiter and/or hypothyroidism (including myxedema) accompanied by lower T3 and T4. Iodine 131 uptake may be elevated. (See PRECAUTIONS). Paradoxically, rare cases of hyperthyroidism have been reported. Diffuse slowing, widening of frequency spectrum, potentiation and disorganization of background rhythm. Reversible flattening, isoelectricity or inversion of T-waves. Fatigue, lethargy, transient scotomata, dehydration, weight loss, tendency to sleep. Transient electroencephalographic and electrocardiographic changes, leucocytosis, headache, diffuse non-toxic goiter with or without hypothyroidism, transient hyperglycemia, generalized pruritis with or without rash, cutaneous ulcers, albuminuria, worsening of organic brain syndromes, excessive weight gain, edematous swelling of ankles or wrists, and thirst or polyuria, sometimes resembling diabetes insipidus, and metallic taste. A single report has been received of the development of painful discoloration of fingers and toes and coldness of the extremities within one day of the starting of treatment of lithium. The mechanism through which these symptoms (resembling Raynaud’s Syndrome) developed is not known. Recovery followed discontinuance. The toxic levels for lithium are close to the therapeutic levels. It is therefore important that patients and their families be cautioned to watch for early symptoms and to discontinue the drug and inform the physician should they occur. Toxic symptoms are listed in detail under ADVERSE REACTIONS. No specific antidote for lithium poisoning is known. Early symptoms of lithium toxicity can usually be treated by reduction of cessation of dosage of the drug and resumption of the treatment at a lower dose after 24 to 48 hours. In severe cases of lithium poisoning, the first and foremost goal of treatment consists of elimination of this ion from the patient. Treatment is essentially the same as that used in barbiturate poisoning: 1) gastric lavage, 2) correction of fluid and electrolyte imbalance and 3) regulation of kidney functioning. Urea, mannitol, and aminophylline all produce significant increases in lithium excretion. Hemodialysis is an effective and rapid means of removing the ion from the severely toxic patient. Infection prophylaxis, regular chest X-rays, and preservation of adequate respiration are essential. Optimal patient response to Lithium Carbonate usually can be established and maintained with 600 mg t.i.d. Optimal patient response to Lithium Oral Solution usually can be established and maintained with 10 mL (2 full teaspoons) (16 mEq of lithium) t.i.d. Such doses will normally produce an effective serum lithium level ranging between 1.0 and 1.5 mEq/l. Dosage must be individualized according to serum levels and clinical response. Regular monitoring of the patient’s clinical state and of serum lithium levels is necessary. Serum levels should be determined twice per week during the acute phase, and until the serum level and clinical condition of the patient have been stabilized. The desirable serum lithium levels are 0.6 to 1.2 mEq/l. Dosage will vary from one individual to another, but usually 300 mg of Lithium Carbonate t.i.d. or q.i.d., or 5 mL (1 full teaspoon) (8 mEq of Lithium) of Lithium Oral Solution t.i.d. or q.i.d. will maintain this level. Serum lithium levels in uncomplicated cases receiving maintenance therapy during remission should be monitored at least every two months. Patients abnormally sensitive to lithium may exhibit toxic signs at serum levels of 1.0 to 1.5 mEq/l. Elderly patients often respond to reduced dosage, and may exhibit signs of toxicity at serum levels ordinarily tolerated by other patients. Blood samples for serum lithium determination should be drawn immediately prior to the next dose when lithium concentrations are relatively stable (i.e., 8-12 hours after the previous dose). Total reliance must not be placed on serum levels alone. Accurate patient evaluation requires both clinical and laboratory analysis. NDC 0054-8528-25: Unit dose, 10 tablets per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-4527-25: Bottles of 100 tablets. NDC 0054-4527-31: Bottles of 1000 tablets. (Identified 54 213). NDC 0054-8526-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2526-25: Bottles of 100 capsules. (Identified 54 463). NDC 0054-8527-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2527-25: Bottles of 100 capsules. NDC 0054-2527-31: Bottles of 1000 capsules. (size 0) (Identified 54 702). NDC 0054-8531-25: Unit dose, 10 capsules per strip, 10 strips per shelf pack, 10 shelf packs per shipper. (For Institutional Use Only). NDC 0054-2531-25: Bottles of 100 capsules. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Protect from moisture. Dispense in a tight container as defined in the USP/NF. NDC 0054-8529-04: Unit dose Patient Cup filled to deliver 5 mL, ten 5 mL Patient Cup per shelf pack, ten shelf packs per shipper. (For Institutional Use Only). NDC 0054-3527-63: Bottles of 500 mL. Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [see USP Controlled Room Temperature]. Dispense in a tight container as defined in the USP/NF. 4055501//05. Rev March 2005. © RLI, 2005.</Description>
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<Status>Active</Status>
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<IndicationAndUsage>Lidocaine hydrochloride is indicated for the production of topical anesthesia of accessible mucous membranes of the oral and nasal cavities and proximal portions of the digestive tract.</IndicationAndUsage>
<Description>Lidocaine Hydrochloride Topical Solution, USP contains a local anesthetic agent and is administered topically. See INDICATIONS for specific uses. Each mL contains. lidocaine hydrochloride, USP .................................................................................................... 40 mg. Methylparaben, Sodium Hydroxide (to adjust pH) in an aqueous solution. NOT FOR INJECTION. Lidocaine is a local anesthetic chemically designated as acetamide, 2-(diethylamino)-N-(2,6-dimethylphenyl)-, monohydrochloride, monohydrate. It has the following structural formula.</Description>
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<ProprietaryName>Morphine Sulfate</ProprietaryName>
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<EndMarketingDate>20230228</EndMarketingDate>
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<LabelerName>Actavis Pharma, Inc.</LabelerName>
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<LastUpdate>2023-03-01</LastUpdate>
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<SamplePackage>N</SamplePackage>
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<LabelerName>Actavis Pharma, Inc.</LabelerName>
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<Status>Deprecated</Status>
<LastUpdate>2022-04-19</LastUpdate>
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<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20221231</ListingRecordCertifiedThrough>
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<SamplePackage>N</SamplePackage>
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<NDCCode>0378-3505-01</NDCCode>
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<ProductTypeName>HUMAN PRESCRIPTION DRUG</ProductTypeName>
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<RouteName>ORAL</RouteName>
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<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA076288</ApplicationNumber>
<LabelerName>Mylan Pharmaceuticals Inc.</LabelerName>
<SubstanceName>RISPERIDONE</SubstanceName>
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<StrengthUnit>mg/1</StrengthUnit>
<Pharm_Classes>Atypical Antipsychotic [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2014-09-26</LastUpdate>
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<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA076288</ApplicationNumber>
<LabelerName>Mylan Pharmaceuticals Inc.</LabelerName>
<SubstanceName>RISPERIDONE</SubstanceName>
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<StrengthUnit>mg/1</StrengthUnit>
<Pharm_Classes>Atypical Antipsychotic [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2020-06-02</LastUpdate>
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<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
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<SamplePackage>N</SamplePackage>
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<RouteName>ORAL</RouteName>
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<EndMarketingDate>20200930</EndMarketingDate>
<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA076288</ApplicationNumber>
<LabelerName>Mylan Pharmaceuticals Inc.</LabelerName>
<SubstanceName>RISPERIDONE</SubstanceName>
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<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
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<SamplePackage>N</SamplePackage>
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<NDC>
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<PackageDescription>25 VIAL in 1 CARTON (0409-3505-01) > 10 mL in 1 VIAL (0409-3505-11) </PackageDescription>
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<RouteName>INTRAVENOUS</RouteName>
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<MarketingCategoryName>ANDA</MarketingCategoryName>
<ApplicationNumber>ANDA090940</ApplicationNumber>
<LabelerName>Hospira, Inc.</LabelerName>
<SubstanceName>MEROPENEM</SubstanceName>
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<StrengthUnit>mg/10mL</StrengthUnit>
<Pharm_Classes>Carbapenems [CS],Penem Antibacterial [EPC]</Pharm_Classes>
<Status>Deprecated</Status>
<LastUpdate>2019-09-07</LastUpdate>
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<ProductNdcExcludeFlag>N</ProductNdcExcludeFlag>
<ListingRecordCertifiedThrough>20201231</ListingRecordCertifiedThrough>
<StartMarketingDatePackage>20100624</StartMarketingDatePackage>
<SamplePackage>N</SamplePackage>
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