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Inspra
eplerenone · Tablet, Film Coated
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 |
|---|---|---|
| Aldosterone Antagonist [EPC] | EPC | All 10 members |
| Aldosterone Antagonists [MoA] | MoA | All 10 members |
Regulatory status
Source: Drugs@FDANDC Directory| Product | Trade name | Form | Strength | Ingredient | Status | TE | Flags |
|---|---|---|---|---|---|---|---|
| 021437-001 | INSPRA | TABLET | EPLERENONE | Prescription | AB | RLD | |
| 021437-002 | INSPRA | TABLET | EPLERENONE | Prescription | AB | RLD RS | |
| 021437-003 | INSPRA | TABLET | EPLERENONE | Discontinued | — |
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 | 18 | Labeling | Approved | June 16, 2025 | Standard |
| Supplement | 15 | Labeling | Approved | May 30, 2018 | Standard |
| Supplement | 13 | Labeling | Approved | May 4, 2016 | Standard |
| Supplement | 12 | Manufacturing (CMC) | Approved | July 26, 2013 | Standard |
| Supplement | 11 | Labeling | Approved | May 16, 2013 | Standard |
| Supplement | 10 | Manufacturing (CMC) | Approved | April 15, 2013 | Standard |
| Supplement | 9 | Labeling | Approved | June 22, 2012 | Unknown |
| Supplement | 6 | Labeling | Approved | May 7, 2008 | Standard |
| Supplement | 5 | Efficacy | Approved | January 31, 2008 | Unknown |
| Supplement | 2 | Efficacy | Approved | October 7, 2003 | Priority |
| Original application | 1 | Type 1 - New Molecular Entity | Approved | September 27, 2002 | Unknown |
Review documents
- 0 · Supplement · June 17, 2025
- 0 · Supplement · June 17, 2025
- 0 · Supplement · May 31, 2018
- 0 · Supplement · May 31, 2018
- 0 · Supplement · May 5, 2016
- 0 · Supplement · May 5, 2016
- 0 · Supplement · May 21, 2013
- 0 · Supplement · May 21, 2013
- 0 · Supplement · July 13, 2012
- 0 · Supplement · July 13, 2012
- 0 · Supplement · June 26, 2012
- 0 · Supplement · June 26, 2012
- 0 · Supplement · May 19, 2008
- 0 · Supplement · May 9, 2008
- 0 · Supplement · February 4, 2008
- 0 · Supplement · January 31, 2008
- 0 · Supplement · October 19, 2007
- 0 · Supplement · October 19, 2007
- 0 · Supplement · October 19, 2007
- 0 · Supplement · October 19, 2007
- 0 · Supplement · June 7, 2006
- 0 · Supplement · October 1, 2004
- 0 · Supplement · September 9, 2004
- 0 · Supplement · August 17, 2004
- 0 · Original application · June 7, 2004
- 0 · Supplement · October 10, 2003
- 0 · Supplement · October 7, 2003
- 0 · Supplement · March 21, 2003
- 0 · Original application · September 27, 2002
- 0 · Original application · September 27, 2002
Prescribing information
Source: openFDA Drug LabelingReproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20250623). This is the manufacturer's labelling text, not a summary and not advice.
Indications and Usage
openFDA Drug Labeling1 INDICATIONS AND USAGE INSPRA is an aldosterone antagonist indicated for: • Improving survival of stable adult patients with symptomatic heart failure with reduced ejection fraction (HFrEF) after an acute myocardial infarction. ( 1.1 ) • The treatment of hypertension in adults, to lower blood pressure. Lowering blood pressure reduces the risk of fatal and nonfatal cardiovascular events, primarily strokes and myocardial infarctions. ( 1.2 ) 1.1 Heart Failure Post-Myocardial Infarction INSPRA is indicated to improve survival of stable adult patients with symptomatic heart failure with reduced ejection fraction (≤40%) (HFrEF) after an acute myocardial infarction (MI). 1.2 Hypertension INSPRA is indicated for the treatment of hypertension in adults, to lower blood pressure. Lowering blood pressure reduces the risk of fatal and nonfatal cardiovascular (CV) events, primarily strokes and MI. These benefits have been seen in controlled trials of antihypertensive drugs from a wide variety of pharmacologic classes. Control of high blood pressure should be part of comprehensive CV risk management, including, as appropriate, lipid control, diabetes management, antithrombotic therapy, smoking cessation, exercise, and limited sodium intake. Many patients will require more than one drug to achieve blood pressure goals. For specific advice on goals and management, see published guidelines, such as those of the National High Blood Pressure Education Program’s Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure (JNC). Numerous antihypertensive drugs, from a variety of pharmacologic classes and with different mechanisms of action, have been shown in randomized controlled trials to reduce CV morbidity and mortality, and it can be concluded that it is blood pressure reduction, and not some other pharmacologic property of the drugs, that is largely responsible for those benefits. The largest and most consistent CV outcome benefit has been a reduction in the risk of stroke, but reductions in MI and CV mortality also have been seen regularly. Elevated systolic or diastolic pressure causes increased CV risk, and the absolute risk increase per mmHg is greater at higher blood pressures, so that even modest reductions of severe hypertension can provide substantial benefit. Relative risk reduction from blood pressure reduction is similar across populations with varying absolute risk, so the absolute benefit is greater in patients who are at higher risk independent of their hypertension (for example, patients with diabetes or hyperlipidemia), and such patients would be expected to benefit from more aggressive treatment to a lower blood pressure goal. Some antihypertensive drugs have smaller blood pressure effects (as monotherapy) in black patients, and many antihypertensive drugs have additional approved indications and effects (e.g., on angina, heart failure, or diabetic kidney disease). These considerations may guide selection of therapy. INSPRA may be used alone or in combination with other antihypertensive agents.
Dosage and Administration
openFDA Drug Labeling2 DOSAGE AND ADMINISTRATION HFrEF Post-MI: Initiate treatment with 25 mg once daily. Titrate to maximum of 50 mg once daily within 4 weeks, as tolerated. Dose adjustments may be required based on potassium levels. ( 2.1 ) Hypertension: 50 mg once daily, alone or combined with other antihypertensive agents. For inadequate response, increase to 50 mg twice daily. Higher dosages are not recommended. ( 2.2 ) For all patients: Measure serum potassium before starting INSPRA and periodically thereafter. ( 2.3 ) 2.1 Heart Failure Post-Myocardial Infarction Initiate treatment at 25 mg once daily and titrate to the recommended dose of 50 mg once daily, preferably within 4 weeks as tolerated by the patient. Once treatment with INSPRA has begun, adjust the dose based on the serum potassium level as shown in Table 1. Table 1. Dose Adjustment in Heart Failure Post-MI Serum Potassium (mEq/L) Dose Adjustment <5.0 25 mg every other day to 25 mg once daily 25 mg once daily to 50 mg once daily 5.0-5.4 No adjustment 5.5-5.9 50 mg once daily to 25 mg once daily 25 mg once daily to 25 mg every other day 25 mg every other day to withhold ≥6.0 Withhold and restart at 25 mg every other day when potassium levels fall to <5.5 mEq/L 2.2 Hypertension The recommended starting dose of INSPRA is 50 mg administered once daily. The full therapeutic effect of INSPRA is apparent within 4 weeks. For patients with an inadequate blood pressure response to 50 mg once daily increase the dosage of INSPRA to 50 mg twice daily. Higher dosages of INSPRA are not recommended because they have no greater effect on blood pressure than 100 mg and are associated with an increased risk of hyperkalemia [see Clinical Studies (14.2) ] . 2.3 Recommended Monitoring Measure serum potassium before initiating INSPRA therapy, within the first week, and at one month after the start of treatment or dose adjustment. Assess serum potassium periodically thereafter. Check serum potassium and serum creatinine within 3-7 days of a patient initiating a moderate CYP3A inhibitor ACE inhibitors, angiotensin II blockers or nonsteroidal anti-inflammatories. 2.4 Dose Modification for Use with Moderate CYP3A Inhibitors In post-MI HFrEF patients receiving a moderate CYP3A inhibitor (e.g., erythromycin, saquinavir, verapamil, and fluconazole), do not exceed 25 mg once daily. In patients with hypertension receiving a moderate CYP3A inhibitor, initiate at 25 mg once daily. For inadequate blood pressure response, dosing may be increased to a maximum of 25 mg twice daily [see Drug Interactions (7.1) ] .
Dosage Forms and Strengths
openFDA Drug Labeling3 DOSAGE FORMS AND STRENGTHS • 25 mg tablets: yellow diamond biconvex film-coated tablets debossed with “VLE” on one side and “NSR” over “25” on the other • 50 mg tablets: yellow diamond biconvex film-coated tablets debossed with “VLE” on one side and “NSR” over “50” on the other Tablets: 25 mg, 50 mg ( 3 )
Contraindications
openFDA Drug Labeling4 CONTRAINDICATIONS For All Patients INSPRA is contraindicated in all patients with: • serum potassium >5.5 mEq/L at initiation, • creatinine clearance ≤30 mL/min, or • concomitant administration of strong CYP3A inhibitors (e.g., ketoconazole, itraconazole, nefazodone, troleandomycin, clarithromycin, ritonavir, and nelfinavir) [see Drug Interactions (7.1) , Clinical Pharmacology (12.3) ] . For Patients Treated for Hypertension INSPRA is contraindicated for the treatment of hypertension in patients with: • type 2 diabetes with microalbuminuria, • serum creatinine >2.0 mg/dL in males or >1.8 mg/dL in females, • creatinine clearance 5.5 mEq/L at initiation ( 4 ) • Creatinine clearance ≤30 mL/min ( 4 ) • Concomitant use with strong CYP3A inhibitors ( 4 , 7.1 ) For the treatment of hypertension: • Type 2 diabetes with microalbuminuria ( 4 ) • Serum creatinine >2.0 mg/dL in males, >1.8 mg/dL in females ( 4 ) • Creatinine clearance <50 mL/min ( 4 ) • Concomitant use of potassium supplements or potassium-sparing diuretics ( 4 )
Warnings and Cautions
openFDA Drug Labeling5 WARNINGS AND PRECAUTIONS • Hyperkalemia: Patients with decreased renal function, diabetes, proteinuria or patients who are taking ACEs and ARBs, NSAIDs or moderate CYP3A inhibitors are at increased risk. Monitor serum potassium levels and adjust dose as needed. ( 5.1 ) 5.1 Hyperkalemia The risk of hyperkalemia is higher in patients with impaired renal function, proteinuria, diabetes and those concomitantly treated with ACEs, ARBs, NSAIDs and moderate CYP3A inhibitors. Minimize the risk of hyperkalemia with proper patient selection and monitoring [see Dosage and Administration (2.1) , Contraindications (4) , Adverse Reactions (6.2) , and Drug Interactions (7) ] . Monitor patients for the development of hyperkalemia until the effect of INSPRA is established. Patients who develop hyperkalemia (5.5-5.9 mEq/L) may continue INSPRA therapy with proper dose adjustment. Dose reduction decreases potassium levels. Patients on moderate CYP3A inhibitors that cannot be avoided should have their dose of eplerenone reduced [see Drug Interactions (7.2) ] .
Adverse Reactions
openFDA Drug Labeling6 ADVERSE REACTIONS The following adverse reactions are discussed in greater detail in other sections of the labeling: • Hyperkalemia [see Warnings and Precautions (5.1) ] HFrEF Post-MI: Most common adverse reactions (>2% and more frequent than with placebo): hyperkalemia and increased creatinine. ( 6.1 ) Hypertension: In clinical studies, adverse reactions with INSPRA were uncommon. ( 6.1 ) To report SUSPECTED ADVERSE REACTIONS, contact Viatris at 1-877-446-3679 (1-877-4-INFO-RX) or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch. 6.1 Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in clinical trials of another drug and may not reflect the rates observed in practice. Heart Failure Post-Myocardial Infarction In EPHESUS, safety was evaluated in 3307 patients treated with INSPRA and 3301 placebo-treated patients. The overall incidence of adverse events reported with INSPRA (78.9%) was similar to placebo (79.5%). Adverse events occurred at a similar rate regardless of age, gender, or race. Patients discontinued treatment due to an adverse event at similar rates in either treatment group (4.4% INSPRA vs. 4.3% placebo), with the most common reasons for discontinuation being hyperkalemia, MI, and abnormal renal function. Adverse reactions that occurred more frequently in patients treated with INSPRA than placebo were hyperkalemia (3.4% vs. 2.0%) and increased creatinine (2.4% vs. 1.5%). Discontinuations due to hyperkalemia or abnormal renal function were less than 1.0% in both groups. Hypertension INSPRA has been evaluated for safety in 3091 patients treated for hypertension. A total of 690 patients were treated for over 6 months and 106 patients were treated for over 1 year. In placebo-controlled studies, the overall rates of adverse events were 47% with INSPRA and 45% with placebo. Adverse events occurred at a similar rate regardless of age, gender, or race. Therapy was discontinued due to an adverse event in 3% of patients treated with INSPRA and 3% of patients given placebo. The most common reasons for discontinuation of INSPRA were headache, dizziness, angina pectoris/MI, and increased GGT. Gynecomastia and abnormal vaginal bleeding were reported with INSPRA but not with placebo. The rates increased with increasing duration of therapy. 6.2 Postmarketing Experience The following adverse reactions have been identified during postapproval use of INSPRA. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Skin: angioedema, rash 6.3 Clinical Laboratory Test Findings Heart Failure Post-Myocardial Infarction Creatinine: Increases of more than 0.5 mg/dL were reported for 6.5% of patients administered INSPRA and for 4.9% of placebo-treated patients. Potassium: In EPHESUS [see Clinical Studies (14.1) ] , the frequencies of patients with changes in potassium (5.5 mEq/L or ≥6.0 mEq/L) receiving INSPRA compared with placebo are displayed in Table 2. Table 2. Hypokalemia (5.5 or ≥6.0 mEq/L) in EPHESUS Potassium (mEq/L) INSPRA (N=3251) n (%) Placebo (N=3237) n (%) 5.5 508 (15.6) 363 (11.2) ≥6.0 180 (5.5) 126 (3.9) Rates of hyperkalemia increased with decreasing renal function. Table 3. Rates of Hyperkalemia (>5.5 mEq/L) in EPHESUS by Baseline Creatinine Clearance* * Estimated using the Cockroft-Gault formula. Baseline Creatinine Clearance INSPRA (N=508) n (%) Placebo (N=363) n (%) ≤30 mL/min 160 (32) 82 (23) 31-50 mL/min 122 (24) 46 (13) 51-70 mL/min 86 (17) 48 (13) >70 mL/min 56 (11) 32 (9) The rates of hyperkalemia in EPHESUS in the INSPRA-treated group vs. placebo were increased in patients with proteinuria (16% vs 11%), diabetes (18% vs. 13%) or both (26% vs. 16%). Hypertension Potassium: In placebo-controlled fixed-dose studies, the mean incre …
Drug Interactions
openFDA Drug Labeling7 DRUG INTERACTIONS • CYP3A Inhibitors: In post-MI HFrEF patients, do not exceed 25 mg once daily when used with moderate CYP3A inhibitors (e.g., verapamil, erythromycin, saquinavir, fluconazole). In patients with hypertension, initiate at 25 mg once daily. For inadequate blood pressure response, dosing may be increased to a maximum of 25 mg twice daily. ( 2.4 , 7.1 , 12.3 ) 7.1 CYP3A Inhibitors Eplerenone metabolism is predominantly mediated via CYP3A. Do not use INSPRA with drugs that are strong inhibitors of CYP3A [see Contraindications (4) and Clinical Pharmacology (12.3) ] . In post-MI HFrEF patients taking a moderate CYP3A inhibitor, do not exceed 25 mg once daily. In patients with hypertension taking a moderate CYP3A inhibitor, initiate at 25 mg once daily. For inadequate blood pressure response, dosing may be increased to a maximum of 25 mg twice daily [see Dosage and Administration (2.3 , 2.4) and Clinical Pharmacology (12.3) ] . 7.2 ACE Inhibitors and Angiotensin II Receptor Antagonists The risk of hyperkalemia increases when eplerenone is used in combination with an ACE inhibitor and/or an ARB. A close monitoring of serum potassium and renal function is recommended, especially in patients at risk for impaired renal function, e.g., the elderly [see Warnings and Precautions (5.1) ] . 7.3 Lithium A drug interaction study of eplerenone with lithium has not been conducted. Lithium toxicity has been reported in patients receiving lithium concomitantly with diuretics and ACE inhibitors. Serum lithium levels should be monitored frequently if INSPRA is administered concomitantly with lithium. 7.4 Nonsteroidal Anti-Inflammatory Drugs (NSAIDs) A drug interaction study of eplerenone with an NSAID has not been conducted. The administration of other potassium-sparing antihypertensives with NSAIDs has been shown to reduce the antihypertensive effect in some patients and result in severe hyperkalemia in patients with impaired renal function. Therefore, when INSPRA and NSAIDs are used concomitantly, monitor blood pressure and serum potassium levels.
Use in Specific Populations
openFDA Drug Labeling8 USE IN SPECIFIC POPULATIONS 8.1 Pregnancy Risk Summary The available data from published case reports on eplerenone use during pregnancy are insufficient to establish a drug-associated risk of major birth defects, miscarriage, adverse maternal or fetal outcomes (see Clinical Considerations ) . In animal studies, no adverse developmental effects were observed when eplerenone was administered to pregnant rats and rabbits during organogenesis at exposures 32 and 31 times, respectively the human exposure at the 100 mg/day therapeutic dose. The estimated background risk of major birth defects and miscarriage for the indicated population are unknown. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2-4% and 15-20%, respectively. Clinical Considerations Disease-Associated Maternal and/or Embryo/Fetal Risk Hypertension in pregnancy increases the maternal risk for pre-eclampsia, gestational diabetes, premature delivery, and delivery complications (e.g., need for cesarean section, and post-partum hemorrhage). Hypertension increases the fetal risk for intrauterine growth restriction and intrauterine death. Pregnant women with hypertension should be carefully monitored and managed accordingly. Pregnant women with heart failure are at increased risk for preterm birth. Stroke volume and heart rate increase during pregnancy, increasing cardiac output, especially during the first trimester. Clinical classification of heart disease may worsen with pregnancy and lead to maternal death. Closely monitor pregnant patients for destabilization of their heart failure. Data Animal Data Embryo-fetal development studies were conducted with doses up to 1000 mg/kg/day in rats and 300 mg/kg/day in rabbits (exposures up to 32 and 31 times the human AUC for the 100 mg/day therapeutic dose, respectively) administered during organogenesis. No teratogenic effects were seen in rats or rabbits, although decreased rat fetal weights were observed, and decreased body weight in maternal rabbits and increased rabbit fetal resorptions and post-implantation loss were observed at the highest administered dosages. In a pre- and postnatal development study, pregnant rats were administered eplerenone at doses up to 1000 mg/kg/day from Gestation Day 6 through Lactation Day 20. Decreased pup weights were observed beginning at birth at 1000 mg/kg/day. 8.2 Lactation Risk Summary There are no human data available on whether eplerenone is present in human milk, or has effects on breastfed infants or on milk production. Eplerenone was present in the milk of lactating rats. When a drug is present in animal milk, it is likely that the drug will be present in human milk. 8.3 Females and Males of Reproductive Potential Infertility Based on animal data, use of INSPRA may compromise male fertility. In mature rats, male fertility was decreased with eplerenone exposure at 17 times the 100 mg/day human therapeutic dose. Reversibility of effects was not evaluated [see Nonclinical Toxicology (13.1) ] . 8.4 Pediatric Use The safety and effectiveness of INSPRA for treatment of hypertension have not been established in pediatric patients. In a 10-week study of 304 hypertensive pediatric patients ages 4 to 16 years treated with INSPRA up to 100 mg per day, doses that produced exposure similar to that in adults, INSPRA did not lower blood pressure effectively. In this study and in a 1-year pediatric safety study in 149 patients (age range 5 to 17 years), the incidence of reported adverse events was similar to that of adults. INSPRA was not studied for treatment of hypertension in pediatric patients younger than 4 years of age because the study in older pediatric patients did not demonstrate effectiveness. The safety and effectiveness of INSPRA have not been established in pediatric patients with heart failure. 8.5 Geriatric Use Heart Failure Post-Myocardial Infarction Of the total number of patients in E …
Mechanism of Action
openFDA Drug Labeling12.1 Mechanism of Action Eplerenone binds to the mineralocorticoid receptor and blocks the binding of aldosterone, a component of the renin-angiotensin-aldosterone-system (RAAS). Aldosterone synthesis, which occurs primarily in the adrenal gland, is modulated by multiple factors, including angiotensin II and non-RAAS mediators such as adrenocorticotropic hormone (ACTH) and potassium. Aldosterone binds to mineralocorticoid receptors in both epithelial (e.g., kidney) and nonepithelial (e.g., heart, blood vessels, and brain) tissues and increases blood pressure through induction of sodium reabsorption and possibly other mechanisms. Eplerenone has been shown to produce sustained increases in plasma renin and serum aldosterone, consistent with inhibition of the negative regulatory feedback of aldosterone on renin secretion. The resulting increased plasma renin activity and aldosterone circulating levels do not overcome the effects of eplerenone. Eplerenone selectively binds to human mineralocorticoid receptors relative to its binding to recombinant human glucocorticoid, progesterone, and androgen receptors.
Description
openFDA Drug Labeling11 DESCRIPTION INSPRA contains eplerenone, a blocker of aldosterone binding at the mineralocorticoid receptor. Eplerenone is chemically described as Pregn-4-ene-7,21-dicarboxylic acid, 9,11-epoxy-17-hydroxy-3-oxo-, γ-lactone, methyl ester, (7α,11α,17α)-. Its empirical formula is C 24 H 30 O 6 and it has a molecular weight of 414.50. The structural formula of eplerenone is represented below: Eplerenone is an odorless, white to off-white crystalline powder. It is very slightly soluble in water, with its solubility essentially pH-independent. The octanol/water partition coefficient of eplerenone is approximately 7.1 at pH 7.0. INSPRA tablets for oral administration contain 25 mg or 50 mg of eplerenone and the following inactive ingredients: croscarmellose sodium, hypromellose, lactose monohydrate, magnesium stearate, microcrystalline cellulose, polyethylene glycol, polysorbate 80, red iron oxide, sodium lauryl sulfate, talc, titanium dioxide, and yellow iron oxide. structural formula of eplerenone
Overdosage
openFDA Drug Labeling10 OVERDOSAGE No cases of human overdosage with eplerenone have been reported. Lethality was not observed in mice, rats, or dogs after single oral doses that provided C max exposures at least 25 times higher than in humans receiving eplerenone 100 mg/day. Dogs showed emesis, salivation, and tremors at a C max 41 times the human therapeutic C max , progressing to sedation and convulsions at higher exposures. The most likely manifestation of human overdosage would be anticipated to be hypotension or hyperkalemia. Eplerenone cannot be removed by hemodialysis. Eplerenone has been shown to bind extensively to charcoal. If symptomatic hypotension should occur, supportive treatment should be instituted. If hyperkalemia develops, standard treatment should be initiated.
How Supplied / Storage and Handling
openFDA Drug Labeling16 HOW SUPPLIED/STORAGE AND HANDLING INSPRA Tablets are yellow, diamond biconvex, and film-coated. They are debossed with “VLE” on one side. They are supplied as follows: Dose Deboss Side 2 NDC 58151-xxx-xx Bottle/30 25 mg NSR 25 142-93 50 mg NSR 50 143-93 Store at 25°C (77°F); excursions permitted to 15-30°C (59-86°F) [See USP Controlled Room Temperature].
Adverse event reports
Source: openFDA FAERSAttributed to this product's most-reported active ingredient: EPLERENONE. 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.
Packaging and NDCs
Source: NDC Directory| Package NDC | Product NDC | Labeler | Description | Marketing start |
|---|---|---|---|---|
| 58151-142-93 | 58151-142 | Viatris Specialty LLC | 30 TABLET, FILM COATED in 1 BOTTLE (58151-142-93) | April 19, 2024 |
| 58151-143-93 | 58151-143 | Viatris Specialty LLC | 30 TABLET, FILM COATED in 1 BOTTLE (58151-143-93) | September 17, 2024 |
| 58151-142 | 58151-142 | Viatris Specialty LLC | — | April 19, 2024 |
| 58151-143 | 58151-143 | Viatris Specialty LLC | — | September 17, 2024 |
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 |
Generated September 25, 2026 · 11 sections on this page.