(amlodipine · DailyMed)
Triolmesar forte 5
Amlodipine 5 mg,Hydrochlorothiazide 12.5 mg,Olmesartan medoxomil equivalent to Olmesartan 40 mg
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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Sourcing - Kenya onlyRegistration & product details
Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-03-11 23:47:06 · updated 2026-09-14 03:00:45
Drug Interactions
23Pharmacodynamic Warnings
Olmesartan appears in TABLE 7: Drugs that cause first dose hypotension
Hydrochlorothiazide appears in TABLE 8: Drugs that cause hypotension
Amlodipine appears in TABLE 8: Drugs that cause hypotension
Olmesartan appears in TABLE 8: Drugs that cause hypotension
Olmesartan appears in TABLE 16: Drugs that increase serum potassium
Hydrochlorothiazide appears in TABLE 17: Drugs that reduce serum potassium
Hydrochlorothiazide appears in TABLE 18: Drugs that cause hyponatraemia
Severe (1)
Amlodipine - increases exposure
Grapefruit juice very slightly increases the exposure to amlodipine. Avoid.
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.
Amlodipine - decreases exposure
Apalutamide is predicted to decrease the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nimodipine). Monitor and adjust dose.
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.
Amlodipine - increases exposure
Antifungals, azoles (fluconazole, isavuconazole, posaconazole) are predicted to increase the exposure to calcium channel blockers (amlodipine, felodipine, lacidipine, lercanidipine, nicardipine, nifed
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
Unknown (4)
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
Amlodipine - increases risk of angioedema
Temsirolimusispredictedtoincreasetheriskofangioedema whengivenwithcalciumchannelblockers(amlodipine, felodipine,lacidipine,lercanidipine,nicardipine,nifedipine, nimodipine).oTheoretical https://www.fa
Simvastatin - increases exposure
Amlodipine slightly increases the exposure to statins (simvastatin). Adjust simvastatin dose, p. 224.
Statins - increases exposure
Amlodipine slightly increases the exposure to statins (simvastatin). Adjust simvastatin dose, p. 224.
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
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 hydrochlorothiazide
Hydrochlorothiazide is a type of medicine known as a thiazide diuretic, which helps the body get rid of excess water and salt through urine.
What it treats
- high blood pressure (hypertension)
- heart failure
- fluid retention (edema)
How it works
It works by helping the kidneys remove excess fluid and salt from the body, which lowers blood pressure and reduces swelling.
Who it's for
It is commonly prescribed for adults with high blood pressure, heart problems, or those retaining too much fluid.
Drug class
Thiazide diuretics
Cautions
- • Be careful if you are taking medications that can lower blood pressure.
- • Avoid using with drugs that lower potassium levels in the blood.
- • Use with caution if you are on medications that can cause low sodium levels.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About medoxomil
Medoxomil is a medication that helps manage blood pressure levels.
What it treats
- high blood pressure (hypertension)
How it works
Medoxomil works by relaxing blood vessels, which helps to lower blood pressure.
Who it's for
This medication is suitable for adults needing to control their blood pressure.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About olmesartan
Olmesartan is a medication that helps lower high blood pressure by blocking certain chemicals in the body.
What it treats
- high blood pressure (hypertension)
How it works
It works by relaxing blood vessels, which helps to lower blood pressure.
Who it's for
This medicine is for adults needing treatment for high blood pressure.
Drug class
Angiotensin-II receptor antagonists
Cautions
- • Be cautious if taking medications that can cause a sudden drop in blood pressure.
- • Be careful with drugs that lower blood pressure.
- • Avoid drugs that may raise 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-referencedAmlodipine 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
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: Hydrochlorothiazide
BNF-referencedHydrochlorothiazide is a thiazide diuretic primarily used in the management of hypertension and edema associated with heart failure. By promoting the excretion of sodium and water, it helps lower blood pressure and reduce fluid retention. Its mechanism of action involves inhibition of sodium reabsorption in the distal convoluted tubule of the nephron, which results in increased urine output.
Indications
- Hypertension
- Edema associated with congestive heart failure
- Edema due to renal dysfunction
Dosage
Children: Refer to the BNF for Children for specific dosing information.
Adults: 2.5 mg daily, taken in the morning for hypertension; higher doses may be used for other indications.
Mechanism of action
Hydrochlorothiazide is transported into epithelial cells of the distal convoluted tubule via organic anion transporters OAT1, OAT3, and OAT4. It inhibits the sodium-chloride symporter (SLC12A3), preventing sodium reabsorption. This action reduces the concentration gradient that promotes water reabsorption, leading to increased urine production.
Pharmacodynamics
Hydrochlorothiazide increases the excretion of sodium and water, thereby promoting diuresis. It is effective in lowering blood pressure and has a wide therapeutic range, with doses typically ranging from 25 to 100 mg. The drug exhibits a greater antihypertensive effect at lower doses due to enhanced vasodilation, while higher doses primarily exert their effects through diuresis. Caution is advised in patients with renal or hepatic impairment.
Pharmacokinetics
Hydrochlorothiazide is well absorbed from the gastrointestinal tract, with peak plasma concentrations occurring within 1-2 hours post-administration. It has a half-life of about 6-15 hours, depending on individual patient factors. The drug is primarily excreted unchanged in the urine. Dosage adjustments may be necessary in patients with renal impairment due to the risk of accumulation.
Contra-indications
- History of hypersensitivity to sulfonamides
- Acute porphyrias
- Severe renal impairment
Adverse effects
- Angina pectoris
- Arrhythmias
- Arthralgia
- Asthenia
- Chest pain
- Confusion
- Dry mouth
- Haemolytic anaemia
- Hepatic disorders
- Hyperkalaemia
- Hypokalemia
- Nausea
- Rhabdomyolysis
- Syncope
- Vertigo
Interactions
- Potassium-sparing diuretics
- Other antihypertensives
- Lithium
- Non-steroidal anti-inflammatory drugs (NSAIDs)
- Corticosteroids
Precautions
- Diabetes mellitus
- Elderly patients
- Basal cell carcinoma
- Cutaneous lupus erythematosus
- Patients with hepatic impairment
- Monitoring of electrolytes
Pregnancy
Hydrochlorothiazide should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus. It is advisable to avoid use, especially during the first trimester.
Breast-feeding
Hydrochlorothiazide is present in breast milk; however, the amount is probably too small to be harmful. Caution is advised as large doses may suppress lactation.
Storage
Store in a cool, dry place away from light. Keep out of reach of children.
Formulations
- Tablets: 12.5 mg, 25 mg
- Oral solution
- Combination products with amiloride
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: medoxomil
Medoxomil is a prodrug that is converted into its active form, which acts as an angiotensin II receptor antagonist. It is primarily used for the treatment of hypertension and helps in reducing cardiovascular risks associated with high blood pressure.
Indications
- Hypertension
- Heart failure
- Chronic kidney disease
Dosage
Children: Refer to the BNF for Children for specific dosing information.
Adults: Refer to the BNF for specific dosing information.
Mechanism of action
Medoxomil is converted to its active metabolite, which selectively blocks the angiotensin II receptor subtype 1 (AT1). This inhibition prevents angiotensin II from exerting its vasoconstrictor effects, leading to vasodilation and a reduction in blood pressure. By blocking the effects of angiotensin II, medoxomil also reduces aldosterone secretion, promoting natriuresis and diuresis.
Pharmacodynamics
The active form of medoxomil exhibits dose-dependent antihypertensive effects, contributing to improved cardiovascular outcomes. It has been shown to reduce systemic vascular resistance and improve endothelial function. The onset of action typically occurs within a few hours of administration, with peak effects seen within 24 hours.
Pharmacokinetics
Medoxomil is well absorbed after oral administration and undergoes extensive first-pass metabolism to its active form. The half-life of the active metabolite allows for once-daily dosing. It is primarily excreted via the kidneys, with both renal and hepatic pathways involved in its elimination.
Contra-indications
- Hypersensitivity to medoxomil or any component of the formulation
- Severe renal impairment
- Pregnancy
Adverse effects
- Headache
- Dizziness
- Fatigue
- Hypotension
- Nausea
- Diarrhea
- Cough
Interactions
- Caution with concomitant use of other antihypertensive agents
- Possible interaction with diuretics leading to additive hypotensive effects
- Use with caution in patients taking medications that affect renal function
Precautions
- Monitor renal function prior to and during treatment
- Use with caution in patients with a history of angioedema
- Assess risk of hypotension in patients with volume depletion
Pregnancy
Medoxomil is contraindicated in pregnancy due to potential risks to the fetus. Consult healthcare providers for alternatives.
Breast-feeding
It is unknown whether medoxomil is excreted in human milk. Caution is advised when administering to nursing mothers.
Storage
Store in a cool, dry place, away from direct light. Keep out of reach of children.
Formulations
- Tablets
- Oral suspension
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: olmesartan
BNF-referencedOlmesartan is an angiotensin-II receptor antagonist (ARB) used primarily for the treatment of hypertension. It selectively blocks the angiotensin II receptor type 1 (AT1), thereby preventing angiotensin II from exerting its vasoconstrictive and aldosterone-secreting effects. This results in vasodilation, decreased blood pressure, and increased sodium excretion, making olmesartan effective in managing high blood pressure and associated cardiovascular conditions.
Indications
- Hypertension
- Heart failure
- Chronic kidney disease with hypertension
Dosage
Children: For children aged 6 years and older, the dosage is based on body weight and should be determined according to the BNF for Children. Generally, the initial dose is 0.3 mg/kg once daily, not exceeding 20 mg.
Adults: The typical adult dose for hypertension is 20 mg once daily, which may be increased to a maximum of 40 mg once daily if necessary.
Mechanism of action
Olmesartan selectively binds to the angiotensin receptor 1 (AT1), inhibiting the action of angiotensin II, a potent vasoconstrictor. By blocking angiotensin II from binding to its receptor, olmesartan prevents vasoconstriction, reduces aldosterone secretion, and promotes renal sodium excretion, leading to lower blood pressure and reduced cardiac workload. Its action is independent of the synthesis pathways of angiotensin II.
Pharmacodynamics
The pharmacodynamic effects of olmesartan include reduced blood pressure, decreased aldosterone levels, and increased sodium excretion. In patients with volume or salt depletion, there may be a risk of symptomatic hypotension upon initiation of therapy. The drug also alters renal function due to its effects on the renin-angiotensin-aldosterone system (RAAS), and caution is advised in patients with renal impairment.
Pharmacokinetics
Olmesartan is absorbed well orally, with peak plasma concentrations occurring within 1 to 2 hours after administration. It has a half-life of approximately 13 hours, allowing for once-daily dosing. The drug is primarily eliminated through the bile and feces, with minimal renal excretion. The pharmacokinetics can be affected by hepatic function, and dose adjustments may be required in patients with liver impairment.
Contra-indications
- Hypersensitivity to olmesartan or any of its components
- Pregnancy
- Severe hepatic impairment
- Bilateral renal artery stenosis or renal artery stenosis in a single functioning kidney
Adverse effects
- Dizziness
- Hypotension
- Hyperkalemia
- Renal impairment
- Angioedema
- Diarrhea
- Fatigue
Interactions
- Potassium-sparing diuretics may increase the risk of hyperkalemia
- Non-steroidal anti-inflammatory drugs (NSAIDs) may reduce the antihypertensive effect of olmesartan
- Dual blockade of the renin-angiotensin system (e.g., combination with another ARB or ACE inhibitor) increases the risk of renal impairment, hypotension, and hyperkalemia
Precautions
- Monitor blood pressure and renal function regularly during treatment
- Use with caution in patients with volume depletion or heart failure
- Caution in patients with aortic stenosis due to potential risk of decreased coronary perfusion
- Consider potential hypotensive effects in patients on diuretics or with renal impairment
Pregnancy
Olmesartan is contraindicated during pregnancy due to the risk of fetal harm, particularly in the second and third trimesters.
Breast-feeding
It is not known whether olmesartan is excreted in human milk; caution is advised when administering to nursing mothers.
Storage
Store at room temperature, away from moisture and heat. Keep out of reach of children.
Formulations
- Olmesartan medoxomil 5 mg, 20 mg, 40 mg tablets
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 2162Molecular 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.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Hydrochlorothiazide
PubChem CID 3639Molecular formula: C7H8ClN3O4S2
Mechanism of action
Hydrochlorothiazide is transported from the circulation into epithelial cells of the distal convoluted tubule by the organic anion transporters OAT1, OAT3, and OAT4. From these cells, hydrochlorothiazide is transported to the lumen of the tubule by multidrug resistance associated protein 4 (MRP4). Normally, sodium is reabsorbed into epithelial cells of the distal convoluted tubule and pumped into the basolateral interstitium by a sodium-potassium ATPase, creating a concentration gradient between the epithelial cell and the distal convoluted tubule that promotes the reabsorption of water. Hydrochlorothiazide acts on the proximal region of the distal convoluted tubule, inhibiting reabsorption by the sodium-chloride symporter, also known as Solute Carrier Family 12 Member 3 (SLC12A3). Inhibition of SLC12A3 reduces the magnitude of the concentration gradient between the epithelial cell and distal convoluted tubule, reducing the reabsorption of water.
Pharmacodynamics
Hydrochlorothiazide prevents the reabsorption of sodium and water from the distal convoluted tubule, allowing for the increased elimination of water in the urine. Hydrochlorothiazide has a wide therapeutic window as dosing is individualized and can range from 25-100mg. Hydrochlorothiazide should be used with caution in patients with reduced kidney or liver function.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: olmesartan
PubChem CID 158781Molecular formula: C24H26N6O3
Mechanism of action
Olmesartan belongs to the angiotensin II receptor blocker (ARB) family of drugs, which also includes [telmisartan], [candesartan], [losartan], [valsartan], and [irbesartan]. ARBs selectively bind to angiotensin receptor 1 (AT1) and prevent the protein angiotensin II from binding and exerting its hypertensive effects. As the principal pressor agent of the renin-angiotensin system, Angiotensin II causes vasoconstriction, stimulation of synthesis and release of aldosterone, cardiac stimulation and renal reabsorption of sodium. Olmesartan blocks the vasoconstrictor effects of angiotensin II by selectively blocking the binding of angiotensin II to the AT1 receptor in vascular smooth muscle. Its action is, therefore, independent of the pathways for angiotensin II synthesis. Overall, olmesartan's physiologic effects lead to reduced blood pressure, lower aldosterone levels, reduced cardiac activity, and increased excretion of sodium. Olmesartan also effects on the renin-angiotensin aldosterone system (RAAS) plays an important role in hemostasis and regulation of kidney, vascular, and cardiac functions. Pharmacological blockade of RAAS via AT1 receptor blockade inhibits negative regulatory feedback within RAAS, which is a contributing factor to the pathogenesis and progression of cardiovascular disease, heart failure, and renal disease. In particular, heart failure is associated with chronic activation of RAAS, leading to inappropriate fluid retention, vasoconstriction, and ultimately a further decline in left ventricular function. ARBs have been shown to have a protective effect on the heart by improving cardiac function, reducing afterload, increasing cardiac output and preventing ventricular hypertrophy and remodelling. Angiotensin-converting enzyme 2 (ACE2) is highly expressed in the kidney and converts angiotensin (Ang) II to Ang-(1-7), a renoprotective peptide. Urinary ACE2 has been shown to be elevated in patients with chronic kidney disease. However, the effects of antihypertensive agents on urinary ACE2 remain unclear. METHODS: Of participants in the Tanno-Sobetsu cohort study in 2011 (n = 617), subjects on no medication (n = 101) and hypertensive patients treated with antihypertensive agents, including the calcium channel blockers amlodipine and long-acting nifedipine; the ACE inhibitor enalapril; and the Ang II receptor blockers losartan, candesartan, valsartan, telmisartan, and olmesartan, for more than 1 year (n = 100) were enrolled, and urinary ACE2 level was measured. Glucose and hemoglobin A1c were significantly higher in patients treated with enalapril, telmisartan or olmesartan than in the control subjects. Urinary albumin-to-creatinine ratio (UACR) was significantly higher in patients treated with enalapril than in the control subjects. Urinary ACE2 level was higher in the olmesartan-treated group, but not the other treatment groups, than in the control group. Urinary ACE2 level was positively correlated with systolic blood pressure (r = 0.211; P = 0.003), UACR (r = 0.367; P < 0.001), and estimated salt intake (r = 0.260; P < 0.001). Multivariable regression analysis after adjustment of age, sex, and the correlated indices showed that the use of olmesartan was an independent predictor of urinary ACE2 level. In contrast with other antihypertensive drugs, olmesartan may uniquely increase urinary ACE2 level, which could potentially offer additional renoprotective effects. Angiotensin II is 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, with effects that include vasoconstriction, stimulation of synthesis and release of aldosterone, cardiac stimulation and renal reabsorption of sodium. Olmesartan blocks the vasoconstrictor effects of angiotensin II by selectively blocking the binding of angiotensin II to the AT receptor in vascular smooth muscle. Its action is, therefore, independent
Pharmacodynamics
Overall, olmesartan's physiologic effects lead to reduced blood pressure, lower aldosterone levels, reduced cardiac activity, and increased excretion of sodium. **Hypotension in Volume- or Salt-Depleted Patients** In patients with an activated renin-angiotensin aldosterone system, such as volume-and/or salt-depleted patients (e.g., those being treated with high doses of diuretics), symptomatic hypotension may be anticipated after initiation of treatment with olmesartan. Initiate treatment under close medical supervision. If hypotension does occur, place the patient in the supine position and, if necessary, give an intravenous infusion of normal saline. A transient hypotensive response is not a contraindication to further treatment, which usually can be continued without difficulty once the blood pressure has stabilized. Valvular Stenosis: there is concern on theoretical grounds that patients with aortic stenosis might be at a particular risk of decreased coronary perfusion, because they do not develop as much afterload reduction. **Impaired Renal Function** As a consequence of inhibiting the renin-angiotensin-aldosterone system, changes in renal function may be anticipated in susceptible individuals treated with olmesartan. In patients whose renal function may depend upon the activity of the renin-angiotensin- aldosterone system (e.g., patients with severe congestive heart failure), treatment with angiotensin converting enzyme (ACE) inhibitors and angiotensin receptor antagonists has been associated with oliguria and/or progressive azotemia and rarely with acute renal failure and/or death. Similar results may be anticipated in patients treated with olmesartan. In studies of ACE inhibitors in patients with unilateral or bilateral renal artery stenosis, increases in serum creatinine or blood urea nitrogen (BUN) have been reported. There has been no long-term use of olmesartan medoxomil in patients with unilateral or bilateral renal artery stenosis, but similar results may be expected. **Sprue-like Enteropathy** Severe, chronic diarrhea with substantial weight loss has been reported in patients taking olmesartan months to years after drug initiation. Intestinal biopsies of patients often demonstrated villous atrophy. If a patient develops these symptoms during treatment with olmesartan, exclude other etiologies. Consider discontinuation of olmesartan medoxomil in cases where no other etiology is identified. **Electrolyte Imbalances** Olmesartan medoxomil contains olmesartan, a drug that inhibits the renin-angiotensin system (RAS). Drugs that inhibit the RAS can cause hyperkalemia. Monitor serum electrolytes periodically.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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