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Cardizem

Diltiazem Hydrochloride · Tablet, Coated

Prescription NDA TE AB RLD Official labelling
Informational index, not medical advice. Content is reproduced from public FDA and NLM data. Always confirm against the manufacturer's current prescribing information. Report adverse events to FDA MedWatch.

Overview

Brand name
Cardizem
Generic name
Diltiazem Hydrochloride
Dosage form
Tablet, Coated
Route
Oral
Marketing category
NDA · NDA
Labeler
Bausch Health US LLC
Product type
Human Prescription Drug
DEA schedule
Not scheduled
Active ingredients
3
NDC product codes
3
Packages
3
Data completeness
76% of corroborating sources present

Active ingredients

Source: NDC Directory
Active ingredients and strengths as listed in the NDC Directory.
Ingredient Strength RxCUI Monograph
Diltiazem Hydrochloride 120 mg/1 831054 View
Diltiazem Hydrochloride 30 mg/1 831054 View
Diltiazem Hydrochloride 60 mg/1 831054 View

Forms, strengths and routes

Source: NDC Directory
Dosage form
Tablet, Coated
Route of administration
Oral
Presentations
6

Pharmacologic classes are listed in the class section below.

Pharmacologic class

Source: NDC Directory
Established pharmacologic classes (EPC), mechanisms of action (MoA), chemical structures (CS) and physiologic effects (PE).
Class Type Browse
Calcium Channel Antagonists [MoA] MoA All 75 members
Calcium Channel Blocker [EPC] EPC All 55 members
Cytochrome P450 3A4 Inhibitors [MoA] MoA All 118 members

Regulatory status

Source: Drugs@FDANDC Directory
Application number
018602
Application type
NDA · New Drug Application
Approval date
November 5, 1982
Sponsor
BAUSCH
Products on application
4
Submissions recorded
55
Products approved under application 018602.
Product Trade name Form Strength Ingredient Status TE Flags
018602-001 CARDIZEM TABLET DILTIAZEM HYDROCHLORIDE Prescription AB RLD
018602-002 CARDIZEM TABLET DILTIAZEM HYDROCHLORIDE Prescription AB RLD
018602-003 CARDIZEM TABLET DILTIAZEM HYDROCHLORIDE Prescription AB RLD
018602-004 CARDIZEM TABLET DILTIAZEM HYDROCHLORIDE Prescription AB RLD RS

Therapeutic equivalence

Source: Orange Book
TE code
AB
Reference Listed Drug
Yes
Reference Standard
Yes

What 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
Most recent submissions on application 018602.
Type No. Action Status Date Review
Supplement 72 Labeling Approved April 16, 2025 Standard
Supplement 69 Manufacturing (CMC) Approved June 29, 2020 N/A
Supplement 67 Labeling Approved November 18, 2016 Standard
Supplement 65 Labeling Approved November 21, 2014 Standard
Supplement 64 Manufacturing (CMC) Approved June 24, 2014 Standard
Supplement 63 Labeling Approved November 23, 2010 Unknown
Supplement 56 Labeling Approved March 21, 2003 Standard
Supplement 58 Manufacturing (CMC) Approved June 4, 2001 Standard
Supplement 57 Manufacturing (CMC) Approved June 18, 1999 Standard
Supplement 55 Manufacturing (CMC) Approved February 5, 1998 Standard
Supplement 54 Manufacturing (CMC) Approved November 19, 1997 Standard
Supplement 53 Manufacturing (CMC) Approved August 4, 1997 Standard
Supplement 51 Labeling Approved April 2, 1996 Standard
Supplement 50 Labeling Approved April 2, 1996 Standard
Supplement 49 Manufacturing (CMC) Approved August 29, 1995 Standard
Supplement 46 Manufacturing (CMC) Approved May 4, 1995 Standard
Supplement 48 Manufacturing (CMC) Approved December 30, 1994 Standard
Supplement 44 Manufacturing (CMC) Approved December 28, 1994 Standard
Supplement 47 Manufacturing (CMC) Approved November 29, 1994 Standard
Supplement 40 Labeling Approved October 12, 1994 —
Supplement 45 Manufacturing (CMC) Approved September 21, 1994 Standard
Supplement 43 Manufacturing (CMC) Approved July 7, 1993 Standard
Supplement 23 Efficacy Approved July 1, 1993 —
Supplement 41 Manufacturing (CMC) Approved April 13, 1993 Standard
Supplement 42 Manufacturing (CMC) Approved February 8, 1993 Standard
Supplement 39 Manufacturing (CMC) Approved May 27, 1992 Standard
Supplement 38 Labeling Approved June 13, 1991 —
Supplement 37 Manufacturing (CMC) Approved March 14, 1991 Standard
Supplement 34 Manufacturing (CMC) Approved April 12, 1990 Standard
Supplement 36 Manufacturing (CMC) Approved December 18, 1989 Standard
Supplement 35 Manufacturing (CMC) Approved November 21, 1989 Standard
Supplement 33 Manufacturing (CMC) Approved December 14, 1988 Standard
Supplement 32 Labeling Approved October 13, 1988 —
Supplement 30 Manufacturing (CMC) Approved August 12, 1988 Standard
Supplement 29 Manufacturing (CMC) Approved February 19, 1988 Standard
Supplement 28 Manufacturing (CMC) Approved February 19, 1988 Standard
Supplement 26 Manufacturing (CMC) Approved December 7, 1987 Standard
Supplement 27 Manufacturing (CMC) Approved November 30, 1987 Standard
Supplement 25 Labeling Approved October 29, 1987 —
Supplement 20 Efficacy Approved December 8, 1986 —
Supplement 22 Labeling Approved July 28, 1986 —
Supplement 11 Efficacy Approved July 28, 1986 —
Supplement 17 Manufacturing (CMC) Approved June 20, 1985 Standard
Supplement 14 Manufacturing (CMC) Approved February 4, 1985 Standard
Supplement 10 Manufacturing (CMC) Approved June 8, 1984 Standard
Supplement 8 Manufacturing (CMC) Approved June 8, 1984 Standard
Supplement 9 Manufacturing (CMC) Approved February 28, 1984 Standard
Supplement 6 Manufacturing (CMC) Approved October 6, 1983 Standard
Supplement 5 Manufacturing (CMC) Approved October 6, 1983 Standard
Supplement 7 Manufacturing (CMC) Approved September 6, 1983 Standard
Supplement 4 Manufacturing (CMC) Approved May 27, 1983 Standard
Supplement 3 Manufacturing (CMC) Approved May 27, 1983 Standard
Supplement 2 Manufacturing (CMC) Approved March 11, 1983 Standard
Supplement 1 Manufacturing (CMC) Approved March 11, 1983 Standard
Original application 1 Type 1 - New Molecular Entity Approved November 5, 1982 Standard

Review documents

  • 0 · Supplement · April 25, 2025
  • 0 · Supplement · April 24, 2025
  • 0 · Supplement · October 13, 2020
  • 0 · Supplement · October 9, 2020
  • 0 · Supplement · November 22, 2016
  • 0 · Supplement · November 21, 2016
  • 0 · Supplement · November 25, 2014
  • 0 · Supplement · November 30, 2010
  • 0 · Supplement · November 22, 2010

Prescribing information

Source: openFDA Drug Labeling

Reproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20250430). This is the manufacturer's labelling text, not a summary and not advice.

HUMAN PRESCRIPTION DRUG · 20250430

Indications and Usage

openFDA Drug Labeling

INDICATIONS AND USAGE CARDIZEM is indicated for the management of chronic stable angina and angina due to coronary artery spasm.

Dosage and Administration

openFDA Drug Labeling

DOSAGE AND ADMINISTRATION Exertional Angina Pectoris Due to Atherosclerotic Coronary Artery Disease or Angina Pectoris at Rest Due to Coronary Artery Spasm: Dosage must be adjusted to each patient’s needs. Starting with 30 mg four times daily, before meals and at bedtime, dosage should be increased gradually (given in divided doses three or four times daily) at 1- to 2-day intervals until optimum response is obtained. Although individual patients may respond to any dosage level, the average optimum dosage range appears to be 180 to 360 mg/day. There are no available data concerning dosage requirements in patients with impaired renal or hepatic function. If the drug must be used in such patients, titration should be carried out with particular caution. Concomitant Use with Other Cardiovascular Agents Sublingual NTG may be taken as required to abort acute anginal attacks during CARDIZEM (diltiazem hydrochloride) therapy. Prophylactic Nitrate Therapy. CARDIZEM may be safely coadministered with short- and long-acting nitrates, but there have been no controlled studies to evaluate the antianginal effectiveness of this combination. Beta-blockers. (see WARNINGS and PRECAUTIONS . ) 30 mg – CARDIZEM tablets may be swallowed whole, crushed, or chewed. Do not split CARDIZEM tablets. 60 mg, 90 mg, and 120 mg – CARDIZEM tablets may be swallowed whole, crushed, or chewed.

Contraindications

openFDA Drug Labeling

CONTRAINDICATIONS CARDIZEM is contraindicated in: Patients with sick sinus syndrome except in the presence of a functioning ventricular pacemaker Patients with second- or third-degree AV block except in the presence of a functioning ventricular pacemaker Patients with hypotension (less than 90 mm Hg systolic) Patients who have demonstrated hypersensitivity to the drug Patients with acute myocardial infarction and pulmonary congestion documented by x-ray on admission

WARNINGS Cardiac Conduction: CARDIZEM prolongs AV node refractory periods without significantly prolonging sinus node recovery time, except in patients with sick sinus syndrome. This effect may rarely result in abnormally slow heart rates (particularly in patients with sick sinus syndrome) or second- or third-degree AV block (six of 1243 patients for 0.48%). Concomitant use of diltiazem with beta-blockers or digitalis may result in additive effects on cardiac conduction. A patient with Prinzmetal’s angina developed periods of asystole (2 to 5 seconds) after a single dose of 60 mg of diltiazem (see ADVERSE REACTIONS ). Congestive Heart Failure: Although diltiazem has a negative inotropic effect in isolated animal tissue preparations, hemodynamic studies in humans with normal ventricular function have not shown a reduction in cardiac index nor consistent negative effects on contractility (dP/dt). Experience with the use of CARDIZEM alone or in combination with beta-blockers in patients with impaired ventricular function is very limited. Caution should be exercised when using the drug in such patients. Hypotension: Decreases in blood pressure associated with CARDIZEM therapy may occasionally result in symptomatic hypotension. Acute Hepatic Injury: In rare instances, significant elevations in enzymes such as alkaline phosphatase, LDH, SGOT, SGPT, and other phenomena consistent with acute hepatic injury have been noted. These reactions have been reversible upon discontinuation of drug therapy. The relationship to CARDIZEM is uncertain in most cases, but probable in some (see PRECAUTIONS ).

Adverse Reactions

openFDA Drug Labeling

ADVERSE REACTIONS Serious adverse reactions have been rare in studies carried out to date, but it should be recognized that patients with impaired ventricular function and cardiac conduction abnormalities usually have been excluded. In domestic placebo-controlled angina trials, the incidence of adverse reactions reported during CARDIZEM therapy was not greater than that reported during placebo therapy. The following represent occurrences observed in clinical studies of angina patients. In many cases, the relationship to CARDIZEM has not been established. The most common occurrences from these studies, as well as their frequency of presentation, are edema (2.4%), headache (2.1%), nausea (1.9%), dizziness (1.5%), rash (1.3%), and asthenia (1.2%). In addition, the following events were reported infrequently (less than 1%): Cardiovascular: Angina, arrhythmia, AV block (first-degree), AV block (second- or third-degree – see WARNINGS, Cardiac Conduction ), bradycardia, bundle branch block, congestive heart failure, ECG abnormality, flushing, hypotension, palpitations, syncope, tachycardia, ventricular extrasystoles Nervous System: Abnormal dreams, amnesia, depression, gait abnormality, hallucinations, insomnia, nervousness, paresthesia, personality change, somnolence, tremor Gastrointestinal: Anorexia, constipation, diarrhea, dysgeusia, dyspepsia, mild elevations of alkaline phosphatase, SGOT, SGPT, and LDH (see WARNINGS, Acute Hepatic Injury ), thirst, vomiting, weight increase. Dermatological: Petechiae, photosensitivity, pruritus, urticaria Other: Amblyopia, CPK elevation, dry mouth, dyspnea, epistaxis, eye irritation, hyperglycemia, hyperuricemia, impotence, muscle cramps, nasal congestion, nocturia, osteoarticular pain, polyuria, sexual difficulties, tinnitus The following postmarketing events have been reported infrequently in patients receiving CARDIZEM: acute generalized exanthematous pustulosis, allergic reactions, alopecia, angioedema (including facial or periorbital edema), asystole, erythema multiforme (including Stevens-Johnson syndrome, toxic epidermal necrolysis), extrapyramidal symptoms, gingival hyperplasia, hemolytic anemia, increased bleeding time, leukopenia, photosensitivity (including lichenoid keratosis and hyperpigmentation at sun-exposed skin areas), purpura, retinopathy, myopathy, and thrombocytopenia. There have been observed cases of a generalized rash, some characterized as leukocytoclastic vasculitis. In addition, events such as myocardial infarction have been observed, which are not readily distinguishable from the natural history of the disease in these patients. A definitive cause and effect relationship between these events and CARDIZEM therapy cannot yet be established. Exfoliative dermatitis (proven by rechallenge) has also been reported. To report SUSPECTED ADVERSE REACTIONS, contact Bausch Health US, LLC at 1-800-321-4576 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch.

Drug Interactions

openFDA Drug Labeling

Drug Interactions Due to the potential for additive effects, caution and careful titration are warranted in patients receiving CARDIZEM concomitantly with any agents known to affect cardiac contractility and/or conduction (see WARNINGS ). Pharmacologic studies indicate that there may be additive effects in prolonging AV conduction when using beta-blockers or digitalis concomitantly with CARDIZEM (see WARNINGS ). Diltiazem is both a substrate and an inhibitor of the Pg-p and cytochrome P450 3A4 enzyme system which may affect exposure to diltiazem and concomitant drugs metabolized by those pathways. Patients with renal and/or hepatic impairment may be particularly at risk of exposure changes. Anesthetics: The depression of cardiac contractility, conductivity, and automaticity, as well as the vascular dilation associated with anesthetics, may be potentiated by calcium channel blockers. When used concomitantly, anesthetics and calcium blockers should be titrated carefully. Benzodiazepines: Studies showed that diltiazem increased the AUC of midazolam and triazolam by 3- to 4-fold and the C max by 2-fold, compared to placebo. The elimination half-life of midazolam and triazolam also increased (1.5- to 2.5-fold) during coadministration with diltiazem. These pharmacokinetic effects seen during diltiazem coadministration can result in increased clinical effects (e.g., prolonged sedation) of both midazolam and triazolam. Beta-blockers: Controlled and uncontrolled domestic studies suggest that concomitant use of CARDIZEM and beta-blockers is usually well tolerated. Available data are not sufficient, however, to predict the effects of concomitant treatment, particularly in patients with left ventricular dysfunction or cardiac conduction abnormalities. Administration of CARDIZEM (diltiazem hydrochloride) concomitantly with propranolol in five normal volunteers resulted in increased propranolol levels in all subjects, and bioavailability of propranolol was increased approximately 50%. In vitro , propranolol appears to be displaced from its binding sites by diltiazem. If combination therapy is initiated or withdrawn in conjunction with propranolol, an adjustment in the propranolol dose may be warranted (see WARNINGS ). Buspirone: In nine healthy subjects, diltiazem significantly increased the mean buspirone AUC 5.5-fold and C max 4.1-fold compared to placebo. The T 1/2 and T max of buspirone were not significantly affected by diltiazem. Enhanced effects and increased toxicity of buspirone may be possible during concomitant administration with diltiazem. Subsequent dose adjustments may be necessary during coadministration and should be based on clinical assessment. Carbamazepine: Concomitant administration of diltiazem with carbamazepine has been reported to result in elevated serum levels of carbamazepine (40% to 72% increase) resulting in toxicity in some cases. Patients receiving these drugs concurrently should be monitored for a potential drug interaction. Cimetidine: A study in six healthy volunteers has shown a significant increase in peak diltiazem plasma levels (58%) and area-under-the-curve (53%) after a 1-week course of cimetidine at 1200 mg per day and a single dose of diltiazem 60 mg. Ranitidine produced smaller, nonsignificant increases. The effect may be mediated by cimetidine’s known inhibition of hepatic cytochrome P450, the enzyme system responsible for the first-pass metabolism of diltiazem. Patients currently receiving diltiazem therapy should be carefully monitored for a change in pharmacological effect when initiating and discontinuing therapy with cimetidine. An adjustment in the diltiazem dose may be warranted. Clonidine: Sinus bradycardia resulting in hospitalization and pacemaker insertion has been reported in association with the use of clonidine concurrently with diltiazem. Monitor heart rate in patients receiving concomitant diltiazem and clonidine. Cyclosporine: A pharmacokinetic interaction between diltiazem and …

Mechanism of Action

openFDA Drug Labeling

Mechanisms of Action Although precise mechanisms of its antianginal actions are still being delineated, CARDIZEM is believed to act in the following ways: Angina Due to Coronary Artery Spasm: CARDIZEM has been shown to be a potent dilator of coronary arteries both epicardial and subendocardial. Spontaneous and ergonovine-induced coronary artery spasms are inhibited by CARDIZEM. Exertional Angina: CARDIZEM has been shown to produce increases in exercise tolerance, probably due to its ability to reduce myocardial oxygen demand. This is accomplished via reductions in heart rate and systemic blood pressure at submaximal and maximal exercise workloads. In animal models, diltiazem interferes with the slow inward (depolarizing) current in excitable tissue. It causes excitation-contraction uncoupling in various myocardial tissues without changes in the configuration of the action potential. Diltiazem produces relaxation of coronary vascular smooth muscle and dilation of both large and small coronary arteries at drug levels which cause little or no negative inotropic effect. The resultant increases in coronary blood flow (epicardial and subendocardial) occur in ischemic and nonischemic models and are accompanied by dose-dependent decreases in systemic blood pressure and decreases in peripheral resistance.

Description

openFDA Drug Labeling

DESCRIPTION CARDIZEM ® (diltiazem hydrochloride) is a calcium ion cellular influx inhibitor (slow channel blocker or calcium antagonist). Chemically, diltiazem hydrochloride is 1,5-Benzothiazepin-4(5 H )-one, 3-(acetyloxy)-5-[2-(dimethylamino)ethyl] -2, 3-dihydro-2-(4-methoxyphenyl)-, monohydrochloride,(+)- cis -. The chemical structure is: Diltiazem hydrochloride is a white to off-white crystalline powder with a bitter taste. It is soluble in water, methanol, and chloroform. It has a molecular weight of 450.98. Each tablet of CARDIZEM contains 30 mg, 60 mg, 90 mg, or 120 mg diltiazem hydrochloride. Also contains: colloidal silicon dioxide, D&C Yellow #10 Aluminum Lake, FD&C Blue #1 Aluminum Lake (30 mg and 90 mg), FD&C Yellow #6 Aluminum Lake (60 mg and 120 mg), hydroxypropyl cellulose, hypromellose, lactose, magnesium stearate, methylparaben, microcrystalline cellulose, and polyethylene glycol. For oral administration. Chemical Structure

OVERDOSAGE The oral LD 50 s in mice and rats range from 415 to 740 mg/kg and from 560 to 810 mg/kg, respectively. The intravenous LD 50 s in these species were 60 and 38 mg/kg, respectively. The oral LD 50 in dogs is considered to be in excess of 50 mg/kg, while lethality was seen in monkeys at 360 mg/kg. The toxic dose in man is not known. Due to extensive metabolism, blood levels after a standard dose of diltiazem can vary over tenfold, limiting the usefulness of blood levels in overdose cases. There have been reports of diltiazem overdose in amounts ranging from <1 g to 18 g. Of cases with known outcome, most patients recovered and in cases with a fatal outcome, the majority involved multiple drug ingestion. Events observed following diltiazem overdose included bradycardia, hypotension, heart block, and cardiac failure. Most reports of overdose described some supportive medical measure and/or drug treatment. Bradycardia frequently responded favorably to atropine, as did heart block, although cardiac pacing was also frequently utilized to treat heart block. Fluids and vasopressors were used to maintain blood pressure, and in cases of cardiac failure, inotropic agents were administered. In addition, some patients received treatment with ventilatory support, gastric lavage, activated charcoal, and/or intravenous calcium. The effectiveness of intravenous calcium administration to reverse the pharmacological effects of diltiazem overdose has been inconsistent. In a few reported cases, overdose with calcium channel blockers associated with hypotension and bradycardia that was initially refractory to atropine became more responsive to atropine after the patients received intravenous calcium. In some cases intravenous calcium has been administered (1 g calcium chloride or 3 g calcium gluconate) over 5 minutes and repeated every 10 to 20 minutes as necessary. Calcium gluconate has also been administered as a continuous infusion at a rate of 2 g per hour for 10 hours. Infusions of calcium for 24 hours or more may be required. Patients should be monitored for signs of hypercalcemia. In the event of overdose or exaggerated response, appropriate supportive measures should be employed in addition to gastrointestinal decontamination. Diltiazem does not appear to be removed by peritoneal or hemodialysis. Limited data suggest that plasmapheresis or charcoal hemoperfusion may hasten diltiazem elimination following overdose. Based on the known pharmacological effects of diltiazem and/or reported clinical experiences, the following measures may be considered: Bradycardia: Administer atropine (0.60 to 1.0 mg). If there is no response to vagal blockade, administer isoproterenol cautiously. High-Degree AV Block: Treat as for bradycardia above. Fixed high-degree AV block should be treated with cardiac pacing. Cardiac Failure: Administer inotropic agents (isoproterenol, dopamine, or dobutamine) and diuretics. Hypotension: Vasopressors (e.g., dopamine or norepinephrine). Actual treatment and dosage should depend on the severity of the clinical situation and the judgment and experience of the treating physician.

How Supplied / Storage and Handling

openFDA Drug Labeling

HOW SUPPLIED CARDIZEM 30 mg tablets are supplied in bottles of 100 (NDC 0187-0771-47) and 500 (NDC 0187-0771-55). Each light green, round tablet is engraved with MARION on one side and 1771 on the other. CARDIZEM 60 mg scored tablets are supplied in bottles of 100 (NDC 0187-0772-47) and 500 (NDC 0187-0772-55). Each light yellow, round tablet is engraved with MARION on one side and 1772 on the other. CARDIZEM 90 mg scored tablets are supplied in bottles of 100 (NDC 0187-0791-47) and 500 (NDC 0187-0791-55). Each light green, capsule-shaped tablet is engraved with CARDIZEM on one side and 90 mg on the other. CARDIZEM 120 mg scored tablets are supplied in bottles of 100 (NDC 0187-0792-47). Each yellow, capsule-shaped tablet is engraved with CARDIZEM on one side and 120 mg on the other. Store at 25°C (77°F); excursions permitted to 15° to 30°C (59° to 86°F) [see USP Controlled Room Temperature]. Avoid excessive humidity.

Adverse event reports

Source: openFDA FAERS
34,216
FAERS reports mentioning this drug
as of 2026-09-25T03:42:24+00:00
A report count is not a risk measure. FAERS accepts voluntary and mandatory reports without establishing causation, and reporting is influenced by how widely a drug is used, how long it has been marketed, and media attention. FDA states that reports “do not prove that the drug caused the event”. Compare rates, not totals.

Attributed to this product's most-reported active ingredient: DILTIAZEM HYDROCHLORIDE. 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
Every National Drug Code package associated with this medication. The NDC is the identifier used for dispensing, billing and pharmacovigilance in the United States.
Package NDC Product NDC Labeler Description Marketing start
0187-0771-47 0187-0771 Bausch Health US LLC 100 TABLET, COATED in 1 BOTTLE (0187-0771-47) December 25, 2010
0187-0772-47 0187-0772 Bausch Health US LLC 100 TABLET, COATED in 1 BOTTLE (0187-0772-47) December 25, 2010
0187-0792-47 0187-0792 Bausch Health US LLC 100 TABLET, COATED in 1 BOTTLE (0187-0792-47) December 25, 2010
0187-0771 0187-0771 Bausch Health US LLC — December 25, 2010
0187-0772 0187-0772 Bausch Health US LLC — December 25, 2010
0187-0792 0187-0792 Bausch Health US LLC — December 25, 2010

Sources for this page

Every dataset that contributed a fact to 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.