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verapamil hydrochloride

Pharmaranks rates Verapamil Hydrochloride 3.5/5 for recall safety — an independent score from its FDA recall history and its manufacturer's record. Verapamil Hydrochloride is a calcium channel blocker used to treat Variant Angina Pectoris, Atrial Fibrillation, Atrial Flutter, Hypertension.

Calcium Channel Blocker · by Watson Labs

Generic of Verelan

70/100Limited · 1 source

Based on 1 source · Recall-safety score from FDA recall history — this product's own recalls and its manufacturer's record. Not an efficacy or quality rating. methodology →

Rated against independent regulatory sources·Last updated August 21, 2026·How we rate
Verified againstopenFDANIH DailyMedRxClass
Lower-cost optionsSave up to 94%
This medication~$5.71/30
Cheapest in class · amlodipine besylate~$0.33/30
See FDA-approved alternatives

Key facts

Active ingredient
Verapamil Hydrochloride
Form
Injectable, Tablet, Tablet, extended release
Strength
Verapamil Hydrochloride 120MG
Type
Prescription (Rx)
Brand or generic
Generic
Manufacturer
Watson Labs
Half-life
about 2.8 to 7.4 hours after a single dose, rising to about 4.5 to 12 hours with repeated dosing (how long it stays in your system)
What the pharmacy pays
~$5.71 for 30 — not your price
FDA application
ANDA070994

What is Verapamil Hydrochloride?

From the FDA label:Verapamil hydrochloride is a calcium ion influx inhibitor (slow-channel blocker or calcium ion antagonist) available for oral administration in film-coated tablets containing 40 mg, 80 mg, or 120 mg of verapamil hydrochloride. The structural formula of verapamil hydrochloride is: Benzeneacetonitrile, α-[3-[[2-(3,4-dimethoxyphenyl)ethyl]methylamino]propyl]-3,4-dimethoxy-α-(1-methylethyl) hydrochloride. Verapamil hydrochloride is an almost white, crystalline powder, practically free of odor, with a bitter taste. It is soluble in water, chloroform, and methanol. Verapamil hydrochloride is not chemically related to other cardioactive drugs. Inactive ingredients include anhydrous lactose, corn starch, hypromellose 2910, magnesium stearate, microcrystalline cellulose, polacrilin potassium, and polyethylene glycol 400. In addition the following coloring agents are used: FD&C Yellow No. 6 Aluminum Lake, hydroxypropyl cellulose and titanium dioxide (40 mg light peach); hydroxypropyl cellulose and titanium dioxide (80 mg white and 120 mg white).

How to use

Verapamil Hydrochloride is sold in more than one form (Injectable, Tablet and Tablet, extended release), and each is dosed differently. The instructions below come from the FDA label for application ANDA070994 — follow the label that came with the product you were actually prescribed.

The dose of verapamil must be individualized by titration. The usefulness and safety of dosages exceeding 480 mg/day have not been established; therefore, this daily dosage should not be exceeded. Since the half-life of verapamil increases during chronic dosing, maximum response may be delayed. Angina: Clinical trials show that the usual dose is 80 mg to 120 mg three times a day. However, 40 mg three times a day may be warranted in patients who may have an increased response to verapamil (e.g., decreased hepatic function, elderly, etc.). Upward titration should be based on therapeutic efficacy and safety evaluated approximately eight hours after dosing. Dosage may be increased at daily (e.g., patients with unstable angina) or weekly intervals until optimum clinical response is obtained. Arrhythmias: The dosage in digitalized patients with chronic atrial fibrillation (see PRECAUTIONS ) ranges from 240 to 320 mg/day in divided (three times a day or four times a day) doses. The dosage for prophylaxis of PSVT (non-digitalized patients) ranges from 240 to 480 mg/day in divided (three times a day or four times a day) doses. In general, maximum effects for any given dosage will be apparent during the first 48 hours of therapy. Essential hypertension: Dose should be individualized by titration. The usual initial monotherapy dose in clinical trials was 80 mg three times a day (240…

Side effects

Serious adverse reactions are uncommon when verapamil hydrochloride therapy is initiated with upward dose titration within the recommended single and total daily dose. See WARNINGS for discussion of heart failure, hypotension, elevated liver enzymes, AV block, and rapid ventricular response. Reversible (upon discontinuation of verapamil) non-obstructive, paralytic ileus has been infrequently reported in association with the use of verapamil. The following reactions to orally administered verapamil occurred at rates greater than 1% or occurred at lower rates but appeared clearly drug-related in clinical trials in 4,954 patients: Constipation 7.3% Dyspnea 1.4% Dizziness 3.3% Bradycardia (HR<50/min) 1.4% Nausea 2.7% AV block total (1°, 2°, 3°) 1.2 % 1.2% Hypotension 2.5% 2° and 3° 0.8% Headache 2.2% Rash 1.2% Edema 1.9% Flushing 0.6% CHF,Pulmonary edema 1.8% Fatigue 1.7% Elevated liver enzymes (see WARNINGS ) In clinical trials related to the control of ventricular response in digitalized patients who had atrial fibrillation or flutter, ventricular rates below 50 at rest occurred in 15% of patients and asymptomatic hypotension occurred in 5% of patients. The following reactions, reported in 1% or less of patients, occurred under conditions (open trials, marketing experience) where a causal relationship is uncertain; they are listed to alert the physician to a possible…

Warnings

Important safety information

Heart failure: Verapamil has a negative inotropic effect, which in most patients is compensated by its afterload reduction (decreased systemic vascular resistance) properties without a net impairment of ventricular performance. In clinical experience with 4,954 patients, 87 (1.8%) developed congestive heart failure or pulmonary edema. Verapamil should be avoided in patients with severe left ventricular dysfunction (e.g., ejection fraction less than 30%) or moderate to severe symptoms of cardiac failure and in patients with any degree of ventricular dysfunction if they are receiving a beta-adrenergic blocker (see PRECAUTIONS, Drug Interactions ). Patients with milder ventricular dysfunction should, if possible, be controlled with optimum doses of digitalis and/or diuretics before verapamil treatment. ( Note interactions with digoxin under PRECAUTIONS .) Hypotension: Occasionally, the pharmacologic action of verapamil may produce a decrease in blood pressure below normal levels, which may result in dizziness or symptomatic hypotension. The incidence of hypotension observed in 4,954 patients enrolled in clinical trials was 2.5%. In hypertensive patients, decreases in blood pressure below normal are unusual. Tilt-table testing (60 degrees) was not able to induce orthostatic hypotension. Elevated liver enzymes: Elevations of transaminases with and without concomitant elevations in alkaline phosphatase and bilirubin have been reported. Such elevations have sometimes been transient and may disappear even with continued verapamil treatment. Several cases of hepatocellular injury related to verapamil have been proven by rechallenge; half of these had clinical symptoms (malaise, fever, and/or right upper quadrant pain), in addition to elevation of SGOT, SGPT, and alkaline phosphatase. Periodic monitoring of liver function in patients receiving verapamil is therefore prudent. Accessory bypass tract (Wolff-Parkinson-White or Lown-Ganong-Levine): Some patients with paroxysmal and/or chronic atrial fibrillation or atrial flutter and a coexisting accessory AV pathway have developed increased antegrade conduction across the accessory pathway bypassing the AV node, producing a very rapid ventricular response or ventricular fibrillation after receiving intravenous verapamil (or digitalis). Although a risk of this occurring with oral verapamil has not been established, such patients receiving oral verapamil may be at risk and its use in these patients is contraindicated (see CONTRAINDICATIONS ). Treatment is usually DC-cardioversion. Cardioversion has been used safely and effectively after oral verapamil hydrochloride. Atrioventricular block: The effect of verapamil on AV conduction and the SA node may cause asymptomatic first-degree AV block and transient bradycardia, sometimes accompanied by nodal escape rhythms. PR-interval prolongation is correlated with verapamil plasma concentrations especially during the early titration phase of therapy. Higher degrees of AV block, however, were infrequently (0.8%) observed. Marked first-degree block or progressive development to second-or third-degree AV block requires a reduction in dosage or, in rare instances, discontinuation of verapamil hydrochloride and institution of appropriate therapy, depending on the clinical situation. Patients with hypertrophic cardiomyopathy (IHSS): In 120 patients with hypertrophic cardiomyopathy (most of them refractory or intolerant to propranolol) who received therapy with verapamil at doses up to 720 mg/day, a variety of serious adverse effects were seen. Three patients died in pulmonary edema; all had severe left ventricular outflow obstruction and a past history of left ventricular dysfunction. Eight other patients had pulmonary edema and/or severe hypotension; abnormally high (greater than 20 mm Hg) pulmonary wedge pressure and a marked left ventricular outflow obstruction were present in most of these patients. Concomitant administration of quinidine (see PRECAUTIONS, Drug interactions ) preceded the severe hypotension in 3 of the 8 patients (2 of whom developed pulmonary edema). Sinus bradycardia occurred in 11% of the patients, second-degree AV block in 4%, and sinus arrest in 2%. It must be appreciated that this group of patients had a serious disease with a high mortality rate. Most adverse effects responded well to dose reduction, and only rarely did verapamil use have to be discontinued.

Who should not take Verapamil Hydrochloride

Verapamil Hydrochloride Tablets are contraindicated in: 1. Severe left ventricular dysfunction (see WARNINGS ) 2. Hypotension (systolic pressure less than 90 mm Hg) or cardiogenic shock 3. Sick sinus syndrome (except in patients with a functioning artificial ventricular pacemaker) 4. Second-or-third-degree AV block (except in patients with a functioning artificial ventricular pacemaker) 5. Patients with atrial flutter or atrial fibrillation and an accessory bypass tract (e.g., Wolff-Parkinson-White, Lown-Ganong-Levine syndromes) (see WARNINGS ) 6. Patients with known hypersensitivity to verapamil hydrochloride.

Overdose — what happens if you take too much

Treat all verapamil overdoses as serious and maintain observation for at least 48 hours (especially the extended-release formulation), preferably under continuous hospital care. Delayed pharmacodynamic consequences may occur with the extended-release formulation. Verapamil is known to decrease gastrointestinal transit time. Treatment of overdosage should be supportive. Beta-adrenergic stimulation or parenteral administration of calcium solutions may increase calcium ion flux across the slow channel and have been used effectively in treatment of deliberate overdosage with verapamil. In a few reported cases, overdose with calcium channel blockers has been associated with hypotension and bradycardia, initially refractory to atropine but becoming more responsive to this treatment when the patients received large doses (close to 1 gram/hour for more than 24 hours) of calcium chloride. Verapamil cannot be removed by hemodialysis. Clinically significant hypotensive reactions or high degree AV block should be treated with vasopressor agents or cardiac pacing, respectively. Asystole should be handled by the usual measures, including cardiopulmonary resuscitation.

U.S. Poison Control: call or text 1-800-222-1222 (free, 24/7). In an emergency call 911. From the FDA label; not medical advice.

Interactions

Cytochrome inducers/inhibitors: In vitro metabolic studies indicate that verapamil is metabolized by cytochrome P450 CYP3A4, CYP1A2, CYP2C8, CYP2C9, and CYP2C18. Clinically significant interactions have been reported with inhibitors of CYP3A4 (e.g., erythromycin, ritonavir) causing elevation of plasma levels of verapamil while inducers of CYP3A4 (e.g., rifampin) have caused a lowering of plasma levels of verapamil. HMG-CoA reductase inhibitors: The use of HMG-CoA reductase inhibitors that are CYP3A4 substrates in combination with verapamil has been associated with reports of myopathy/rhabdomyolysis. Coadministration of multiple doses of 10 mg of verapamil with 80 mg simvastatin resulted in exposure to simvastatin 2.5-fold that following simvastatin alone. Limit the dose of simvastatin in patients on verapamil to 10 mg daily. Limit the daily dose of lovastatin to 40 mg. Lower starting and maintenance doses of other CYP3A4 substrates (e.g., atorvastatin) may be required as verapamil may increase the plasma concentration of these drugs. Aspirin: In a few reported cases, co-administration of verapamil with aspirin has led to increased bleeding times greater than observed with aspirin alone. Grapefruit juice: Grapefruit juice may increase plasma levels of verapamil. Alcohol: Verapamil may increase blood alcohol concentrations and prolong its effects. Beta-blockers: Controlled studies in small numbers of patients suggest that the concomitant use of verapamil hydrochloride and oral beta-adrenergic blocking agents may be beneficial in certain patients with chronic stable angina or hypertension, but available information is not sufficient to predict with confidence the effects of concurrent treatment in patients with left ventricular dysfunction or cardiac conduction abnormalities. Concomitant therapy with beta-adrenergic blockers and verapamil may result in additive negative effects on heart rate, atrioventricular conduction and/or cardiac contractility. In one study involving 15 patients treated with high doses of propranolol (median dose: 480 mg/day; range: 160 to 1,280 mg/day) for severe angina, with preserved left ventricular function (ejection fraction greater than 35%), the hemodynamic effects of additional therapy with verapamil hydrochloride were assessed using invasive methods. The addition of verapamil to high-dose beta-blockers induced modest negative inotropic and chronotropic effects that were not severe enough to limit short-term (48 hours) combination therapy in this study. These modest cardiodepressant effects persisted for greater than 6 but less than 30 hours after abrupt withdrawal of beta-blockers and were closely related to plasma levels of propranolol. The primary verapamil/beta-blocker interaction in this study appeared to be hemodynamic rather than electrophysiologic. In other studies, verapamil did not generally induce significant negative inotropic, chronotropic, or dromotropic effects in patients with preserved left ventricular function receiving low or moderate doses of propranolol (less than or equal to 320 mg/day); in some patients, however, combined therapy did produce such effects. Therefore, if combined therapy is used, close surveillance of clinical status should be carried out. Combined therapy should usually be avoided in patients with atrioventricular conduction abnormalities and those with depressed left ventricular function. Asymptomatic bradycardia (36 beats/min) with a wandering atrial pacemaker has been observed in a patient receiving concomitant timolol (a beta-adrenergic blocker) eyedrops and oral verapamil. A decrease in metoprolol and propranolol clearance has been observed when either drug is administered concomitantly with verapamil. A variable effect has been seen when verapamil and atenolol were given together. Digitalis: Clinical use of verapamil in digitalized patients has shown the combination to be well tolerated if digoxin doses are properly adjusted. However, chronic verapamil treatment can increase serum digoxin levels by 50% to 75% during the first week of therapy, and this can result in digitalis toxicity. In patients with hepatic cirrhosis, the influence of verapamil on digoxin kinetics is magnified. Verapamil may reduce total body clearance and extrarenal clearance of digitoxin by 27% and 29%, respectively. Maintenance and digitalization doses should be reduced when verapamil is administered, and the patient should be reassessed to avoid over- or under-digitalization. Whenever over-digitalization is suspected, the daily dose of digitalis should be reduced or temporarily discontinued. On discontinuation of verapamil hydrochloride use, the patient should be reassessed to avoid under-digitalization. Antihypertensive agents: Verapamil administered concomitantly with oral antihypertensive agents (e.g., vasodilators, angiotensin-converting enzyme inhibitors, diuretics, beta-blockers) will usually have an additive effect on lowering blood pressure. Patients receiving these combinations should be appropriately monitored. Concomitant use of agents that attenuate alpha-adrenergic function with verapamil may result in a reduction in blood pressure that is excessive in some patients. Such an effect was observed in one study following the concomitant administration of verapamil and prazosin. Antiarrhythmic agents: Disopyramide: Until data on possible interactions between verapamil and disopyramide are obtained, disopyramide should not be administered within 48 hours before or 24 hours after verapamil administration. Flecainide: A study in healthy volunteers showed that the concomitant administration of flecainide and verapamil may have additive effects on myocardial contractility, AV conduction, and repolarization. Concomitant therapy with flecainide and verapamil may result in additive negative inotropic effect and prolongation of atrioventricular conduction. Quinidine: In a small number of patients with hypertrophic cardiomyopathy (IHSS), concomitant use of verapamil and quinidine resulted in significant hypotension. Until further data are obtained, combined therapy of verapamil and quinidine in patients with hypertrophic cardiomyopathy should probably be avoided. The electrophysiologic effects of quinidine and verapamil on AV conduction were studied in 8 patients. Verapamil significantly counteracted the effects of quinidine on AV conduction. There has been a report of increased quinidine levels during verapamil therapy. Other agents: Nitrates: Verapamil has been given concomitantly with short- and long-acting nitrates without any undesirable drug interactions. The pharmacologic profile of both drugs and the clinical experience suggest beneficial interactions. Cimetidine: The interaction between cimetidine and chronically administered verapamil has not been studied. Variable results on clearance have been obtained in acute studies of healthy volunteers; clearance of verapamil was either reduced or unchanged. Lithium: Increased sensitivity to the effects of lithium (neurotoxicity) has been reported during concomitant verapamil-lithium therapy; lithium levels have been observed sometimes to increase, sometimes to decrease, and sometimes to be unchanged. Patients receiving both drugs must be monitored carefully. Carbamazepine: Verapamil therapy may increase carbamazepine concentrations during combined therapy. This may produce carbamazepine side effects such as diplopia, headache, ataxia, or dizziness. Rifampin: Therapy with rifampin may markedly reduce oral verapamil bioavailability. Phenobarbital: Phenobarbital therapy may increase verapamil clearance. Cyclosporine: Verapamil therapy may increase serum levels of cyclosporine. Theophylline: Verapamil may inhibit the clearance and increase the plasma levels of theophylline. Inhalation anesthetics: Animal experiments have shown that inhalation anesthetics depress cardiovascular activity by decreasing the inward movement of calcium ions. When used concomitantly, inhalation anesthetics and calcium antagonists, such as verapamil, should each be titrated carefully to avoid excessive cardiovascular depression. Neuromuscular blocking agents: Clinical data and animal studies suggest that verapamil may potentiate the activity of neuromuscular blocking agents (curare-like and depolarizing). It may be necessary to decrease the dose of verapamil and/or the dose of the neuromuscular blocking agent when the drugs are used concomitantly. Telithromycin: Hypotension and bradyarrhythmias have been observed in patients receiving concurrent telithromycin, an antibiotic in the ketolide class. Clonidine: Sinus bradycardia resulting in hospitalization and pacemaker insertion has been reported in association with the use of clonidine concurrently with verapamil. Monitor heart rate in patients receiving concomitant verapamil and clonidine.

How long does Verapamil Hydrochloride stay in your body?

The elimination half-life of verapamil hydrochloride is about 2.8 to 7.4 hours after a single dose, rising to about 4.5 to 12 hours with repeated dosing — the time it takes the body to clear about half of it. As a rule of thumb, a medicine is mostly gone after roughly 4 to 5 half-lives, though this varies from person to person with age and kidney or liver function. The oral label reports a mean ELIMINATION half-life of 2.8-7.4 hours in single-dose studies, which lengthens to 4.5-12 hours after repeated dosing (fewer than 10 consecutive doses given 6 hours apart), and says the half-life may increase further during dose titration - so the steady-state figure, not the single-dose one, is the realistic number for anyone actually taking it. The IV label describes two-phase elimination: a rapid distribution phase of about 4 minutes and a TERMINAL elimination phase of 2 to 5 hours; the terminal phase is the one quoted here. ACTIVE METABOLITE: verapamil is extensively metabolized by the liver, and one metabolite, norverapamil, is pharmacologically active - it has roughly 20% of verapamil's cardiovascular activity and can reach steady-state plasma concentrations about equal to verapamil's own. The label does not state norverapamil's half-life, so no number is given here. LIVER IMPAIRMENT: in hepatic insufficiency, metabolism is delayed and the elimination half-life is prolonged to about 14 to 16 hours, with plasma clearance falling to roughly 30% of normal. OLDER ADULTS: the label states aging may affect verapamil's pharmacokinetics and the elimination half-life may be prolonged in the elderly, without giving a figure. The label does not describe a kidney-impairment half-life change (only ~3-4% is excreted unchanged). Verapamil is not a prodrug. These are pharmacokinetic values from the label, not a drug-test detection window and not dosing guidance.

This is general information, not medical advice. It doesn’t tell you when a drug test would read negative (tests detect substances for different, often longer, windows) or when it’s safe to take another dose — ask your pharmacist or prescriber. Source: Verapamil Hydrochloride Tablets, Film Coated - FDA label (DailyMed), Clinical Pharmacology: Pharmacokinetics and metabolism.

Drug class

How this class works, per Calcium Channel Blockers - StatPearls - NCBI Bookshelf.

May treat (source: NIH RxClass)

See how Verapamil Hydrochloride ranks — best-rated calcium channel blocker for:

Dosage forms

Injectable, Tablet and Tablet, extended release

The forms currently marketed in the U.S., per the FDA National Drug Code Directory.

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Frequently asked questions

What does Verapamil Hydrochloride treat?
Verapamil Hydrochloride (Verapamil Hydrochloride) may be used to treat variant angina pectoris, atrial fibrillation, atrial flutter, hypertension, myocardial infarction, supraventricular tachycardia, based on NIH RxClass drug-classification data (conditions a drug may treat — not a verbatim copy of the FDA-approved label). This is general reference, not medical advice.
How does Verapamil Hydrochloride work?
Verapamil Hydrochloride is a calcium channel blocker. Calcium channel blockers slow the flow of calcium into the muscle cells of the heart and blood vessels. With less calcium, blood vessels relax and widen and the heart pumps with less force, which lowers blood pressure and eases chest pain.
How is Verapamil Hydrochloride rated?
pharmaranks gives Verapamil Hydrochloride a composite score of 3.5 out of 5, currently based on 1 weighted source (FDA regulatory recall-safety data weighted highest). See our methodology at /how-we-rate.
How much does Verapamil Hydrochloride cost?
Nobody can tell you what you will pay — your price is set by your insurer's formulary, your deductible and the pharmacy's markup, and none of those are published. What IS published is what the pharmacy paid to acquire it: about $5.71 for 30, per the CMS NADAC survey. Treat that as the floor, not the quote — ask the pharmacist for the cash price as well as your copay, because for cheap generics the cash price often wins. Pharmacies pay less for a same-class option, Amlodipine Besylate — about $0.33 on the same basis.
Is there a coupon or discount for Verapamil Hydrochloride?
pharmaranks is an independent ratings site, not a pharmacy — we don't issue coupons or sell Verapamil Hydrochloride. To pay less, Verapamil Hydrochloride is already a generic — usually the lowest-cost version — so the main levers are comparing cash prices between pharmacies and using a pharmacy discount-card service. Prices vary by pharmacy, insurance, and location, so always confirm at the counter. This is general reference, not medical or financial advice.
Who makes Verapamil Hydrochloride?
Verapamil Hydrochloride is marketed by Watson Labs. You can see Watson Labs's full profile, rating, and other products on pharmaranks.
Is Verapamil Hydrochloride a brand-name or generic drug?
Verapamil Hydrochloride is a generic medication; its active ingredient is Verapamil Hydrochloride. Generics contain the same active ingredient as the brand-name original and are usually lower cost.
Is Verapamil Hydrochloride available over the counter?
No. Verapamil Hydrochloride is a prescription (Rx) medication in the US — you need a prescription from a licensed clinician (in person or via telehealth); it isn't sold over the counter. For some conditions there are OTC alternatives — ask your pharmacist.
What forms does Verapamil Hydrochloride come in?
Verapamil Hydrochloride is currently marketed as injectable, tablet and tablet, extended release, per the FDA's National Drug Code Directory.
What class of drug is Verapamil Hydrochloride?
Verapamil Hydrochloride is classified as calcium channel blocker, per the FDA's Established Pharmacologic Class.
Is Verapamil Hydrochloride FDA-registered?
Verapamil Hydrochloride is on record with the U.S. FDA under application number ANDA070994. You can verify this on its official FDA label.
Has Verapamil Hydrochloride been recalled by the FDA?
Verapamil Hydrochloride has no FDA recalls recorded under its own application in the openFDA enforcement database. Its recall-safety score reflects its manufacturer's overall recall record. This is general reference, not medical advice — check the FDA recall database for the latest alerts.
Is Verapamil Hydrochloride safe?
There's no single safe-or-not verdict. pharmaranks gives Verapamil Hydrochloride a recall-safety score of 70/100, based on its FDA recall history (no recalls under its own FDA application) — not an efficacy or side-effect rating. Review its FDA-label side effects and warnings before use, and always consult a licensed professional.
What are the side effects of Verapamil Hydrochloride?
Verapamil Hydrochloride's side effects are taken directly from its FDA label. From the label: Serious adverse reactions are uncommon when verapamil hydrochloride therapy is initiated with upward dose titration within the recommended single and total daily dose. See WARNINGS for discussion of heart failure, hypotension, elevated liver enzymes, AV block, and rapid ventricular response.… Both common and serious reactions are documented in full on this page. This is general reference from the FDA, not medical advice — always consult a professional.

Clinical content sourced from the FDA label via openFDA (U.S. FDA). View the FDA label on DailyMed → Provided for general reference only — not medical advice. Always consult a licensed professional and the current prescribing information.

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verapamil hydrochloride

70/100