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Tikosyn

dofetilide · Capsule

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
Tikosyn
Generic name
dofetilide
Dosage form
Capsule
Route
Oral
Marketing category
NDA · NDA
Labeler
Pfizer Laboratories Div Pfizer Inc
Product type
Human Prescription Drug
DEA schedule
Not scheduled
Active ingredients
3
NDC product codes
3
Packages
6
Data completeness
77% of corroborating sources present

Active ingredients

Source: NDC Directory
Active ingredients and strengths as listed in the NDC Directory.
Ingredient Strength RxCUI Monograph
Dofetilide .125 mg/1 310003 View
Dofetilide .25 mg/1 310003 View
Dofetilide .5 mg/1 310003 View

Forms, strengths and routes

Source: NDC Directory
Dosage form
Capsule
Route of administration
Oral
Presentations
9

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
Antiarrhythmic [EPC] EPC All 48 members

Regulatory status

Source: Drugs@FDANDC Directory
Application number
020931
Application type
NDA · New Drug Application
Approval date
October 1, 1999
Sponsor
PFIZER
Products on application
3
Submissions recorded
10
Products approved under application 020931.
Product Trade name Form Strength Ingredient Status TE Flags
020931-001 TIKOSYN CAPSULE DOFETILIDE Prescription AB RLD
020931-002 TIKOSYN CAPSULE DOFETILIDE Prescription AB RLD
020931-003 TIKOSYN CAPSULE DOFETILIDE 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 020931.
Type No. Action Status Date Review
Supplement 17 Labeling Approved August 8, 2019 Standard
Supplement 13 REMS Approved March 8, 2016 N/A
Supplement 12 Labeling Approved March 8, 2016 Standard
Supplement 10 REMS Approved November 25, 2015 N/A
Supplement 9 REMS Approved July 8, 2015 N/A
Supplement 7 Labeling Approved December 6, 2013 Standard
Supplement 3 REMS Approved July 11, 2011 N/A
Supplement 2 Manufacturing (CMC) Approved October 18, 2007 Standard
Supplement 1 Labeling Approved October 22, 2004 Standard
Original application 1 Type 1 - New Molecular Entity Approved October 1, 1999 Standard

Review documents

  • 0 · Supplement · September 24, 2021
  • 0 · Supplement · August 12, 2019
  • 0 · Supplement · August 9, 2019
  • 0 · Supplement · August 9, 2019
  • 0 · Original application · May 22, 2018
  • 0 · Supplement · December 6, 2017
  • 0 · Supplement · March 14, 2016
  • 0 · Supplement · March 14, 2016
  • 0 · Supplement · March 10, 2016
  • 0 · Supplement · March 10, 2016
  • 0 · Supplement · November 27, 2015
  • 0 · Supplement · July 15, 2015
  • 0 · Supplement · December 12, 2013
  • 0 · Supplement · December 9, 2013
  • 0 · Original application · August 2, 2011
  • 0 · Supplement · July 13, 2011
  • 0 · Supplement · October 22, 2004
  • 0 · Original application · April 4, 2002
  • 0 · Original application · October 4, 1999
  • 0 · Original application · October 4, 1999

Prescribing information

Source: openFDA Drug Labeling

Reproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20260421). This is the manufacturer's labelling text, not a summary and not advice.

HUMAN PRESCRIPTION DRUG · 20260421

Boxed Warning

openFDA Drug Labeling

To minimize the risk of induced arrhythmia, patients initiated or re-initiated on TIKOSYN should be placed for a minimum of 3 days in a facility that can provide calculations of creatinine clearance, continuous electrocardiographic monitoring, and cardiac resuscitation. For detailed instructions regarding dose selection, see DOSAGE AND ADMINISTRATION .

Indications and Usage

openFDA Drug Labeling

INDICATIONS AND USAGE Maintenance of Normal Sinus Rhythm (Delay in AF/AFl Recurrence) TIKOSYN is indicated for the maintenance of normal sinus rhythm (delay in time to recurrence of atrial fibrillation/atrial flutter [AF/AFl]) in patients with atrial fibrillation/atrial flutter of greater than one week duration who have been converted to normal sinus rhythm. Because TIKOSYN can cause life threatening ventricular arrhythmias, it should be reserved for patients in whom atrial fibrillation/atrial flutter is highly symptomatic. In general, antiarrhythmic therapy for atrial fibrillation/atrial flutter aims to prolong the time in normal sinus rhythm. Recurrence is expected in some patients (see CLINICAL STUDIES ). Conversion of Atrial Fibrillation/Flutter TIKOSYN is indicated for the conversion of atrial fibrillation and atrial flutter to normal sinus rhythm. TIKOSYN has not been shown to be effective in patients with paroxysmal atrial fibrillation.

Dosage and Administration

openFDA Drug Labeling

DOSAGE AND ADMINISTRATION • Therapy with TIKOSYN must be initiated (and, if necessary, re-initiated) in a setting that provides continuous electrocardiographic (ECG) monitoring and in the presence of personnel trained in the management of serious ventricular arrhythmias. Patients should continue to be monitored in this way for a minimum of three days. Additionally, patients should not be discharged within 12 hours of electrical or pharmacological conversion to normal sinus rhythm. • The dose of TIKOSYN must be individualized according to calculated creatinine clearance and QTc. (QT interval should be used if the heart rate is 60 mL/min 500 mcg twice daily 40 to 60 mL/min 250 mcg twice daily 20 to <40 mL/min 125 mcg twice daily <20 mL/min Tikosyn is contraindicated in these patients Step 4. Administer the adjusted TIKOSYN dose and begin continuous ECG monitoring. Step 5. At 2–3 hours after administering the first dose of Tikosyn, determine the QTc or QT (if heart rate is less than 60 beats per minute). If the QTc or QT has increased by greater than 15% compared to the baseline established in Step 1 OR if the QTc or QT is greater than 500 msec (550 msec in patients with ventricular conduction abnormalities), subsequent dosing should be adjusted as follows: If the Starting Dose Based on Creatinine Clearance is: Then the Adjusted Dose (for QTc or QT Prolongation) is: 500 mcg twice daily 250 mcg twice daily 250 mcg twice daily 125 mcg twice daily 125 mcg twice daily 125 mcg once a day Step 6. At 2–3 hours after each subsequent dose of Tikosyn, determine the QTc or QT (if heart rate is less than 60 beats per minute) (for in-hospital doses 2–5). No further down titration of Tikosyn based on QTc or QT is recommended. NOTE: If at any time after the second dose of Tikosyn is given the QTc or QT is greater than 500 msec (550 msec in patients with ventricular conduction abnormalities), Tikosyn should be discontinued. Step 7. Patients are to be continuously monitored by ECG for a minimum of three days, or for a minimum of 12 hours after electrical or pharmacological conversion to normal sinus rhythm, whichever is greater. The steps described above are summarized in the following diagram: flow chart Maintenance of TIKOSYN Therapy Renal function and QTc or QT (if heart rate is less than 60 beats per minute) should be re-evaluated every three months or as medically warranted. If QTc or QT exceeds 500 milliseconds (550 msec in patients with ventricular conduction abnormalities), TIKOSYN therapy should be discontinued and patients should be carefully monitored until QTc or QT returns to baseline levels. If renal function deteriorates, adjust dose as described in Initiation of TIKOSYN Therapy, Step 3. Special Considerations Consideration of a Dose Lower than that Determined by the Algorithm: The dosing algorithm shown above should be used to determine the individualized dose of TIKOSYN. In clinical trials (see CLINICAL STUDIES ), the highest dose of 500 mcg BID of TIKOSYN as modified by the dosing algorithm led to greater effectiveness than lower doses of 125 or 250 mcg BID as modified by the dosing algorithm. The risk of Torsade de Pointes, however, is related to dose as well as to patient characteristics (see WARNINGS ). Physicians, in consultation with their patients, may therefore in some cases choose doses lower than determined by the algorithm. It is critically important that if at any time this lower dose is increased, the patient needs to be rehospitalized for three days. Previous toleration of higher doses does not eliminate the need for rehospitalization. The maximum recommended dose in patients with a calculated creatinine clearance greater than 60 mL/min is 500 mcg BID; doses greater than 500 mcg BID have been associated with an increased incidence of Torsade de Pointes. A patient who misses a dose should NOT double the next dose. The next dose should be taken at the usual time. Cardioversion: If patients do not convert to normal sin …

Contraindications

openFDA Drug Labeling

CONTRAINDICATIONS TIKOSYN is contraindicated in patients with congenital or acquired long QT syndromes. TIKOSYN should not be used in patients with a baseline QT interval or QTc >440 msec (500 msec in patients with ventricular conduction abnormalities). TIKOSYN is also contraindicated in patients with severe renal impairment (calculated creatinine clearance <20 mL/min). The concomitant use of verapamil or the cation transport system inhibitors cimetidine, trimethoprim (alone or in combination with sulfamethoxazole), or ketoconazole with TIKOSYN is contraindicated (see WARNINGS and PRECAUTIONS, Drug-Drug Interactions ), as each of these drugs cause a substantial increase in dofetilide plasma concentrations. In addition, other known inhibitors of the renal cation transport system such as prochlorperazine, dolutegravir and megestrol should not be used in patients on TIKOSYN. The concomitant use of hydrochlorothiazide (alone or in combinations such as with triamterene) with TIKOSYN is contraindicated (see PRECAUTIONS, Drug-Drug Interactions ) because this has been shown to significantly increase dofetilide plasma concentrations and QT interval prolongation. TIKOSYN is also contraindicated in patients with a known hypersensitivity to the drug.

WARNINGS Ventricular Arrhythmia: TIKOSYN (dofetilide) can cause serious ventricular arrhythmias, primarily Torsade de Pointes (TdP) type ventricular tachycardia, a polymorphic ventricular tachycardia associated with QT interval prolongation. QT interval prolongation is directly related to dofetilide plasma concentration. Factors such as reduced creatinine clearance or certain dofetilide drug interactions will increase dofetilide plasma concentration. The risk of TdP can be reduced by controlling the plasma concentration through adjustment of the initial dofetilide dose according to creatinine clearance and by monitoring the ECG for excessive increases in the QT interval. Treatment with dofetilide must therefore be started only in patients placed for a minimum of three days in a facility that can provide electrocardiographic monitoring and in the presence of personnel trained in the management of serious ventricular arrhythmias. Calculation of the creatinine clearance for all patients must precede administration of the first dose of dofetilide. For detailed instructions regarding dose selection, see DOSAGE AND ADMINISTRATION . The risk of dofetilide induced ventricular arrhythmia was assessed in three ways in clinical studies: 1) by description of the QT interval and its relation to the dose and plasma concentration of dofetilide; 2) by observing the frequency of TdP in TIKOSYN-treated patients according to dose; 3) by observing the overall mortality rate in patients with atrial fibrillation and in patients with structural heart disease. Relation of QT Interval to Dose: The QT interval increases linearly with increasing TIKOSYN dose (see Figures 1 and 2 in CLINICAL PHARMACOLOGY and Dose-Response and Concentration Response for Increase in QT Interval ). Frequency of Torsade de Pointes: In the supraventricular arrhythmia population (patients with AF and other supraventricular arrhythmias), the overall incidence of Torsade de Pointes was 0.8%. The frequency of TdP by dose is shown in Table 4. There were no cases of TdP on placebo. Table 4: Summary of Torsade de Pointes in Patients Randomized to Dofetilide by Dose; Patients with Supraventricular Arrhythmias TIKOSYN Dose 250–500 mcg BID >500 mcg BID All Doses Number of Patients 217 388 703 38 1346 Torsade de Pointes 0 1 (0.3%) 6 (0.9%) 4 (10.5%) 11 (0.8%) As shown in Table 5, the rate of TdP was reduced when patients were dosed according to their renal function (see CLINICAL PHARMACOLOGY, Pharmacokinetics in Special Populations, Renal Impairment and DOSAGE AND ADMINISTRATION ). Table 5: Incidence of Torsade de Pointes Before and After Introduction of Dosing According to Renal Function Population: Total Before After n/N % n/N % n/N % Supraventricular Arrhythmias 11/1346 (0.8%) 6/193 (3.1%) 5/1153 (0.4%) DIAMOND CHF 25/762 (3.3%) 7/148 (4.7%) 18/614 (2.9%) DIAMOND MI 7/749 (0.9%) 3/101 (3.0%) 4/648 (0.6%) DIAMOND AF 4/249 (1.6%) 0/43 (0%) 4/206 (1.9%) The majority of the episodes of TdP occurred within the first three days of TIKOSYN therapy (10/11 events in the studies of patients with supraventricular arrhythmias; 19/25 and 4/7 events in DIAMOND CHF and DIAMOND MI, respectively; 2/4 events in the DIAMOND AF subpopulation). Mortality: In a pooled survival analysis of patients in the supraventricular arrhythmia population (low prevalence of structural heart disease), deaths occurred in 0.9% (12/1346) of patients receiving TIKOSYN and 0.4% (3/677) in the placebo group. Adjusted for duration of therapy, primary diagnosis, age, gender, and prevalence of structural heart disease, the point estimate of the hazard ratio for the pooled studies (TIKOSYN/placebo) was 1.1 (95% CI: 0.3, 4.3). The DIAMOND CHF and MI trials examined mortality in patients with structural heart disease (ejection fraction ≤35%). In these large, double-blind studies, deaths occurred in 36% (541/1511) of TIKOSYN patients and 37% (560/1517) of placebo patients. In an analysis of 506 DIAMOND patients with atrial fibrilla …

Adverse Reactions

openFDA Drug Labeling

ADVERSE REACTIONS The TIKOSYN clinical program involved approximately 8,600 patients in 130 clinical studies of normal volunteers and patients with supraventricular and ventricular arrhythmias. TIKOSYN was administered to 5,194 patients, including two large, placebo-controlled mortality trials (DIAMOND CHF and DIAMOND MI) in which 1,511 patients received TIKOSYN for up to three years. In the following section, adverse reaction data for cardiac arrhythmias and non-cardiac adverse reactions are presented separately for patients included in the supraventricular arrhythmia development program and for patients included in the DIAMOND CHF and MI mortality trials (see CLINICAL STUDIES, Safety in Patients with Structural Heart Disease, DIAMOND Studies , for a description of these trials). In studies of patients with supraventricular arrhythmias, a total of 1,346 and 677 patients were exposed to TIKOSYN and placebo for 551 and 207 patient years, respectively. A total of 8.7% of patients in the dofetilide groups were discontinued from clinical trials due to adverse events compared to 8.0% in the placebo groups. The most frequent reason for discontinuation (>1%) was ventricular tachycardia (2.0% on dofetilide vs. 1.3% on placebo). The most frequent adverse events were headache, chest pain, and dizziness. Serious Arrhythmias and Conduction Disturbances: Torsade de Pointes is the only arrhythmia that showed a dose-response relationship to TIKOSYN treatment. It did not occur in placebo treated patients. The incidence of Torsade de Pointes in patients with supraventricular arrhythmias was 0.8% (11/1346) (see WARNINGS ). The incidence of Torsade de Pointes in patients who were dosed according to the recommended dosing regimen (see DOSAGE AND ADMINISTRATION ) was 0.8% (4/525). Table 6 shows the frequency by randomized dose of serious arrhythmias and conduction disturbances reported as adverse events in patients with supraventricular arrhythmias. Table 6: Incidence of Serious Arrhythmias and Conduction Disturbances in Patients with Supraventricular Arrhythmias TIKOSYN Dose Placebo Arrhythmia event: 250–500 mcg BID N=703 >500 mcg BID N=38 N=677 Ventricular arrhythmias Patients with more than one arrhythmia are counted only once in this category. Ventricular arrhythmias and ventricular tachycardia include all cases of Torsade de Pointes. 3.7% 2.6% 3.4% 15.8% 2.7% Ventricular fibrillation 0 0.3% 0.4% 2.6% 0.1% Ventricular tachycardia 3.7% 2.6% 3.3% 13.2% 2.5% Torsade de Pointes 0 0.3% 0.9% 10.5% 0 Various forms of block AV block 0.9% 1.5% 0.4% 0 0.3% Bundle branch block 0 0.5% 0.1% 0 0.1% Heart block 0 0.5% 0.1% 0 0.1% In the DIAMOND trials, a total of 1,511 patients were exposed to TIKOSYN for 1757 patient years. The incidence of Torsade de Pointes was 3.3% in CHF patients and 0.9% in patients with a recent MI. Table 7 shows the incidence of serious arrhythmias and conduction disturbances reported as adverse events in the DIAMOND subpopulation that had AF at entry to these trials. Table 7: Incidence of Serious Arrhythmias and Conduction Disturbances in Patients with AF at Entry to the DIAMOND Studies TIKOSYN Placebo N=249 N=257 Ventricular arrhythmias Patients with more than one arrhythmia are counted only once in this category. Ventricular arrhythmias and ventricular tachycardia include all cases of Torsade de Pointes. 14.5% 13.6% Ventricular fibrillation 4.8% 3.1% Ventricular tachycardia 12.4% 11.3% Torsade de Pointes 1.6% 0 Various forms of block AV block 0.8% 2.7% (Left) bundle branch block 0 0.4% Heart block 1.2% 0.8% Other Adverse Reactions: Table 8 presents other adverse events reported with a frequency of >2% on TIKOSYN and reported numerically more frequently on TIKOSYN than on placebo in the studies of patients with supraventricular arrhythmias. Table 8: Frequency of Adverse Events Occurring at >2% on TIKOSYN, and Numerically More Frequently on TIKOSYN than Placebo in Patients with Supraventricular Arrhythmias TIKOSYN Placebo Adverse Ev …

Mechanism of Action

openFDA Drug Labeling

Mechanism of Action Dofetilide shows Vaughan Williams Class III antiarrhythmic activity. The mechanism of action is blockade of the cardiac ion channel carrying the rapid component of the delayed rectifier potassium current, I Kr . At concentrations covering several orders of magnitude, dofetilide blocks only I Kr with no relevant block of the other repolarizing potassium currents (e.g., I Ks , I K1 ). At clinically relevant concentrations, dofetilide has no effect on sodium channels (associated with Class I effect), adrenergic alpha-receptors, or adrenergic beta-receptors.

Description

openFDA Drug Labeling

DESCRIPTION TIKOSYN ® (dofetilide) is an antiarrhythmic drug with Class III (cardiac action potential duration prolonging) properties. Its empirical formula is C 19 H 27 N 3 O 5 S 2 and it has a molecular weight of 441.6. The structural formula is The chemical name for dofetilide is: N -[4-[2-[methyl[2-[4-[(methylsulfonyl)amino]phenoxy]ethyl]amino]ethyl]phenyl]-methanesulfonamide. Dofetilide is a white to off-white powder. It is very slightly soluble in water and propan-2-ol and is soluble in 0.1M aqueous sodium hydroxide, acetone, and aqueous 0.1M hydrochloric acid. TIKOSYN capsules contain the following inactive ingredients: microcrystalline cellulose, corn starch, colloidal silicon dioxide and magnesium stearate. TIKOSYN is supplied for oral administration in three dosage strengths: 125 mcg (0.125 mg) orange and white capsules, 250 mcg (0.25 mg) peach capsules, and 500 mcg (0.5 mg) peach and white capsules. Chemical Structure

OVERDOSAGE There is no known antidote to TIKOSYN; treatment of overdose should therefore be symptomatic and supportive. The most prominent manifestation of overdosage is likely to be excessive prolongation of the QT interval. In cases of overdose, cardiac monitoring should be initiated. Charcoal slurry may be given soon after overdosing but has been useful only when given within 15 minutes of TIKOSYN administration. Treatment of Torsade de Pointes or overdose may include administration of isoproterenol infusion, with or without cardiac pacing. Administration of intravenous magnesium sulfate may be effective in the management of Torsade de Pointes. Close medical monitoring and supervision should continue until the QT interval returns to normal levels. Isoproterenol infusion into anesthetized dogs with cardiac pacing rapidly attenuates the dofetilide-induced prolongation of atrial and ventricular effective refractory periods in a dose-dependent manner. Magnesium sulfate, administered prophylactically either intravenously or orally in a dog model, was effective in the prevention of dofetilide-induced Torsade de Pointes ventricular tachycardia. Similarly, in man, intravenous magnesium sulfate may terminate Torsade de Pointes, irrespective of cause. TIKOSYN overdose was rare in clinical studies; there were two reported cases of TIKOSYN overdose in the oral clinical program. One patient received very high multiples of the recommended dose (28 capsules), was treated with gastric aspiration 30 minutes later, and experienced no events. One patient inadvertently received two 500 mcg doses one hour apart and experienced ventricular fibrillation and cardiac arrest 2 hours after the second dose. In the supraventricular arrhythmia population, only 38 patients received doses greater than 500 mcg BID, all of whom received 750 mcg BID irrespective of creatinine clearance. In this very small patient population, the incidence of Torsade de Pointes was 10.5% (4/38 patients), and the incidence of new ventricular fibrillation was 2.6% (1/38 patients).

How Supplied / Storage and Handling

openFDA Drug Labeling

HOW SUPPLIED TIKOSYN ® 125 mcg (0.125 mg) capsules are supplied as No. 4 capsules with a light orange cap and white body, printed with TKN 125 PFIZER, and are available in: TIKOSYN ® 250 mcg (0.25 mg) capsules are supplied as No. 4 capsules, peach cap and body, printed with TKN 250 PFIZER, and are available in: TIKOSYN ® 500 mcg (0.5 mg) capsules are supplied as No. 2 capsules, peach cap and white body, printed with TKN 500 PFIZER, and are available in: 125 mcg (0.125 mg) 250 mcg (0.25 mg) 500 mcg (0.5 mg) Obverse TKN 125 TKN 250 TKN 500 Reverse PFIZER PFIZER PFIZER Bottle of 14 0069-5800-61 0069-5810-61 0069-5820-61 Bottle of 60 0069-5800-60 0069-5810-60 0069-5820-60 Unit dose / 40 0069-5800-43 0069-5810-43 0069-5820-43 Store at controlled room temperature, 15° to 30°C (59° to 86°F). PROTECT FROM MOISTURE AND HUMIDITY. Dispense in tight containers (USP).

Adverse event reports

Source: openFDA FAERS
10,449
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: DOFETILIDE. 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
Drug recall enforcement reports associated with this product.
Classification Reported Firm Reason Status
Class II December 17, 2014 Pfizer Inc. Failed Tablet/Capsule Specifications: Product being recalled due to the potential presence of cracked or broken capsules. Terminated

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
0069-5800-60 0069-5800 Pfizer Laboratories Div Pfizer Inc 60 CAPSULE in 1 BOTTLE (0069-5800-60) October 1, 1999
0069-5800-61 0069-5800 Pfizer Laboratories Div Pfizer Inc 14 CAPSULE in 1 BOTTLE (0069-5800-61) October 1, 1999
0069-5810-60 0069-5810 Pfizer Laboratories Div Pfizer Inc 60 CAPSULE in 1 BOTTLE (0069-5810-60) October 1, 1999
0069-5810-61 0069-5810 Pfizer Laboratories Div Pfizer Inc 14 CAPSULE in 1 BOTTLE (0069-5810-61) October 1, 1999
0069-5820-60 0069-5820 Pfizer Laboratories Div Pfizer Inc 60 CAPSULE in 1 BOTTLE (0069-5820-60) October 1, 1999
0069-5820-61 0069-5820 Pfizer Laboratories Div Pfizer Inc 14 CAPSULE in 1 BOTTLE (0069-5820-61) October 1, 1999
0069-5800 0069-5800 Pfizer Laboratories Div Pfizer Inc — October 1, 1999
0069-5810 0069-5810 Pfizer Laboratories Div Pfizer Inc — October 1, 1999
0069-5820 0069-5820 Pfizer Laboratories Div Pfizer Inc — October 1, 1999

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
Enforcement FDA Recall records

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