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Fluconazole
Overview
Active ingredients
Source: NDC DirectoryForms, strengths and routes
Source: NDC DirectoryPharmacologic classes are listed in the class section below.
Pharmacologic class
Source: NDC Directory| Class | Type | Browse |
|---|---|---|
| Azole Antifungal [EPC] | EPC | All 44 members |
| Azoles [CS] | CS | All 44 members |
| Cytochrome P450 2C19 Inhibitors [MoA] | MoA | All 93 members |
| Cytochrome P450 2C9 Inhibitors [MoA] | MoA | All 34 members |
| Cytochrome P450 3A4 Inhibitors [MoA] | MoA | All 118 members |
Regulatory status
Source: Drugs@FDANDC Directory| Product | Trade name | Form | Strength | Ingredient | Status | TE | Flags |
|---|---|---|---|---|---|---|---|
| 079150-001 | FLUCONAZOLE | FOR SUSPENSION | FLUCONAZOLE | Prescription | AB | ||
| 079150-002 | FLUCONAZOLE | FOR SUSPENSION | FLUCONAZOLE | Prescription | AB |
Therapeutic equivalence
Source: Orange BookWhat this rating means: Therapeutically equivalent — bioequivalence demonstrated by in vivo or in vitro testing
Codes beginning with “A” indicate products the FDA considers therapeutically equivalent. Codes beginning with “B” indicate bioequivalence has not been established. See methodology.
Approval history
Source: Drugs@FDA| Type | No. | Action | Status | Date | Review |
|---|---|---|---|---|---|
| Supplement | 26 | Labeling | Approved | July 16, 2024 | Standard |
| Supplement | 23 | Labeling | Approved | December 27, 2023 | Standard |
| Supplement | 21 | Labeling | Approved | March 17, 2023 | Standard |
| Supplement | 19 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 18 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 16 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 13 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 12 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 11 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 10 | Labeling | Approved | January 19, 2023 | Standard |
| Supplement | 8 | Labeling | Approved | February 27, 2015 | Standard |
| Supplement | 7 | Labeling | Approved | February 27, 2015 | Standard |
| Supplement | 6 | Labeling | Approved | February 27, 2015 | Standard |
| Supplement | 4 | Labeling | Approved | January 23, 2012 | — |
| Supplement | 3 | Labeling | Approved | January 23, 2012 | — |
| Supplement | 2 | Labeling | Approved | December 27, 2010 | — |
| Original application | 1 | Approved | September 18, 2009 | — |
Prescribing information
Source: openFDA Drug LabelingReproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20260402). This is the manufacturer's labelling text, not a summary and not advice.
Indications and Usage
openFDA Drug LabelingINDICATIONS AND USAGE Fluconazole for oral suspension is indicated for the treatment of: 1. Oropharyngeal and esophageal candidiasis. In open noncomparative studies of relatively small numbers of patients, fluconazole for oral suspension was also effective for the treatment of Candida urinary tract infections, peritonitis, and systemic Candida infections including candidemia, disseminated candidiasis, and pneumonia. 2. Cryptococcal meningitis . Before prescribing fluconazole for oral suspension for AIDS patients with cryptococcal meningitis , please see CLINICAL STUDIES section. Studies comparing fluconazole for oral suspension to amphotericin B in non-HIV infected patients have not been conducted. Prophylaxis: Fluconazole for oral suspension is also indicated to decrease the incidence of candidiasis in patients undergoing bone marrow transplantation who receive cytotoxic chemotherapy and/or radiation therapy. Specimens for fungal culture and other relevant laboratory studies (serology, histopathology) should be obtained prior to therapy to isolate and identify causative organisms. Therapy may be instituted before the results of the cultures and other laboratory studies are known; however, once these results become available, anti-infective therapy should be adjusted accordingly.
Dosage and Administration
openFDA Drug LabelingDOSAGE AND ADMINISTRATION Dosage and Administration in Adults Single Dose Vaginal candidiasis The recommended dosage of fluconazole for vaginal candidiasis is 150 mg as a single oral dose. Multiple Dose SINCE ORAL ABSORPTION IS RAPID AND ALMOST COMPLETE, THE DAILY DOSE OF FLUCONAZOLE IS THE SAME FOR ORAL (TABLETS AND SUSPENSION) AND INTRAVENOUS ADMINISTRATION. In general, a loading dose of twice the daily dose is recommended on the first day of therapy to result in plasma concentrations close to steady-state by the second day of therapy. The daily dose of fluconazole for the treatment of infections other than vaginal candidiasis should be based on the infecting organism and the patient's response to therapy. Treatment should be continued until clinical parameters or laboratory tests indicate that active fungal infection has subsided. An inadequate period of treatment may lead to recurrence of active infection. Patients with AIDS and cryptococcal meningitis or recurrent oropharyngeal candidiasis usually require maintenance therapy to prevent relapse. Oropharyngeal candidiasis The recommended dosage of fluconazole for oropharyngeal candidiasis is 200 mg on the first day, followed by 100 mg once daily. Clinical evidence of oropharyngeal candidiasis generally resolves within several days, but treatment should be continued for at least 2 weeks to decrease the likelihood of relapse. Esophageal candidiasis The recommended dosage of fluconazole for esophageal candidiasis is 200 mg on the first day, followed by 100 mg once daily. Doses up to 400 mg/day may be used, based on medical judgment of the patient's response to therapy. Patients with esophageal candidiasis should be treated for a minimum of three weeks and for at least two weeks following resolution of symptoms. Systemic Candida infections For systemic Candida infections including candidemia, disseminated candidiasis, and pneumonia, optimal therapeutic dosage and duration of therapy have not been established. In open, noncomparative studies of small numbers of patients, doses of up to 400 mg daily have been used. Urinary tract infections and peritonitis For the treatment of Candida urinary tract infections and peritonitis, daily doses of 50 to 200 mg have been used in open, noncomparative studies of small numbers of patients. Cryptococcal meningitis The recommended dosage for treatment of acute cryptococcal meningitis is 400 mg on the first day, followed by 200 mg once daily. A dosage of 400 mg once daily may be used, based on medical judgment of the patient's response to therapy. The recommended duration of treatment for initial therapy of cryptococcal meningitis is 10 to 12 weeks after the cerebrospinal fluid becomes culture negative. The recommended dosage of fluconazole for suppression of relapse of cryptococcal meningitis in patients with AIDS is 200 mg once daily. Prophylaxis in patients undergoing bone marrow transplantation The recommended fluconazole daily dosage for the prevention of candidiasis in patients undergoing bone marrow transplantation is 400 mg, once daily. Patients who are anticipated to have severe granulocytopenia (less than 500 neutrophils cells/mm 3 ) should start fluconazole prophylaxis several days before the anticipated onset of neutropenia, and continue for 7 days after the neutrophil count rises above 1000 cells/mm 3 . Dosage and Administration in Pediatric Patients Oropharyngeal candidiasis The recommended dosage of fluconazole for oropharyngeal candidiasis in pediatric patients 6 months and older is 6 mg/kg on the first day, followed by 3 mg/kg once daily. Treatment should be administered for at least 2 weeks to decrease the likelihood of relapse. Esophageal candidiasis For the treatment of esophageal candidiasis, the recommended dosage of fluconazole in pediatric patients 6 months and older is 6 mg/kg on the first day, followed by 3 mg/kg once daily. Doses up to 12 mg/kg/day may be used, based on medical judgment of the patient's response to th …
Contraindications
openFDA Drug LabelingCONTRAINDICATIONS Fluconazole for oral suspension is contraindicated in patients who have shown hypersensitivity to fluconazole or to any of its excipients. There is no information regarding cross-hypersensitivity between fluconazole and other azole antifungal agents. Caution should be used in prescribing fluconazole for oral suspension to patients with hypersensitivity to other azoles. Coadministration of other drugs known to prolong the QT interval and which are metabolized via the enzyme CYP3A4 such as erythromycin, pimozide, and quinidine are contraindicated in patients receiving fluconazole for oral suspension. (See CLINICAL PHARMACOLOGY: Drug Interaction Studies and PRECAUTIONS .)
Warnings
openFDA Drug LabelingWARNINGS (1) Hepatic injury: Fluconazole should be administered with caution to patients with liver dysfunction. Fluconazole has been associated with rare cases of serious hepatic toxicity, including fatalities primarily in patients with serious underlying medical conditions. In cases of fluconazole-associated hepatotoxicity, no obvious relationship to total daily dose, duration of therapy, sex, or age of the patient has been observed. Fluconazole hepatotoxicity has usually, but not always, been reversible on discontinuation of therapy. Patients who develop abnormal liver function tests during fluconazole therapy should be monitored for the development of more severe hepatic injury. Fluconazole should be discontinued if clinical signs and symptoms consistent with liver disease develop that may be attributable to fluconazole. (2) Anaphylaxis: In rare cases, anaphylaxis has been reported. (3) Dermatologic: Exfoliative skin disorders during treatment with fluconazole have been reported. Fatal outcomes have been reported in patients with serious underlying diseases. Patients with deep seated fungal infections who develop rashes during treatment with fluconazole should be monitored closely and the drug discontinued if lesions progress. Fluconazole should be discontinued in patients treated for superficial fungal infection who develop a rash that may be attributed to fluconazole. (4) Potential for fetal harm: There are no adequate and well-controlled clinical trials of fluconazole in pregnant women. Case reports describe a pattern of distinct congenital anomalies in infants exposed in utero to high dose maternal fluconazole (400 to 800 mg/day) during most or all of the first trimester. These reported anomalies are similar to those seen in animal studies. If fluconazole is used during pregnancy or if the patient becomes pregnant while taking the drug, the patient should be informed of the potential hazard to the fetus. Effective contraceptive measures should be considered in women of child-bearing potential who are being treated with fluconazole 400 to 800 mg/day and should continue throughout the treatment period and for approximately 1 week (5 to 6 half-lives) after the final dose. Epidemiological studies suggest a potential risk of spontaneous abortion and congenital abnormalities in infants whose mothers were treated with 150 mg of fluconazole as a single or repeated dose in the first trimester, but these epidemiological studies have limitations and these findings have not been confirmed in controlled clinical trials. (See PRECAUTIONS: Pregnancy . )
Adverse Reactions
openFDA Drug LabelingADVERSE REACTIONS Fluconazole is generally well tolerated. In some patients, particularly those with serious underlying diseases such as AIDS and cancer, changes in renal and hematological function test results and hepatic abnormalities have been observed during treatment with fluconazole and comparative agents, but the clinical significance and relationship to treatment is uncertain. In Patients Receiving a Single Dose for Vaginal Candidiasis During comparative clinical studies conducted in the United States, 448 patients with vaginal candidiasis were treated with fluconazole, 150 mg single dose. The overall incidence of side effects possibly related to fluconazole was 26%. In 422 patients receiving active comparative agents, the incidence was 16%. The most common treatment-related adverse events reported in the patients who received 150 mg single dose fluconazole for vaginitis were headache (13%), nausea (7%), and abdominal pain (6%). Other side effects reported with an incidence equal to or greater than 1% included diarrhea (3%), dyspepsia (1%), dizziness (1%), and taste perversion (1%). Most of the reported side effects were mild to moderate in severity. Rarely, angioedema and anaphylactic reaction have been reported in marketing experience. In Patients Receiving Multiple Doses for Other Infections Sixteen percent of over 4000 patients treated with fluconazole in clinical trials of 7 days or more experienced adverse events. Treatment was discontinued in 1.5% of patients due to adverse clinical events and in 1.3% of patients due to laboratory test abnormalities. Clinical adverse events were reported more frequently in HIV infected patients (21%) than in non-HIV infected patients (13%); however, the patterns in HIV infected and non-HIV infected patients were similar. The proportions of patients discontinuing therapy due to clinical adverse events were similar in the two groups (1.5%). The following treatment-related clinical adverse events occurred at an incidence of 1% or greater in 4048 patients receiving fluconazole for 7 or more days in clinical trials: nausea 3.7%, headache 1.9%, skin rash 1.8%, vomiting 1.7%, abdominal pain 1.7%, and diarrhea 1.5%. Hepato-biliary In combined clinical trials and marketing experience, there have been rare cases of serious hepatic reactions during treatment with fluconazole. (See WARNINGS ) The spectrum of these hepatic reactions has ranged from mild transient elevations in transaminases to clinical hepatitis, cholestasis and fulminant hepatic failure, including fatalities. Instances of fatal hepatic reactions were noted to occur primarily in patients with serious underlying medical conditions (predominantly AIDS or malignancy) and often while taking multiple concomitant medications. Transient hepatic reactions, including hepatitis and jaundice, have occurred among patients with no other identifiable risk factors. In each of these cases, liver function returned to baseline on discontinuation of fluconazole. In two comparative trials evaluating the efficacy of fluconazole for the suppression of relapse of cryptococcal meningitis, a statistically significant increase was observed in median AST (SGOT) levels from a baseline value of 30 IU/L to 41 IU/L in one trial and 34 IU/L to 66 IU/L in the other. The overall rate of serum transaminase elevations of more than 8 times the upper limit of normal was approximately 1% in fluconazole-treated patients in clinical trials. These elevations occurred in patients with severe underlying disease, predominantly AIDS or malignancies, most of whom were receiving multiple concomitant medications, including many known to be hepatotoxic. The incidence of abnormally elevated serum transaminases was greater in patients taking fluconazole concomitantly with one or more of the following medications: rifampin, phenytoin, isoniazid, valproic acid, or oral sulfonylurea hypoglycemic agents. Post-Marketing Experience In addition, the following adverse events have occ …
Drug Interactions
openFDA Drug LabelingDrug Interaction Studies (See PRECAUTIONS, Drug Interactions) Oral contraceptives: Oral contraceptives were administered as a single dose both before and after the oral administration of fluconazole 50 mg once daily for 10 days in 10 healthy women. There was no significant difference in ethinyl estradiol or levonorgestrel AUC after the administration of 50 mg of fluconazole. The mean increase in ethinyl estradiol AUC was 6% (range: –47 to 108%) and levonorgestrel AUC increased 17% (range: –33 to 141%). In a second study, twenty-five normal females received daily doses of both 200 mg fluconazole tablets or placebo for two, ten-day periods. The treatment cycles were one month apart with all subjects receiving fluconazole during one cycle and placebo during the other. The order of study treatment was random. Single doses of an oral contraceptive tablet containing levonorgestrel and ethinyl estradiol were administered on the final treatment day (Day 10) of both cycles. Following administration of 200 mg of fluconazole, the mean percentage increase of AUC for levonorgestrel compared to placebo was 25% (range: –12 to 82%) and the mean percentage increase for ethinyl estradiol compared to placebo was 38% (range: –11 to 101%). Both of these increases were statistically significantly different from placebo. A third study evaluated the potential interaction of once-weekly dosing of fluconazole 300 mg to 21 normal females taking an oral contraceptive containing ethinyl estradiol and norethindrone. In this placebo-controlled, double-blind, randomized, two-way crossover study carried out over three cycles of oral contraceptive treatment, fluconazole dosing resulted in small increases in the mean AUCs of ethinyl estradiol and norethindrone compared to similar placebo dosing. The mean AUCs of ethinyl estradiol and norethindrone increased by 24% (95% C.I. range: 18 to 31%) and 13% (95% C.I. range: 8 to 18%), respectively, relative to placebo. Fluconazole treatment did not cause a decrease in the ethinyl estradiol AUC of any individual subject in this study compared to placebo dosing. The individual AUC values of norethindrone decreased very slightly (<5%) in 3 of the 21 subjects after fluconazole treatment. Cimetidine: Fluconazole 100 mg was administered as a single oral dose alone and two hours after a single dose of cimetidine 400 mg to six healthy male volunteers. After the administration of cimetidine, there was a significant decrease in fluconazole AUC and C max . There was a mean ± SD decrease in fluconazole AUC of 13% ± 11% (range: –3.4 to –31%) and C max decreased 19% ± 14% (range: –5 to –40%). However, the administration of cimetidine 600 mg to 900 mg intravenously over a four-hour period (from one hour before to 3 hours after a single oral dose of fluconazole 200 mg) did not affect the bioavailability or pharmacokinetics of fluconazole in 24 healthy male volunteers. Antacid: Administration of Maalox ® (20 mL) to 14 normal male volunteers immediately prior to a single dose of fluconazole 100 mg had no effect on the absorption or elimination of fluconazole. Hydrochlorothiazide: Concomitant oral administration of 100 mg fluconazole and 50 mg hydrochlorothiazide for 10 days in 13 normal volunteers resulted in a significant increase in fluconazole AUC and C max compared to fluconazole given alone. There was a mean ± SD increase in fluconazole AUC and C max of 45% ± 31% (range: 19 to 114%) and 43% ± 31% (range: 19 to 122%), respectively. These changes are attributed to a mean ± SD reduction in renal clearance of 30% ± 12% (range: –10 to –50%). Rifampin: Administration of a single oral 200 mg dose of fluconazole after 15 days of rifampin administered as 600 mg daily in eight healthy male volunteers resulted in a significant decrease in fluconazole AUC and a significant increase in apparent oral clearance of fluconazole. There was a mean ± SD reduction in fluconazole AUC of 23% ± 9% (range: –13 to –42%). Apparent oral clearance of fluconazo …
Mechanism of Action
openFDA Drug LabelingMechanism of Action Fluconazole is a highly selective inhibitor of fungal cytochrome P450 dependent enzyme lanosterol 14-α-demethylase. This enzyme functions to convert lanosterol to ergosterol. The subsequent loss of normal sterols correlates with the accumulation of 14-α-methyl sterols in fungi and may be responsible for the fungistatic activity of fluconazole. Mammalian cell demethylation is much less sensitive to fluconazole inhibition. Resistance A potential for development of resistance to fluconazole is well known. Fungal isolates exhibiting reduced susceptibility to other azoles may also show reduced susceptibility to fluconazole. The frequency of drug resistance development for the various fungi for which this drug is indicated is not known. Fluconazole resistance may arise from a modification in the quality or quantity of the target enzyme (lanosterol 14-α-demethylase), reduced access to the drug target, or some combination of these mechanisms. Point mutations in the gene ( ERG11 ) encoding for the target enzyme lead to an altered target with decreased affinity for azoles. Overexpression of ERG11 results in the production of high concentrations of the target enzyme, creating the need for higher intracellular drug concentrations to inhibit all of the enzyme molecules in the cell. The second major mechanism of drug resistance involves active efflux of fluconazole out of the cell through the activation of two types of multidrug efflux transporters; the major facilitators (encoded by MDR genes) and those of the ATP-binding cassette superfamily (encoded by CDR genes). Upregulation of the MDR gene leads to fluconazole resistance, whereas, upregulation of CDR genes may lead to resistance to multiple azoles. Resistance in Candida glabrata usually includes upregulation of CDR genes resulting in resistance to multiple azoles. For an isolate where the minimum inhibitory concentration (MIC) is categorized as Intermediate (16 to 32 mcg/mL), the highest fluconazole dose is recommended. Antimicrobial Activity Fluconazole has been shown to be active against most isolates of the following microorganisms both in vitro and in clinical infections. Candida albicans Candida glabrata (Many isolates are intermediately susceptible) Candida parapsilosis Candida tropicalis Cryptococcus neoformans The following in vitro data are available, but their clinical significance is unknown. At least 90% of the following fungi exhibit an in vitro MIC less than or equal to the susceptible breakpoint for fluconazole (https://www.fda.gov/STIC) against isolates of similar genus or organism group. However, the effectiveness of fluconazole in treating clinical infections due to these fungi has not been established in adequate and well-controlled clinical trials. Candida dubliniensis Candida guilliermondii Candida kefyr Candida lusitaniae Candida krusei should be considered to be resistant to fluconazole. Resistance in C. krusei appears to be mediated by reduced sensitivity of the target enzyme to inhibition by the agent. Susceptibility Testing For specific information regarding susceptibility test interpretive criteria and associated test methods and quality control standards recognized by FDA for this drug, please see: https://www.fda.gov/STIC.
Description
openFDA Drug LabelingDESCRIPTION Fluconazole, the first of a new subclass of synthetic triazole antifungal agents, is available as tablets for oral administration, as a powder for oral suspension. Fluconazole is designated chemically as 2,4-difluoro-α,α 1 -bis(1H-1,2,4-triazol-1-ylmethyl) benzyl alcohol with an empirical formula of C 13 H 12 F 2 N 6 O and molecular weight of 306.3. The structural formula is: Fluconazole is a white crystalline solid which is slightly soluble in water and saline. Fluconazole Tablets contain 50 mg, 100 mg, 150 mg, or 200 mg of fluconazole and the following inactive ingredients: microcrystalline cellulose, dibasic calcium phosphate anhydrous, povidone, croscarmellose sodium, FD&C Red No. 40 aluminum lake dye, and magnesium stearate. Fluconazole for Oral Suspension contains 350 mg or 1400 mg of fluconazole and the following inactive ingredients: sucrose, sodium citrate dihydrate, citric acid anhydrous, sodium benzoate, titanium dioxide, colloidal silicon dioxide, xanthan gum, and natural orange flavor. After reconstitution with 24 mL of distilled water or Purified Water (USP), each mL of reconstituted suspension contains 10 mg or 40 mg of fluconazole. Chemical Structure
Overdosage
openFDA Drug LabelingOVERDOSAGE There have been reports of overdose with fluconazole accompanied by hallucination and paranoid behavior. In the event of overdose, symptomatic treatment (with supportive measures and gastric lavage if clinically indicated) should be instituted. Fluconazole is largely excreted in urine. A 3-hour hemodialysis session decreases plasma levels by approximately 50%. In mice and rats receiving very high doses of fluconazole, clinical effects in both species included decreased motility and respiration, ptosis, lacrimation, salivation, urinary incontinence, loss of righting reflex, and cyanosis; death was sometimes preceded by clonic convulsions.
How Supplied / Storage and Handling
openFDA Drug LabelingHOW SUPPLIED Fluconazole Tablets Pink trapezoidal tablets containing 50, 100, or 200 mg of fluconazole are packaged in bottles or unit dose blisters. The 150 mg fluconazole tablets are pink and oval shaped, packaged in a single dose unit blister. Fluconazole Tablets are supplied as follows: Fluconazole 50 mg Tablets: Embossed with "FLZ 50" on one side with no markings on the other side. NDC 59762-5015-1 Bottles of 30 Fluconazole 100 mg Tablets: Embossed with "FLZ 100" on one side with no markings on the other side. NDC 59762-5016-1 Bottles of 30 Fluconazole 150 mg Tablets: Embossed with "FLZ 150" on one side with no markings on the other side. NDC 59762-5017-1 Unit dose package of 12 Fluconazole 200 mg Tablets: Embossed with "FLZ 200" on one side with no markings on the other side. NDC 59762-5018-1 Bottles of 30 Storage Store tablets below 30°C (86°F). Fluconazole for Oral Suspension Fluconazole for Oral Suspension is supplied as an orange-flavored powder to provide 35 mL per bottle as follows: NDC 59762-5029-1 Fluconazole 350 mg per bottle NDC 59762-5030-1 Fluconazole 1400 mg per bottle Storage Store dry powder below 30°C (86°F). Store reconstituted suspension between 30°C (86°F) and 5°C (41°F) and discard unused portion after 2 weeks. Protect from freezing.
Adverse event reports
Source: openFDA FAERSAttributed to this product's most-reported active ingredient: FLUCONAZOLE. Combination products with more than six active ingredients are not attributed, because a report count summed across a long ingredient list measures the list, not the medicine.
Recalls
Source: FDA Enforcement| Classification | Reported | Firm | Reason | Status |
|---|---|---|---|---|
| Class II | June 11, 2014 | Pfizer Inc. | Defective Container: Tamper evident ring failures discovered on some bottles. | Terminated |
Packaging and NDCs
Source: NDC Directory| Package NDC | Product NDC | Labeler | Description | Marketing start |
|---|---|---|---|---|
| 65862-299-35 | 65862-299 | Aurobindo Pharma Limited | 1 BOTTLE in 1 CARTON (65862-299-35) / 35 mL in 1 BOTTLE | September 18, 2009 |
| 65862-300-35 | 65862-300 | Aurobindo Pharma Limited | 1 BOTTLE in 1 CARTON (65862-300-35) / 35 mL in 1 BOTTLE | September 18, 2009 |
| 59762-5029-1 | 59762-5029 | Mylan Pharmaceuticals Inc. | 1 BOTTLE in 1 CARTON (59762-5029-1) / 35 mL in 1 BOTTLE | December 23, 1993 |
| 59762-5030-1 | 59762-5030 | Mylan Pharmaceuticals Inc. | 1 BOTTLE in 1 CARTON (59762-5030-1) / 35 mL in 1 BOTTLE | December 23, 1993 |
| 16714-695-01 | 16714-695 | NorthStar Rx LLC | 1 BOTTLE in 1 CARTON (16714-695-01) / 35 mL in 1 BOTTLE | September 18, 2009 |
| 16714-696-01 | 16714-696 | NorthStar Rx LLC | 1 BOTTLE in 1 CARTON (16714-696-01) / 35 mL in 1 BOTTLE | September 18, 2009 |
| 57237-149-35 | 57237-149 | Rising Pharma Holdings, Inc. | 1 BOTTLE in 1 CARTON (57237-149-35) / 35 mL in 1 BOTTLE | September 18, 2009 |
| 57237-150-35 | 57237-150 | Rising Pharma Holdings, Inc. | 1 BOTTLE in 1 CARTON (57237-150-35) / 35 mL in 1 BOTTLE | September 18, 2009 |
| 70436-227-48 | 70436-227 | Slate Run Pharmaceuticals | 1 BOTTLE in 1 CARTON (70436-227-48) / 35 mL in 1 BOTTLE | January 1, 2024 |
| 72673-091-14 | 72673-091 | Zhejiang Poly Pharm. Co., Ltd. | 1 BOTTLE in 1 CARTON (72673-091-14) / 35 mL in 1 BOTTLE | April 1, 2025 |
| 65862-299 | 65862-299 | Aurobindo Pharma Limited | — | September 18, 2009 |
| 65862-300 | 65862-300 | Aurobindo Pharma Limited | — | September 18, 2009 |
| 59762-5029 | 59762-5029 | Mylan Pharmaceuticals Inc. | — | December 23, 1993 |
| 59762-5030 | 59762-5030 | Mylan Pharmaceuticals Inc. | — | December 23, 1993 |
| 16714-695 | 16714-695 | NorthStar Rx LLC | — | September 18, 2009 |
| 16714-696 | 16714-696 | NorthStar Rx LLC | — | September 18, 2009 |
| 57237-149 | 57237-149 | Rising Pharma Holdings, Inc. | — | September 18, 2009 |
| 57237-150 | 57237-150 | Rising Pharma Holdings, Inc. | — | September 18, 2009 |
| 70436-227 | 70436-227 | Slate Run Pharmaceuticals | — | January 1, 2024 |
| 72673-091 | 72673-091 | Zhejiang Poly Pharm. Co., Ltd. | — | April 1, 2025 |
Sources for this page
| Dataset | Agency | Used for |
|---|---|---|
| NDC Directory | FDA | Identity, ingredients, strengths, forms, routes, labelers, packages |
| Drugs@FDA | FDA | Application, sponsor, submissions, review documents, marketing status |
| Orange Book | FDA | Therapeutic equivalence codes, reference drug flags, patents, exclusivity |
| Drug Labeling | FDA / NLM | Prescribing information reproduced above |
| FAERS | FDA | Adverse event report counts |
| Enforcement | FDA | Recall records |
Generated September 25, 2026 · 13 sections on this page.