Nifedipine 30 mg Tablet, Extended Release, 60-count
🆔 Identity & classification
Where does this data come from?
🏷️ RxNorm drug class
This medicine belongs to the Dihydropyridine Calcium Channel Blocker class.
Where does this data come from?
🏭 Manufacturer & labeler
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🩺 Clinical
Nifedipine is used to treat high blood pressure and to control angina (chest pain). Nifedipine is in a class of medications called calcium-channel blockers. It lowers blood pressure by relaxing the blood vessels so the heart does not have to pump as hard. It controls chest pain by increasing the supply of blood and oxygen to the heart. High blood pressure is a common condition and when not treated, can cause damage to the brain, heart, blood vessels, kidneys and other parts of the body. Damage to these organs may cause heart disease, a heart attack, heart failure, stroke, kidney failure, loss...
Read the full MedlinePlus article ↗- Nifedipine relaxes and widens your blood vessels. If you have high blood pressure, that widening makes it easier for your heart to pump, which brings your numbers down and lowers y...
- What exactly is nifedipine supposed to do for me?
- It depends on your form. If you're taking the extended-release tablet, a high-fat meal can noticeably increase the amount of drug that gets into your bloodstream. That doesn't mean...
- Does it matter if I take nifedipine with food?
Patient education
Supplement & herbal interactions
Some supplements/herbs that may interact with Nifedipine — tap one for details:
Nifedipine may be associated with lower levels of 2 nutrients — worth a chat with your pharmacist, not a cause for alarm.
Where does this data come from?
Ask a licensed pharmacist directly — free, answered by our team.
💊 What it looks like
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🧪 Inactive Ingredients / Excipients
Inactive ingredients, also called excipients, are components of the drug product other than the active ingredient. They may include fillers, dyes, coatings, preservatives, flavors, or other formulation ingredients.
💡 Tap an ingredient (hover on desktop) to see what it is and why it’s used.
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UNII 7Z8S9VYZ4B
Ethylcellulose is a plant-derived thickener and film-former made by chemically modifying cellulose. It's used as a binder to hold tablet ingredients together, a coating to control how quickly medicine is released, or a thickener in liquid formulations.
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UNII 1K09F3G675
Ferric oxide red is an inorganic iron compound used as a colorant in medicines. It gives tablets, capsules, or other dosage forms a red or reddish tint for identification and appearance.
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UNII EX438O2MRT
Ferric oxide yellow is a naturally occurring iron compound used as a colorant in medications. It gives tablets, capsules, and other forms a yellow or golden hue for identification and appearance.
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UNII XM0M87F357
A dark iron oxide compound that gives medicines their black or dark color. It's used as a colorant in tablets and capsules to help identify the product and make it visually distinctive.
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UNII S38J6RZN16
Hydroxyethyl cellulose is a plant-derived thickening agent made from cellulose. In medicines, it acts as a binder to hold ingredients together, a thickener to adjust product texture, and a film-former to create smooth coatings on tablets.
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UNII 3NXW29V3WO
Hypromellose is a plant-based thickener made from cellulose. It's used in medicines as a binder to hold ingredients together, a coating for tablets, and a thickener for liquids.
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UNII EWQ57Q8I5X
Lactose monohydrate is a natural sugar derived from milk. It serves as a filler and binder in tablets and capsules, helping create the proper size, texture, and consistency of the medicine.
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UNII 1DI56QDM62
A natural fatty substance from soybeans that helps mix oil and water-based ingredients together. It acts as an emulsifier and lubricant in medicines to improve texture and help the product break down properly in your body.
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UNII 70097M6I30
Magnesium stearate is a salt made from magnesium and stearic acid, a fatty substance. It's used in tablets and capsules as a lubricant and glidant to help ingredients flow smoothly during manufacturing and prevent sticking.
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UNII 74G4R6TH13
A synthetic polymer made by combining two plastic-like chemicals. It forms a coating on tablets or capsules that dissolves at a specific point in the digestive tract, controlling where and when the medicine releases.
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UNII 5KY68S2577
A synthetic plastic polymer made from two chemical compounds combined in a specific ratio. It forms a coating on tablets and capsules to control how and where the medication dissolves in the digestive tract.
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UNII OP1R32D61U
Microcrystalline cellulose is a purified form of cellulose, a natural fiber from plant sources. It acts as a binder and filler in tablets and capsules, helping hold ingredients together and give the medicine its shape and size.
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UNII 4R4HFI6D95
Polyethylene glycol 4000 is a synthetic polymer derived from petroleum. It serves as a binder, filler, and lubricant in solid dosage forms, and helps control how quickly the medicine dissolves.
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UNII 532B59J990
Polyvinyl alcohol is a synthetic polymer made from plant-derived materials. It's used as a binder to hold ingredients together, a film-former in coatings, and a thickener in liquid formulations.
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UNII 368GB5141J
A detergent and foaming agent derived from coconut or palm oil. In medications, it helps break down and mix oil and water-based ingredients, aids in tablet disintegration, and improves how the drug dissolves and spreads in the mouth or digestive system.
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UNII 7SEV7J4R1U
A powder made from a naturally occurring mineral. In medicines, talc works as a glidant and anti-caking agent, helping tablets and capsules flow smoothly during manufacturing and preventing clumping.
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UNII 15FIX9V2JP
Titanium dioxide is a bright white mineral powder commonly used as a colorant and opacifying agent. It makes pills and tablets white or lighter in color and helps make coatings non-transparent.
17 inactive ingredients listed in the exact product block matched to this NDC.
Where does this data come from?
ingredient classCode="IACT" elements from the exact product block matched by this NDC. Label-section narrative from DailyMed / the openFDA label index is shown separately when available.Inactive ingredient FAQ
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💲 Pricing
A drug doesn't have one price. Each row is a different public payment system, and none is what you'd pay at the counter — that depends on your insurance. The ⓘ on each row explains what it measures.
| Price system | Per each | Per package |
|---|---|---|
| Retail pharmacies payNADAC · weekly | Not in the retail survey — common for institutional, discontinued, or low-volume packs. | |
| Medicaid paysCMS SDUD · 12 mo | No recent Medicaid claims on file for this NDC — rare and low-volume NDCs are suppressed in the public data. | |
| Medicare drug plans payPart D · Q2 2026 | $0.1954 | $11.72 / 60 tablets |
Where does this data come from?
🔁 Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| Nifedipine 30 mg 68682-0105-10 | Oceanside | 100 tablets | $0.100 | AB1 | FDA listed | — |
| Nifedipine 30 mg 50742-0620-01 | Ingenus | 100 tablets | $0.124 | AB1 | Availability likely | — |
| Nifedipine 30 mg 59651-0295-01 | Aurobindo | 100 tablets | $0.124 | AB1 | Availability likely | — |
| nifedipine 30 mg 68682-0108-10 | Oceanside | 100 tablets | $0.133 | AB2 | FDA listed | — |
| Nifedipine 30 mg 00904-7208-06 | Major | 1 tablet | $0.135 | AB2 | Availability likely | — |
| Nifedipine 30 mg 24979-0011-12 | Upsher-Smith | 300 tablets | $0.135 | AB2 | Availability likely | — |
| Nifedipine ER 30 mg 50268-0597-15 | AvPAK | 1 tablet | $0.135 | AB2 | Availability likely | — |
| Nifedipine 30 mg 50742-0260-01 | Ingenus | 100 tablets | $0.135 | AB2 | Availability likely | — |
| Nifedipine 30 mg 62135-0521-90 | Chartwell | 90 tablets | $0.135 | AB2 | Availability likely | — |
| Nifedipine 30 mg 62175-0260-37 | Lannett | 100 tablets | $0.135 | AB2 | Availability likely | — |
| Nifedipine 30 mg 67877-0757-01 | Ascend | 100 tablets | $0.135 | AB2 | Availability likely | — |
| Nifedipine 30 mg 68084-0597-01 | American | 1 tablet | $0.135 | AB2 | Availability likely | — |
| Procardia XL 30 mg 00069-2650-41 | Pfizer | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 46708-0732-31 | Alembic | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 50090-6203-00 | A-S | 30 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 50090-6732-00 | A-S | 30 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 51655-0593-26 | Northwind | 90 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 55154-4690-00 | Cardinal | 1 tablet | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 55289-0798-07 | PD-Rx | 7 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 60429-0047-01 | Golden | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 62332-0732-31 | Alembic | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 63187-0875-30 | Proficient | 30 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 67046-0260-03 | Coupler | 30 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 67296-2157-01 | Redpharm | 10 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 68071-2619-03 | NuCare | 30 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 68382-0685-01 | Zydus | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 68788-7642-01 | Preferred | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 70518-2679-00 | REMEDYREPACK | 30 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 70771-1190-00 | Zydus | 1000 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 71205-0963-00 | Proficient | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mgthis 71335-1550-04 | Bryant | 60 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 71610-0290-60 | Aphena | 90 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 72162-1277-01 | Bryant | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 72789-0484-01 | PD-Rx | 100 tablets | — | AB2 | FDA listed | — |
| Nifedipine 30 mg 71610-0144-60 | Aphena | 90 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 50090-5284-00 | A-S | 30 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 71610-0689-30 | Aphena | 30 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 68382-0688-01 | Zydus | 100 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 67296-2170-01 | Redpharm | 14 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 72162-1887-02 | Bryant | 300 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 72162-2534-01 | Bryant | 100 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 70771-1365-00 | Zydus | 1000 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 51407-0622-01 | Golden | 100 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 63629-9109-01 | Bryant | 300 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 71610-0841-60 | Aphena | 90 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 68071-2838-03 | NuCare | 30 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 51655-0798-26 | Northwind | 90 tablets | — | AB1 | FDA listed | — |
| Nifedipine 30 mg 51655-0990-26 | Northwind | 90 tablets | — | AB2 | FDA listed | — |
Where does this data come from?
⏳ Availability & generic status
This product is an FDA-approved generic. Other versions of the same drug are listed under Therapeutic equivalents, least expensive first.
Where does this data come from?
📊 Medicare Part D spend CMS · PART D · 2026 (Q1)
📦 Packaging — all sizes for this product
| Package NDC | Description | Marketing start | Status |
|---|---|---|---|
| 71335-1550-01 | 30 TABLET, EXTENDED RELEASE in 1 BOTTLE (71335-1550-1) | 2020-12-04 | Active |
| 71335-1550-02 | 100 TABLET, EXTENDED RELEASE in 1 BOTTLE (71335-1550-2) | 2022-10-13 | Active |
| 71335-1550-03 | 90 TABLET, EXTENDED RELEASE in 1 BOTTLE (71335-1550-3) | 2020-03-25 | Active |
| 71335-1550-04 You're viewing this | 60 TABLET, EXTENDED RELEASE in 1 BOTTLE (71335-1550-4) | 2020-08-06 | Active |
| 71335-1550-05 | 7 TABLET, EXTENDED RELEASE in 1 BOTTLE (71335-1550-5) | 2022-10-13 | Active |
| 71335-1550-06 | 10 TABLET, EXTENDED RELEASE in 1 BOTTLE (71335-1550-6) | 2022-10-13 | Active |
You're viewing one of 6 pack sizes for this product.
Pack size FAQ
What quantity is in NDC 71335-1550-04?
What is the difference between NDC 71335-1550-04 and NDC 71335-1550-05?
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🧭 About this NDC listing & data coverage
What data is (and isn’t) available for this NDC — tap to expand
| NDC identity (package / product / labeler codes) | ✓ Available |
| Labeler | ✓ Available |
| Product & package description | ✓ Available |
| Marketing category & status | ✓ Available |
| Active ingredient / dosage form / route | ✓ Available |
| FDA label (SPL via DailyMed) | ✓ Available |
| Package photos | ✓ Available |
| Inactive ingredients (structured) | ✓ Available |
| NADAC pharmacy acquisition price (CMS) | — Not published for this NDC CMS publishes NADAC only for NDCs reported in its retail-pharmacy survey. |
| Orange Book / therapeutic-equivalence data | ✓ Available |
| HCPCS J-code billing crosswalk | — Not published for this NDC Most self-administered / retail products have no J-code — that is normal. |
| Medicaid utilization (CMS SDUD) | — Not published for this NDC CMS reports utilization only for NDCs with Medicaid claims above its privacy threshold. |
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📄 Full prescribing information FDA SPL
🎯 Indications and Usage ▾
INDICATIONS AND USAGE I.Vasospastic Angina Nifedipine extended-release tablets are indicated for the management of vasospastic angina confirmed by any of the following criteria: 1) classical pattern of angina at rest accompanied by ST segment elevation, 2) angina or coronary artery spasm provoked by ergonovine, or 3) angiographically demonstrated coronary artery spasm. In those patients who have had angiography, the presence of significant fixed obstructive disease is not incompatible with the diagnosis of vasospastic angina, provided that the above criteria are satisfied.
Nifedipine extended-release tablets may also be used where the clinical presentation suggests a possible vasospastic component, but where vasospasm has not been confirmed, e.g., where pain has a variable threshold on exertion, or in unstable angina where electrocardiographic findings are compatible with intermittent vasospasm, or when angina is refractory to nitrates and/or adequate doses of beta blockers. II.Chronic Stable Angina (Classical Effort-Associated Angina) Nifedipine extended-release tablets are indicated for the management of chronic stable angina (effort-associated angina) without evidence of vasospasm in patients who remain symptomatic despite adequate doses of beta blockers and/or organic nitrates or who cannot tolerate those agents.
In chronic stable angina (effort-associated angina), nifedipine has been effective in controlled trials of up to eight weeks duration in reducing angina frequency and increasing exercise tolerance, but confirmation of sustained effectiveness and evaluation of long-term safety in these patients is incomplete. Controlled studies in small numbers of patients suggest concomitant use of nifedipine and beta-blocking agents may be beneficial in patients with chronic stable angina, but available information is not sufficient to predict with confidence the effects of concurrent treatment, especially in patients with compromised left ventricular function or cardiac conduction abnormalities.
When introducing such concomitant therapy, care must be taken to monitor blood pressure closely, since severe hypotension can occur from the combined effects of the drugs (see WARNINGS ). III. Hypertension Nifedipine extended-release tablets are indicated for the treatment of hypertension, to lower blood pressure.
Lowering blood pressure reduces the risk of fatal and nonfatal cardiovascular events, primarily strokes and myocardial infarctions. These benefits have been seen in controlled trials of antihypertensive drugs from a wide variety of pharmacologic classes including nifedipine extended-release tablets. Control of high blood pressure should be part of comprehensive cardiovascular 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 cardiovascular 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 cardiovascular outcome benefit has been a reduction in the risk of stroke, but reductions in myocardial infarction and cardiovascular mortality also have been seen regularly. Elevated systolic or diastolic pressure causes increased cardiovascular risk, and the absolute risk increase per mmHg is greater at higher blood pressures, so that even modest reductions of severe hyperten…
⏱️ Dosage and Administration ▾
DOSAGE AND ADMINISTRATION Dosage must be adjusted according to each patient's needs. Therapy for either hypertension or angina should be initiated with 30 or 60 mg once daily. Nifedipine extended-release tablets should be swallowed whole and should not be bitten or divided.
In general, titration should proceed over a 7–14 day period so that the physician can fully assess the response to each dose level and monitor blood pressure before proceeding to higher doses. Since steady-state plasma levels are achieved on the second day of dosing, titration may proceed more rapidly, if symptoms so warrant, provided the patient is assessed frequently. Titration to doses above 120 mg are not recommended.
Angina patients controlled on nifedipine capsules alone or in combination with other antianginal medications may be safely switched to nifedipine extended-release tablets at the nearest equivalent total daily dose (e.g., 30 mg t.i.d. of nifedipine capsules may be changed to 90 mg once daily of nifedipine extended-release tablets). Subsequent titration to higher or lower doses may be necessary and should be initiated as clinically warranted. Experience with doses greater than 90 mg in patients with angina is limited.
Therefore, doses greater than 90 mg should be used with caution and only when clinically warranted. Avoid co-administration of nifedipine with grapefruit juice (see CLINICAL PHARMACOLOGY and PRECAUTIONS : Other Interactions ). No "rebound effect" has been observed upon discontinuation of nifedipine extended-release tablets.
However, if discontinuation of nifedipine is necessary, sound clinical practice suggests that the dosage should be decreased gradually with close physician supervision. Care should be taken when dispensing nifedipine extended-release tablets to assure that the extended release dosage form has been prescribed. Co-Administration with Other Antianginal Drugs Sublingual nitroglycerin may be taken as required for the control of acute manifestations of angina, particularly during nifedipine titration.
See PRECAUTIONS , Drug Interactions , for information on co-administration of nifedipine with beta blockers or long-acting nitrates.
⛔ Contraindications ▾
CONTRAINDICATIONS Known hypersensitivity reaction to nifedipine.
⚠️ Warnings ▾
WARNINGS Excessive Hypotension Although in most angina patients the hypotensive effect of nifedipine is modest and well tolerated, occasional patients have had excessive and poorly tolerated hypotension. These responses have usually occurred during initial titration or at the time of subsequent upward dosage adjustment, and may be more likely in patients on concomitant beta blockers. Severe hypotension and/or increased fluid volume requirements have been reported in patients receiving nifedipine together with a beta-blocking agent who underwent coronary artery bypass surgery using high dose fentanyl anesthesia.
The interaction with high dose fentanyl appears to be due to the combination of nifedipine and a beta blocker, but the possibility that it may occur with nifedipine alone, with low doses of fentanyl, in other surgical procedures, or with other narcotic analgesics cannot be ruled out. In nifedipine-treated patients where surgery using high dose fentanyl anesthesia is contemplated, the physician should be aware of these potential problems and, if the patient's condition permits, sufficient time (at least 36 hours) should be allowed for nifedipine to be washed out of the body prior to surgery.
The following information should be taken into account in those patients who are being treated for hypertension as well as angina: Increased Angina and/or Myocardial Infarction Rarely, patients, particularly those who have severe obstructive coronary artery disease, have developed well documented increased frequency, duration and/or severity of angina or acute myocardial infarction on starting nifedipine or at the time of dosage increase. The mechanism of this effect is not established. Beta Blocker Withdrawal It is important to taper beta blockers if possible, rather than stopping them abruptly before beginning nifedipine.
Patients recently withdrawn from beta blockers may develop a withdrawal syndrome with increased angina, probably related to increased sensitivity to catecholamines. Initiation of nifedipine treatment will not prevent this occurrence and on occasion has been reported to increase it. Congestive Heart Failure Rarely, patients, usually receiving a beta blocker, have developed heart failure after beginning nifedipine.
Patients with tight aortic stenosis may be at greater risk for such an event, as the unloading effect of nifedipine would be expected to be of less benefit, owing to the fixed impedance to flow across the aortic valve in these patients. Gastrointestinal Obstruction Requiring Surgery There have been rare reports of obstructive symptoms in patients with known strictures in association with the ingestion of nifedipine extended-release tablets. Bezoars can occur in very rare cases and may require surgical intervention.
Cases of serious gastrointestinal obstruction have been identified in patients with no known gastrointestinal disease, including the need for hospitalization and surgical intervention. Risk factors for a gastrointestinal obstruction identified from post-marketing reports of nifedipine extended-release tablets (GITS tablet formulation) include alteration in gastrointestinal anatomy (e.g., severe gastrointestinal narrowing, colon cancer, small bowel obstruction, bowel resection, gastric bypass, vertical banded gastroplasty, colostomy, diverticulitis, diverticulosis, and inflammatory bowel disease), hypomotility disorders (e.g., constipation, gastroesophageal reflux disease, ileus, obesity, hypothyroidism, and diabetes) and concomitant medications (e.g., H2-histamine blockers, opiates, nonsteroidal anti-inflammatory drugs, laxatives, anticholinergic agents, levothyroxine, and neuromuscular blocking agents).
Gastrointestinal Ulcers Cases of tablet adherence to the gastrointestinal wall with ulceration have been reported, some requiring hospitalization and intervention.
🤒 Adverse Reactions ▾
ADVERSE EXPERIENCES Over 1000 patients from both controlled and open trials with nifedipine extended-release tablets in hypertension and angina were included in the evaluation of adverse experiences. All side effects reported during nifedipine extended-release tablets therapy were tabulated independent of their causal relation to medication. The most common side effect reported with nifedipine extended-release tablets was edema which was dose related and ranged in frequency from approximately 10% to about 30% at the highest dose studied (180 mg).
Other common adverse experiences reported in placebo-controlled trials include: Of these, only edema and headache were more common in nifedipine extended-release tablets patients than placebo patients. The following adverse reactions occurred with an incidence of less than 3.0%. With the exception of leg cramps, the incidence of these side effects was similar to that of placebo alone.
Body as a Whole/Systemic: asthenia, flushing, pain Cardiovascular: palpitations Central Nervous System: insomnia, nervousness, paresthesia, somnolence Dermatologic: pruritus, rash Gastrointestinal: abdominal pain, diarrhea, dry mouth, dyspepsia, flatulence Musculoskeletal: arthralgia, leg cramps Respiratory: chest pain (nonspecific), dyspnea Urogenital: impotence, polyuria Other adverse reactions were reported sporadically with an incidence of 1.0% or less. These include: Body as a Whole/Systemic: face edema, fever, hot flashes, malaise, periorbital edema, rigors Cardiovascular: arrhythmia, hypotension, increased angina, tachycardia, syncope Central Nervous System: anxiety, ataxia, decreased libido, depression, hypertonia, hypoesthesia, migraine, paroniria, tremor, vertigo Dermatologic: alopecia, increased sweating, urticaria, purpura Gastrointestinal: eructation, gastroesophageal reflux, gum hyperplasia, melena, vomiting, weight increase Musculoskeletal: back pain, gout, myalgias Respiratory: coughing, epistaxis, upper respiratory tract infection, respiratory disorder, sinusitis Special Senses: abnormal lacrimation, abnormal vision, taste perversion, tinnitus Urogenital/Reproductive: breast pain, dysuria, hematuria, nocturia Adverse experiences which occurred in less than 1 in 1000 patients cannot be distinguished from concurrent disease states or medications.
The following adverse experiences, reported in less than 1% of patients, occurred under conditions (e.g., open trials, marketing experience) where a causal relationship is uncertain: gastrointestinal irritation, gastrointestinal bleeding, gynecomastia. Gastrointestinal obstruction resulting in hospitalization and surgery, including the need for bezoar removal, has occurred in association with nifedipine extended-release tablets, even in patients with no prior history of gastrointestinal disease (see WARNINGS ). Cases of tablet adherence to the gastrointestinal wall with ulceration have been reported, some requiring hospitalization and intervention.
In multiple-dose U.S. and foreign controlled studies with nifedipine capsules in which adverse reactions were reported spontaneously, adverse effects were frequent but generally not serious and rarely required discontinuation of therapy or dosage adjustment. Most were expected consequences of the vasodilator effects of nifedipine. There is also a large uncontrolled experience in over 2100 patients in the United States.
Most of the patients had vasospastic or resistant angina pectoris, and about half had concomitant treatment with beta-adrenergic blocking agents. The relatively common adverse events were similar in nature to those seen with nifedipine extended-release tablets. In addition, more serious adverse events were observed, not readily distinguishable from the natural history of the disease in these patients.
It remains possible, however, that some or many of these events were drug related. Myocardial infarction occurred in about 4% of patients and congestive heart failure or pulmonary edema in a…
🔄 Drug Interactions ▾
Drug Interactions: Beta-adrenergic blocking agents: (see INDICATIONS AND USAGE and WARNINGS .) Experience in over 1400 patients with nifedipine capsules in a noncomparative clinical trial has shown that concomitant administration of nifedipine and beta-blocking agents is usually well tolerated, but there have been occasional literature reports suggesting that the combination may increase the likelihood of congestive heart failure, severe hypotension, or exacerbation of angina. Long-acting Nitrates: Nifedipine may be safely co-administered with nitrates, but there have been no controlled studies to evaluate the antianginal effectiveness of this combination.
Digitalis: Administration of nifedipine with digoxin increased digoxin levels in nine of twelve normal volunteers. The average increase was 45%. Another investigator found no increase in digoxin levels in thirteen patients with coronary artery disease.
In an uncontrolled study of over two hundred patients with congestive heart failure during which digoxin blood levels were not measured, digitalis toxicity was not observed. Since there have been isolated reports of patients with elevated digoxin levels, it is recommended that digoxin levels be monitored when initiating, adjusting, and discontinuing nifedipine to avoid possible over- or under-digitalization. Coumarin Anticoagulants: There have been rare reports of increased prothrombin time in patients taking coumarin anticoagulants to whom nifedipine was administered.
However, the relationship to nifedipine therapy is uncertain. Cimetidine: A study in six healthy volunteers has shown a significant increase in peak nifedipine plasma levels (80%) and area-under-the-curve (74%), after a one week course of cimetidine at 1000 mg per day and nifedipine at 40 mg per day. Ranitidine produced smaller, non-significant increases.
The effect may be mediated by the known inhibition of cimetidine on hepatic cytochrome P-450, the enzyme system probably responsible for the first-pass metabolism of nifedipine. If nifedipine therapy is initiated in a patient currently receiving cimetidine, cautious titration is advised. Nifedipine is metabolized by CYP3A4.
Co-administration of nifedipine with phenytoin, an inducer of CYP3A4, lowers the systemic exposure to nifedipine by approximately 70%. Avoid co-administration of nifedipine with phenytoin or any known CYP3A4 inducer or consider an alternative antihypertensive therapy. CYP3A inhibitors such as fluconazole, itraconazole, clarithromycin, erythromycin, nefazodone, fluoxetine, saquinavir, indinavir, and nelfinavir may result in increased exposure to nifedipine when co-administered.
Careful monitoring and dose adjustment may be necessary; consider initiating nifedipine at the lowest dose available if given concomitantly with these medications.
🤰 Pregnancy ▾
Pregnancy: Pregnancy Category C: Nifedipine has been shown to produce teratogenic findings in rats and rabbits, including digital anomalies similar to those reported for phenytoin. Digital anomalies have been reported to occur with other members of the dihydropyridine class and are possibly a result of compromised uterine blood flow. Nifedipine administration was associated with a variety of embryotoxic, placentotoxic, and fetotoxic effects, including stunted fetuses (rats, mice, rabbits), rib deformities (mice), cleft palate (mice), small placentas and underdeveloped chorionic villi (monkeys), embryonic and fetal deaths (rats, mice, rabbits), and prolonged pregnancy/decreased neonatal survival (rats; not evaluated in other species).
On a mg/kg basis, all of the doses associated with the teratogenic embryotoxic or fetotoxic effects in animals were higher (5 to 50 times) than the maximum recommended human dose of 120 mg/day. On a mg/m2 basis, some doses were higher and some were lower than the maximum recommended human dose, but all are within an order of magnitude of it. The doses associated with placentotoxic effects in monkeys were equivalent to or lower than the maximum recommended human dose on a mg/m2 basis.
There are no adequate and well-controlled studies in pregnant women. Nifedipine extended-release tablets should be used during pregnancy only if the potential benefit justifies the potential risk.
🧒 Pediatric Use ▾
Pediatric Use: Safety and effectiveness in pediatric patients have not been established.
🧓 Geriatric Use ▾
Geriatric Use: Age appears to have a significant effect on the pharmacokinetics of nifedipine. The clearance is decreased resulting in a higher AUC in the elderly. These changes are not due to changes in renal function (see CLINICAL PHARMACOLOGY , Pharmacokinetics ).
🆘 Overdosage ▾
OVERDOSAGE Experience with nifedipine overdosage is limited. Generally, overdosage with nifedipine leading to pronounced hypotension calls for active cardiovascular support, including monitoring of cardiovascular and respiratory function, elevation of extremities, judicious use of calcium infusion, pressor agents, and fluids. Clearance of nifedipine would be expected to be prolonged in patients with impaired liver function.
Since nifedipine is highly protein-bound, dialysis is not likely to be of any benefit. There has been one reported case of massive overdosage with nifedipine extended-release tablets. The main effects of ingestion of approximately 4800 mg of nifedipine extended-release tablets in a young man attempting suicide as a result of cocaine-induced depression was initial dizziness, palpitations, flushing, and nervousness.
Within several hours of ingestion, nausea, vomiting, and generalized edema developed. No significant hypotension was apparent at presentation, 18 hours post-ingestion. Electrolyte abnormalities consisted of a mild, transient elevation of serum creatinine, and modest elevations of LDH and CPK, but normal SGOT.
Vital signs remained stable, no electrocardiographic abnormalities were noted, and renal function returned to normal within 24 to 48 hours with routine supportive measures alone. No prolonged sequelae were observed. The effect of a single 900 mg ingestion of nifedipine capsules in a depressed anginal patient also on tricyclic antidepressants was loss of consciousness within 30 minutes of ingestion, and profound hypotension, which responded to calcium infusion, pressor agents, and fluid replacement.
A variety of ECG abnormalities were seen in this patient with a history of bundle branch block, including sinus bradycardia and varying degrees of AV block. These dictated the prophylactic placement of a temporary ventricular pacemaker, but otherwise resolved spontaneously. Significant hyperglycemia was seen initially in this patient, but plasma glucose levels rapidly normalized without further treatment.
A young hypertensive patient with advanced renal failure ingested 280 mg of nifedipine capsules at one time, with resulting marked hypotension responding to calcium infusion and fluids. No AV conduction abnormalities, arrhythmias, or pronounced changes in heart rate were noted, nor was there any further deterioration in renal function.
🧬 Clinical Pharmacology ▾
CLINICAL PHARMACOLOGY Nifedipine is a calcium ion influx inhibitor (slow-channel blocker or calcium ion antagonist) and inhibits the transmembrane influx of calcium ions into cardiac muscle and smooth muscle. The contractile processes of cardiac muscle and vascular smooth muscle are dependent upon the movement of extracellular calcium ions into these cells through specific ion channels. Nifedipine selectively inhibits calcium ion influx across the cell membrane of cardiac muscle and vascular smooth muscle without altering serum calcium concentrations.
Mechanism of Action A) Angina The precise mechanisms by which inhibition of calcium influx relieves angina has not been fully determined, but includes at least the following two mechanisms: 1) Relaxation and Prevention of Coronary Artery Spasm Nifedipine dilates the main coronary arteries and coronary arterioles, both in normal and ischemic regions, and is a potent inhibitor of coronary artery spasm, whether spontaneous or ergonovine-induced. This property increases myocardial oxygen delivery in patients with coronary artery spasm, and is responsible for the effectiveness of nifedipine in vasospastic (Prinzmetal's or variant) angina.
Whether this effect plays any role in classical angina is not clear, but studies of exercise tolerance have not shown an increase in the maximum exercise rate-pressure product, a widely accepted measure of oxygen utilization. This suggests that, in general, relief of spasm or dilation of coronary arteries is not an important factor in classical angina. 2) Reduction of Oxygen Utilization Nifedipine regularly reduces arterial pressure at rest and at a given level of exercise by dilating peripheral arterioles and reducing the total peripheral vascular resistance (afterload) against which the heart works.
This unloading of the heart reduces myocardial energy consumption and oxygen requirements, and probably accounts for the effectiveness of nifedipine in chronic stable angina. B) Hypertension The mechanism by which nifedipine reduces arterial blood pressure involves peripheral arterial vasodilatation and the resulting reduction in peripheral vascular resistance. The increased peripheral vascular resistance that is an underlying cause of hypertension results from an increase in active tension in the vascular smooth muscle.
Studies have demonstrated that the increase in active tension reflects an increase in cytosolic free calcium. Nifedipine is a peripheral arterial vasodilator which acts directly on vascular smooth muscle. The binding of nifedipine to voltage-dependent and possibly receptor-operated channels in vascular smooth muscle results in an inhibition of calcium influx through these channels.
Stores of intracellular calcium in vascular smooth muscle are limited and thus dependent upon the influx of extracellular calcium for contraction to occur. The reduction in calcium influx by nifedipine causes arterial vasodilation and decreased peripheral vascular resistance which results in reduced arterial blood pressure. Pharmacokinetics and Metabolism Nifedipine is completely absorbed after oral administration.
Plasma drug concentrations rise at a gradual, controlled rate after a nifedipine extended-release tablets dose and reach a plateau at approximately six hours after the first dose. For subsequent doses, relatively constant plasma concentrations at this plateau are maintained with minimal fluctuations over the 24-hour dosing interval. About a four-fold higher fluctuation index (ratio of peak to trough plasma concentration) was observed with the conventional immediate-release nifedipine capsule at t.i.d. dosing than with once daily nifedipine extended-release tablets.
At steady-state, the bioavailability of the nifedipine extended-release tablets is 86% relative to nifedipine capsules. Administration of the nifedipine extended-release tablets in the presence of food slightly alters the early rate of drug absorption, but does not influence the extent o…
🧬 Mechanism of Action ▾
Mechanism of Action A) Angina The precise mechanisms by which inhibition of calcium influx relieves angina has not been fully determined, but includes at least the following two mechanisms: 1) Relaxation and Prevention of Coronary Artery Spasm Nifedipine dilates the main coronary arteries and coronary arterioles, both in normal and ischemic regions, and is a potent inhibitor of coronary artery spasm, whether spontaneous or ergonovine-induced. This property increases myocardial oxygen delivery in patients with coronary artery spasm, and is responsible for the effectiveness of nifedipine in vasospastic (Prinzmetal's or variant) angina.
Whether this effect plays any role in classical angina is not clear, but studies of exercise tolerance have not shown an increase in the maximum exercise rate-pressure product, a widely accepted measure of oxygen utilization. This suggests that, in general, relief of spasm or dilation of coronary arteries is not an important factor in classical angina. 2) Reduction of Oxygen Utilization Nifedipine regularly reduces arterial pressure at rest and at a given level of exercise by dilating peripheral arterioles and reducing the total peripheral vascular resistance (afterload) against which the heart works.
This unloading of the heart reduces myocardial energy consumption and oxygen requirements, and probably accounts for the effectiveness of nifedipine in chronic stable angina. B) Hypertension The mechanism by which nifedipine reduces arterial blood pressure involves peripheral arterial vasodilatation and the resulting reduction in peripheral vascular resistance. The increased peripheral vascular resistance that is an underlying cause of hypertension results from an increase in active tension in the vascular smooth muscle.
Studies have demonstrated that the increase in active tension reflects an increase in cytosolic free calcium. Nifedipine is a peripheral arterial vasodilator which acts directly on vascular smooth muscle. The binding of nifedipine to voltage-dependent and possibly receptor-operated channels in vascular smooth muscle results in an inhibition of calcium influx through these channels.
Stores of intracellular calcium in vascular smooth muscle are limited and thus dependent upon the influx of extracellular calcium for contraction to occur. The reduction in calcium influx by nifedipine causes arterial vasodilation and decreased peripheral vascular resistance which results in reduced arterial blood pressure.
📦 How Supplied / Storage and Handling ▾
HOW SUPPLIED Nifedipine extended-release tablets are supplied as 30 mg: Yellow round biconvex coated tablets, debossed "30" on one side, film-coated tablets. NDC: 71335-1550-1: 30 Tablets in a BOTTLE NDC: 71335-1550-2: 100 Tablets in a BOTTLE NDC: 71335-1550-3: 90 Tablets in a BOTTLE NDC: 71335-1550-4: 60 Tablets in a BOTTLE NDC: 71335-1550-5: 7 Tablets in a BOTTLE NDC: 71335-1550-6: 10 Tablets in a BOTTLE Store at 20° to 25°C (68° to 77°F); excursions permitted to 15° to 30°C (59° to 86°F). [See USP Controlled Room Temperature.] Protect from moisture and humidity.
Repackaged/Relabeled by: Bryant Ranch Prepack, Inc. Burbank, CA 91504
📋 Description ▾
DESCRIPTION Nifedipine is a drug belonging to a class of pharmacological agents known as the calcium channel blockers. Nifedipine is 3,5-pyridinedicarboxylic acid, 1,4-dihydro-2,6-dimethyl-4- (2-nitrophenyl)-, dimethyl ester, C 17 H 18 N 2 O 6 , and has the structural formula: Nifedipine is a yellow crystalline substance, practically insoluble in water but soluble in ethanol. It has a molecular weight of 346.3.
Nifedipine extended-release tablets are formulated as a once-a-day controlled-release tablet for oral administration designed to deliver 30, 60, or 90 mg of nifedipine. Inert ingredients in the nifedipine extended-release tablet formulation are lactose monohydrate, microcrystalline cellulose, hypromellose, hydroxyethyl cellulose, ethylcellulose, sodium lauryl sulfate, magnesium stearate, methacrylic acid and methyl methacrylate copolymer, polyethylene glycol, talc, polyvinyl alcohol, titanium dioxide(30mg and 60mg), iron oxide yellow, iron oxide red, lecithin (soya) (30 mg and 90 mg), iron oxide black (30 mg and 90 mg).
System Components and Performance Nifedipine extended-release tablet is designed for once-a-day oral administration. The extended-release tablet uses two release-rate controlling mechanisms: a primary polymer matrix core composed of drug with excipients and a secondary enteric coating surrounding the core. Upon swallowing, water is taken up through the enteric coating membrane into the primary core matrix, and the enteric coating membrane will dissolve at rising gastrointestinal pH value, which in turn slowly releases the drug from the formulation.
FDA approved dissolution test specifications differ from USP.
💬 Information for Patients ▾
Information for Patients: Nifedipine extended-release tablets should be swallowed whole. Do not chew, divide or crush tablets. Do not be concerned if you occasionally notice in your stool something that looks like a tablet.
In nifedipine extended-release tablets, the medication is contained within a nonabsorbable shell that has been specially designed to slowly release the drug for your body to absorb. When this process is completed, the empty tablet is eliminated from your body.