amlodipine reference
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(amlodipine · DailyMed)
Registered Kenya · PPB

APROVASC 300MG/10MG TABLET

IRBESARTAN / AMLODIPINE BESYLATE

H2014/CTD1383/190 IRBESARTAN / AMLODIPINE BESYLATE cardiovascular system INN generic

What it does

Amlodipine is a medicine that helps lower blood pressure and improve blood flow by relaxing the blood vessels.

Commonly used for: high blood pressure (hypertension), chest pain (angina)

Read more in plain English ↓

Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Registration & product details

Registration no.
H2014/CTD1383/190
Registration date
-
Expiry date
-
Status
Registered
Active ingredient
IRBESARTAN / AMLODIPINE BESYLATE
Strength
-
Pack size
-
Therapeutic class
-
ATC class (WHO)
C09XA - Renin-inhibitors
RxNorm RxCUI
17767
Manufacturer / MAH
Ressourcethica
Applicant / LTR
-
Country of origin
FOREIGN
Manufacturer location
Waiyaki Wy, Nairobi, Kenya

Source: Pharmacy and Poisons Board · fetched 2026-01-28 20:57:48 · updated 2026-07-26 13:40:01

Drug Interactions

24
Check interactions

Pharmacodynamic Warnings

Irbesartan appears in TABLE 7: Drugs that cause first dose hypotension

Amlodipine appears in TABLE 8: Drugs that cause hypotension

Irbesartan appears in TABLE 8: Drugs that cause hypotension

Irbesartan appears in TABLE 16: Drugs that increase serum potassium

Severe (1)

Amlodipine - increases exposure

Grapefruit juice very slightly increases the exposure to amlodipine. Avoid.

Severe Study

Moderate (18)

Amlodipine - decreases exposure

Enzalutamide is predicted to decrease the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nifedipine, nimodipine). Monitor and adjust dose.

Moderate Study

Amlodipine - decreases exposure

Apalutamide is predicted to decrease the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nimodipine). Monitor and adjust dose.

Moderate Study

Amlodipine - increases exposure

Dronedarone is predicted to increase the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nifedipine, nimodipine). Monitor and adjust dose.

Moderate Study

Amlodipine - increases exposure

Antifungals, azoles (fluconazole, isavuconazole, posaconazole) are predicted to increase the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nifed

Moderate Study

Amlodipine - increases exposure

Miconazole is predicted to increase the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nifedipine, nimodipine, verapamil). Use with caution and a

Moderate Theoretical

Unknown (5)

Amlodipine - increases risk of hypotension

Intravenous magnesium potentially increases the risk of hypotension when given with calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nifedipine, nimodipine, ve

Unknown Anecdotal

Amlodipine - increases risk of angioedema

Temsirolimusispredictedtoincreasetheriskofangioedema whengivenwithcalciumchannelblockers(amlodipine, felodipine,lacidipine,lercanidipine,nicardipine,nifedipine, nimodipine).oTheoretical https://www.fa

Unknown Theoretical

Bulevirtide - affects efficacy

Irbesartanispredictedtoaffecttheefficacyofbulevirtide. Avoid.rTheoretical

Unknown Theoretical

Simvastatin - increases exposure

Amlodipine slightly increases the exposure to statins (simvastatin). Adjust simvastatin dose, p. 224.

Unknown Study

Statins - increases exposure

Amlodipine slightly increases the exposure to statins (simvastatin). Adjust simvastatin dose, p. 224.

Unknown Study

Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact

Disclaimer: This information is sourced from Pharmacy and Poisons Board (Kenya). Always consult a qualified healthcare professional before using any medication.

About amlodipine

Amlodipine is a medicine that helps lower blood pressure and improve blood flow by relaxing the blood vessels.

What it treats

  • high blood pressure (hypertension)
  • chest pain (angina)

How it works

It works by blocking calcium from entering the cells of the heart and blood vessels, which helps to relax and widen them.

Who it's for

Amlodipine is for adults who need help managing high blood pressure or chest pain.

Drug class

Calcium channel blockers

Cautions

  • • Be careful if you are taking other medications that lower blood pressure.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About irbesartan

Irbesartan is a medication that helps lower blood pressure and protect the kidneys.

What it treats

  • high blood pressure (hypertension)
  • kidney problems related to diabetes

How it works

Irbesartan works by blocking a substance in the body that causes blood vessels to tighten, helping them to relax and lower blood pressure.

Who it's for

Irbesartan is for adults with high blood pressure or certain kidney issues.

Drug class

Angiotensin-II receptor antagonists

Cautions

  • • Be careful if you are taking other medications that can lower blood pressure.
  • • Avoid medications that can cause low blood pressure.
  • • Watch out for drugs that may increase potassium levels in the blood.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: Amlodipine

BNF-referenced

Amlodipine is a dihydropyridine calcium channel blocker primarily used for the treatment of hypertension and angina. It works by relaxing blood vessels, which lowers blood pressure and improves blood flow to the heart.

Indications

  • Hypertension
  • Angina

Dosage

Children: Children 1 month to 11 years: Initially 100–200 micrograms/kg once daily; increased if necessary at intervals of 1–2 weeks up to a maximum of 5 mg once daily.

Adults: Initially, 5 mg once daily, increased if necessary to a maximum of 10 mg once daily.

Mechanism of action

Amlodipine inhibits the influx of calcium ions into vascular smooth muscle and cardiac muscle cells, leading to vasodilation and decreased myocardial oxygen demand.

Pharmacodynamics

Amlodipine causes a reduction in systemic vascular resistance and arterial pressure, resulting in decreased workload on the heart. It has a long duration of action due to its slow onset and prolonged effects.

Pharmacokinetics

Amlodipine is well absorbed orally, with peak plasma concentrations occurring 6-12 hours after administration. It has a half-life of approximately 30-50 hours, allowing for once-daily dosing. It is extensively metabolized in the liver and excreted primarily in the urine.

Contra-indications

  • Cardiogenic shock
  • Aortic stenosis

Adverse effects

  • Asthenia
  • Constipation
  • Diarrhoea
  • Drowsiness
  • Dyspnoea
  • Gastrointestinal disturbances

Interactions

  • Grapefruit juice (severe increase in exposure)
  • Enzalutamide (moderate decrease in exposure)
  • Apalutamide (moderate decrease in exposure)
  • Dronedarone (moderate increase in exposure)
  • Antifungals (azoles) (moderate increase in exposure)
  • Miconazole (moderate increase in exposure)
  • Cobicistat (moderate increase in exposure)
  • Crizotinib (moderate increase in exposure)
  • Dabrafenib (moderate decrease in exposure)
  • Idelalisib (moderate increase in exposure)

Precautions

  • Caution in hepatic impairment (risk of increased exposure)
  • Monitor for sudden withdrawal effects, which may exacerbate myocardial ischaemia

Pregnancy

Manufacturer advises caution due to limited data on safety.

Breast-feeding

Manufacturer advises to avoid; no information available.

Storage

Store at room temperature, away from moisture and heat.

Formulations

  • Amlodipine 5mg/5ml oral solution (sugar-free)
  • Amlodipine 10mg/5ml oral solution (sugar-free)
  • Amlodipine 5 mg tablets
  • Amlodipine 10 mg tablets
BNF for Children 2019-2020 p.132 PubChem / pathway

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: Irbesartan

BNF-referenced

Irbesartan is an angiotensin-II receptor antagonist commonly used to treat hypertension and to slow the progression of diabetic nephropathy in patients with type 2 diabetes. It works by blocking the action of angiotensin II, a potent vasoconstrictor, leading to vasodilation and reduced blood pressure. Irbesartan is usually administered orally and has a long duration of action, allowing for once-daily dosing.

Indications

  • Hypertension
  • Diabetic nephropathy in patients with type 2 diabetes

Dosage

Children: Refer to BNF for Children for specific dosing information.

Adults: Initially 75–150 mg once daily, may be increased to 300 mg once daily if tolerated.

Mechanism of action

Irbesartan prevents angiotensin II binding to the AT1 receptor in tissues such as vascular smooth muscle and the adrenal gland. It binds to the AT1 receptor with over 8500 times more affinity than to the AT2 receptor. By blocking angiotensin II from binding, irbesartan induces vascular smooth muscle relaxation and inhibits aldosterone secretion, which together lower blood pressure. This action counteracts the vasoconstrictive and sodium-retaining effects of angiotensin II.

Pharmacodynamics

Irbesartan is an effective angiotensin receptor blocker that lowers blood pressure and has a wide therapeutic index. It is well-tolerated at doses up to 900 mg daily, although typical therapeutic doses range from 150 mg. Its long half-life allows for once-daily dosing, making it convenient for patient adherence.

Pharmacokinetics

Irbesartan is well absorbed following oral administration, with peak plasma concentrations occurring within 1-2 hours. It undergoes extensive hepatic metabolism, primarily by glucuronidation, and is excreted via the urine and feces. The elimination half-life is approximately 11 hours, which supports its once-daily dosing regimen. Renal impairment may necessitate cautious use, especially in patients with creatinine clearance less than 30 mL/min.

Contra-indications

  • Hypersensitivity to irbesartan or any of the excipients
  • Severe hepatic impairment
  • Bilateral renal artery stenosis or stenosis in a solitary kidney

Adverse effects

  • Dizziness
  • Fatigue
  • Hypotension
  • Angioedema
  • Elevated blood urea or creatinine
  • Hyperkalemia
  • Gastrointestinal disturbances

Interactions

  • Irbesartan and bulevirtide: Unknown (affects efficacy)
  • Other antihypertensive agents may have additive effects
  • Non-steroidal anti-inflammatory drugs (NSAIDs) may reduce the antihypertensive effect of irbesartan

Precautions

  • Caution in patients with a history of angioedema
  • Monitor renal function in patients with renal impairment
  • Use with caution in patients with diabetes or heart failure

Pregnancy

Irbesartan is contraindicated during pregnancy due to potential harm to the fetus, particularly in the second and third trimesters.

Breast-feeding

Caution is advised as it is not known if irbesartan is excreted in human milk.

Storage

Store at room temperature, away from moisture and heat.

Formulations

  • Irbesartan 75 mg tablets
  • Irbesartan 150 mg tablets
  • Irbesartan 300 mg tablets
  • Oral suspension (special order)
BNF 85 (British National Formulary) p.212 PubChem / pathway

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Molecular reference: Amlodipine

PubChem CID 2162

Molecular formula: C20H25ClN2O5

Mechanism of action

**Mechanism of action on blood pressure** Amlodipine is considered a peripheral arterial vasodilator that exerts its action directly on vascular smooth muscle to lead to a reduction in peripheral vascular resistance, causing a decrease in blood pressure. Amlodipine is a dihydropyridine calcium antagonist (calcium ion antagonist or slow-channel blocker) that inhibits the influx of calcium ions into both vascular smooth muscle and cardiac muscle. Experimental studies imply that amlodipine binds to both _dihydropyridine_ and _nondihydropyridine_ binding sites, located on cell membranes. The contraction of cardiac muscle and vascular smooth muscle are dependent on the movement of extracellular calcium ions into these cells by specific ion channels. Amlodipine blocks calcium ion influx across cell membranes with selectivity. A stronger effect of amlodipine is exerted on vascular smooth muscle cells than on cardiac muscle cells. Direct actions of amlodipine on vascular smooth muscle result in reduced blood pressure. **Mechanism of action in angina** The exact mechanism by which amlodipine relieves the symptoms of angina have not been fully elucidated to this date, however, the mechanism of action is likely twofold: Amlodipine has a dilating effect on peripheral arterioles, reducing the total peripheral resistance (afterload) against which the cardiac muscle functions. Since the heart rate remains stable during amlodipine administration, the reduced work of the heart reduces both myocardial energy use and oxygen requirements. Dilatation of the main coronary arteries and coronary arterioles, both in healthy and ischemic areas, is another possible mechanism of amlodipine reduction of blood pressure. The dilatation causes an increase in myocardial oxygen delivery in patients experiencing coronary artery spasm (Prinzmetal's or variant angina) and reduces coronary vasoconstriction caused by smoking. Amlodipine is a dihydropyridine calcium antagonist (calcium ion antagonist or slow-channel blocker) that inhibits the transmembrane influx of calcium ions into vascular smooth muscle and cardiac muscle. Experimental data suggest that amlodipine binds to both dihydropyridine and nondihydropyridine binding sites. 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. Amlodipine inhibits calcium ion influx across cell membranes selectively, with a greater effect on vascular smooth muscle cells than on cardiac muscle cells. Negative inotropic effects can be detected in vitro but such effects have not been seen in intact animals at therapeutic doses. Serum calcium concentration is not affected by amlodipine. Within the physiologic pH range, amlodipine is an ionized compound (pKa=8.6), and its kinetic interaction with the calcium channel receptor is characterized by a gradual rate of association and dissociation with the receptor binding site, resulting in a gradual onset of effect. Recent studies have suggested that cytokines are capable of modifying cardiovascular function and that drugs used in the treatment of heart failure have various modulating properties on the production of cytokines. More recently, we have found that ouabain induces the production of cytokines. This study was performed to examine the effects of calcium channel blockers on the production of cytokines induced by a cardiac glycoside. Human peripheral blood mononuclear cells (PBMC) were obtained from healthy volunteers. PBMC were cultured in 0.1, 1, 10, and 30 umol/L amlodipine, diltiazem, and nifedipine in presence of 1 umol/L ouabain. After 24 hr of incubation, IL-1alpha, IL-1beta, IL-6, and TNF-alpha were measured in the culture supernatants by enzyme-linked immunosorbent assay. Ouabain induced the production of IL-1alpha, IL-1beta and IL-6, but not of TNF-alpha. Induction of IL-1beta was most prominent. The production of IL-1alpha, and IL-6 wa

Pharmacodynamics

**General pharmacodynamic effects** Amlodipine has a strong affinity for cell membranes, modulating calcium influx by inhibiting selected membrane calcium channels. This drug's unique binding properties allow for its long-acting action and less frequent dosing regimen,. **Hemodynamic effects** After the administration of therapeutic doses of amlodipine to patients diagnosed with hypertension, amlodipine causes vasodilation, which results in a reduction of supine and standing blood pressure. During these blood pressure reductions, there are no clinically significant changes in heart rate or plasma catecholamine levels with long-term use. Acute intravenous administration of amlodipine reduces arterial blood pressure and increases heart rate in patients with chronic stable angina, however, chronic oral administration of amlodipine in clinical studies did not cause clinically significant alterations in heart rate or blood pressures in patients diagnosed with angina and normal blood pressure. With long-term, once daily oral administration, antihypertensive effectiveness is maintained for at least 24 hours. **Electrophysiologic effects** Amlodipine does not change sinoatrial (SA) nodal function or atrioventricular (AV) conduction in animals or humans. In patients who were diagnosed with chronic stable angina, the intravenous administration of 10 mg of amlodipine did not cause clinically significant alterations A-H and H-V conduction and sinus node recovery time after cardiac pacing. Patients administered amlodipine with concomitant beta-blockers produced similar results. In clinical trials in which amlodipine was given in combination with beta-blockers to patients diagnosed with hypertension or angina, no adverse effects on electrocardiographic parameters were noted. In clinical studies comprised of angina patients alone, amlodipine did not change electrocardiographic intervals or produce high degrees of AV block. **Effects on angina** Amlodipine relieves the symptoms of chest pain associated with angina. In patients diagnosed with angina, daily administration of a single amlodipine dose increases total exercise time, the time to angina onset, and the time to 1 mm ST-segment depression on ECG studies, decreases anginal attack frequency, and decreases the requirement for nitroglycerin tablets.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: Irbesartan

PubChem CID 3749

Molecular formula: C25H28N6O

Mechanism of action

Irbesartan prevents angiotensin II binding to the AT<sub>1</sub> receptor in tissues like vascular smooth muscle and the adrenal gland. Irbesartan and its active metabolite bind the AT<sub>1</sub> receptor with 8500 times more affinity than they bind to the AT<sub>2</sub> receptor. Irbesartan's prevention of angiotensin II binding causes vascular smooth muscle relaxation and prevents the secretion of aldosterone, lowering blood pressure. Angiotensin II would otherwise bind to the AT<sub>1</sub> receptor, inducing vasoconstriction and aldosterone secretion, raising blood pressure. Angiotensin II is a potent vasoconstrictor formed from angiotensin I in a reaction catalyzed by angiotensin-converting enzyme (ACE, kininase II). Angiotensin II is the principal pressor agent of the renin-angiotensin system (RAS) and also stimulates aldosterone synthesis and secretion by adrenal cortex, cardiac contraction, renal resorption of sodium, activity of the sympathetic nervous system, and smooth muscle cell growth. Irbesartan blocks the vasoconstrictor and aldosterone-secreting effects of angiotensin II by selectively binding to the AT1 angiotensin II receptor. There is also an AT2 receptor in many tissues, but it is not involved in cardiovascular homeostasis. Irbesartan is a specific competitive antagonist of AT1 receptors with a much greater affinity (more than 8500-fold) for the AT1 receptor than for the AT2 receptor and no agonist activity. Blockade of the AT1 receptor removes the negative feedback of angiotensin II on renin secretion, but the resulting increased plasma renin activity and circulating angiotensin II do not overcome the effects of irbesartan on blood pressure. Irbesartan does not inhibit ACE or renin or affect other hormone receptors or ion channels known to be involved in the cardiovascular regulation of blood pressure and sodium homeostasis. Because irbesartan does not inhibit ACE, it does not affect the response to bradykinin; whether this has clinical relevance is not known.

Pharmacodynamics

Irbesartan is an angiotensin receptor blocker used to treat hypertension and diabetic nephropathy. It has a long duration of action as it is usually taken once daily and a wide therapeutic index as doses may be as low as 150mg daily but doses of 900mg/day were well tolerated in healthy human subjects.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

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