hydrochlorothiazide reference
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(hydrochlorothiazide · DailyMed)
Registered Kenya · PPB

STARVAL HCT TABLETS 160+25MG

VALSARTAN AND HYDROCHLOROTHIAZIDE

H2011/CTD067/392 VALSARTAN 160MG AND HYDROCHLOROTHIAZIDE 25MG cardiovascular system INN generic

What it does

Hydrochlorothiazide is a type of medicine known as a thiazide diuretic, which helps the body get rid of excess water and salt through urine.

Commonly used for: high blood pressure (hypertension), heart failure, fluid retention (edema)

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.
H2011/CTD067/392
Registration date
-
Expiry date
-
Status
Registered
Active ingredient
VALSARTAN AND HYDROCHLOROTHIAZIDE
Strength
-
Pack size
-
Therapeutic class
-
ATC class (WHO)
C09XA - Renin-inhibitors
RxNorm RxCUI
5487
Manufacturer / MAH
Sun Pharma
Applicant / LTR
-
Country of origin
FOREIGN
Manufacturer location
Westlands Parklands/Highridge, Nairobi, Kenya

Source: Pharmacy and Poisons Board · fetched 2026-01-28 21:37:54 · updated 2026-07-20 11:12:09

Drug Interactions

1
Check interactions

Pharmacodynamic Warnings

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

Hydrochlorothiazide appears in TABLE 8: Drugs that cause hypotension

Valsartan appears in TABLE 8: Drugs that cause hypotension

Valsartan 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

Unknown (1)

Valsartan - affects exposure

Taxanes (cabazitaxel) are predicted to affect the exposure to valsartan. Manufacturer advises take 12 hours before or 3 hours after cabazitaxel. Antacids SEPARATION OF ADMINISTRATION Aluminium- and ma

Unknown Theoretical

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 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 valsartan

Valsartan is a medication that helps lower high blood pressure and protect heart function.

What it treats

  • high blood pressure (hypertension)
  • heart failure

How it works

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

Who it's for

Valsartan is for adults who need help managing high blood pressure or heart failure.

Drug class

Angiotensin-II receptor antagonists

Cautions

  • • Be careful if you are taking other medications that can lower blood pressure.
  • • Avoid drugs that may cause low blood pressure.
  • • Use caution with medications that can 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: Hydrochlorothiazide

BNF-referenced

Hydrochlorothiazide 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
BNF 85 (British National Formulary) p.203 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: Valsartan

BNF-referenced

Valsartan is an antihypertensive medication belonging to the class of angiotensin II receptor antagonists (ARBs). It is primarily used to manage hypertension and to reduce cardiovascular events in patients with established atherosclerotic cardiovascular disease. By blocking the action of angiotensin II, a potent vasoconstrictor, valsartan helps to lower blood pressure and has protective effects on the heart and kidneys.

Indications

  • Hypertension
  • Heart failure
  • Prevention of cardiovascular events in patients with established atherosclerotic cardiovascular disease

Dosage

Children: For neonates, 250–500 micrograms/kg every 8–12 hours, increased if necessary to 2–3

Adults: Initially 80 mg once daily, increased if necessary up to a maximum of 320 mg daily, based on clinical response.

Mechanism of action

Valsartan selectively binds to angiotensin receptor 1 (AT1), preventing angiotensin II from exerting its hypertensive effects, such as vasoconstriction and aldosterone secretion. This blockade results in reduced blood pressure, lower aldosterone levels, decreased cardiac activity, and increased sodium excretion. Additionally, valsartan modulates the renin-angiotensin-aldosterone system (RAAS), which is critical in cardiovascular and kidney function regulation.

Pharmacodynamics

Valsartan inhibits the hypertensive effects of angiotensin II, with an oral dose of 80 mg achieving approximately 80% inhibition of the pressor effect at peak, and about 30% inhibition persisting for 24 hours. It minimally affects plasma aldosterone levels and does not significantly alter total cholesterol, triglycerides, serum glucose, or uric acid levels. Hypotension is rare, but caution is advised in patients with an activated renin-angiotensin system, such as those on high-dose diuretics or with heart failure.

Pharmacokinetics

Valsartan is well absorbed after oral administration, with peak plasma concentrations occurring within 2 to 4 hours. It has an elimination half-life of approximately 6 hours, with a bioavailability of around 25% due to first-pass metabolism. Valsartan is primarily eliminated via the feces and to a lesser extent through urine, with renal impairment not significantly affecting its pharmacokinetics.

Contra-indications

  • Biliary obstructive disorders
  • Cholestasis

Adverse effects

  • Anaemia
  • Arrhythmias
  • Chest pain
  • Cystitis
  • Depression
  • Dyspnoea
  • Flatulence
  • Gastrointestinal disturbances
  • Interstitial lung disease
  • Liver disorder
  • Pain in extremities
  • Sepsis
  • Taste alteration
  • Tendon pain
  • Visual impairment

Interactions

  • Taxanes (unknown effect on exposure)

Precautions

  • Caution in patients with heart failure
  • Monitor for symptomatic hypotension in patients with activated renin-angiotensin system
  • Adjust dose in hepatic impairment
  • Initial lower doses in renal impairment

Pregnancy

Use only if potential benefit justifies potential risk to the fetus. Contraindicated in the second and third trimesters due to potential harm.

Breast-feeding

Not recommended due to potential adverse effects on the infant.

Storage

Store at room temperature, away from moisture and heat.

Formulations

  • Valsartan 40 mg capsules
  • Valsartan 80 mg capsules
  • Oral suspension
BNF 85 (British National Formulary) p.215 BNF for Children 2019-2020 p.140 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: Hydrochlorothiazide

PubChem CID 3639

Molecular 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.

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

Molecular reference: Valsartan

PubChem CID 60846

Molecular formula: C24H29N5O3

Mechanism of action

Valsartan belongs to the angiotensin II receptor blocker (ARB) family of drugs, which selectively bind to angiotensin receptor 1 (AT1) and prevent angiotensin II from binding and exerting its hypertensive effects. These include vasoconstriction, stimulation and synthesis of aldosterone and ADH, cardiac stimulation, and renal reabsorption of sodium among others. Overall, valsartan's physiologic effects lead to reduced blood pressure, lower aldosterone levels, reduced cardiac activity, and increased excretion of sodium. Valsartan also affects the renin-angiotensin aldosterone system (RAAS), which 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 prevent ventricular hypertrophy. The angiotensin-converting enzyme inhibitor (ACEI) class of medications (which includes drugs such as [ramipril], [lisinopril], and [perindopril]) inhibits the conversion of angiotensin I to angiotensin II by inhibiting the ACE enzyme but does not prevent the formation of all angiotensin II. ARB activity is unique in that it blocks all angiotensin II activity, regardless of where or how it was synthesized. Valsartan is commonly used for the management of hypertension, heart failure, and type 2 diabetes-associated nephropathy, particularly in patients who are unable to tolerate ACE inhibitors. ARBs such as valsartan have been shown in a number of large-scale clinical outcomes trials to improve cardiovascular outcomes including reducing risk of myocardial infarction, stroke, the progression of heart failure, and hospitalization. Valsartan also slows the progression of diabetic nephropathy due to its renoprotective effects. Improvements in chronic kidney disease with valsartan include both clinically and statistically significant decreases in urinary albumin and protein excretion in patients diagnosed with type 2 diabetes and in nondiabetic patients diagnosed with chronic kidney disease. Valsartan also binds to the AT2 receptor, however AT2 is not known to be associated with cardiovascular homeostasis like AT1. Valsartan has about 20,000-fold higher affinity for the AT1 receptor than for the AT2 receptor. The increased plasma levels of angiotensin II following AT1 receptor blockade with valsartan may stimulate the unblocked AT2 receptor. Valsartan, a nonpeptide tetrazole derivative, is an angiotensin II type 1 (AT1) receptor antagonist. Valsartan has pharmacologic actions similar to those of losartan; however, unlike losartan, valsartan is not a prodrug and its pharmacologic activity does not depend on hydrolysis in the liver. Valsartan blocks the physiologic actions of angiotensin II, including vasoconstrictor and aldosterone-secreting effects, by selectively inhibiting access of angiotensin II to AT1 receptors within many tissues, including vascular smooth muscle and the adrenal gland. By comparison, angiotensin-converting enzyme (ACE, kininase II) inhibitors block the conversion of angiotensin I to angiotensin II; however, the blockade of angiotensin II production by ACE inhibitors is not complete since the vasopressor hormone can be formed via other enzymes that are not blocked by ACE inhibitors. Because valsartan, unlike ACE inhibitors, does not inhibit ACE, the drug does not interfere with response to bradykinins and substance P; a beneficial consequence is the absence of certain ACE inhibitor-induced adverse effects (e.g., cough),

Pharmacodynamics

Valsartan inhibits the pressor effects of angiotensin II with oral doses of 80 mg inhibiting the pressor effect by about 80% at peak with approximately 30% inhibition persisting for 24 hours. Removal of the negative feedback of angiotensin II causes a 2- to 3-fold rise in plasma renin and consequent rise in angiotensin II plasma concentration in hypertensive patients. Minimal decreases in plasma aldosterone were observed after administration of valsartan. In multiple-dose studies in hypertensive patients, valsartan had no notable effects on total cholesterol, fasting triglycerides, fasting serum glucose, or uric acid. **Hypotension** Excessive hypotension was rarely seen (0.1%) in patients with uncomplicated hypertension treated with valsartan alone. In patients with an activated renin-angiotensin system, such as volume- and/or salt-depleted patients receiving high doses of diuretics, symptomatic hypotension may occur. This condition should be corrected prior to administration of valsartan, or the treatment should start under close medical supervision. Caution should be observed when initiating therapy in patients with heart failure. Patients with heart failure given valsartan commonly have some reduction in blood pressure, but discontinuation of therapy because of continuing symptomatic hypotension usually is not necessary when dosing instructions are followed. In controlled trials in heart failure patients, the incidence of hypotension in valsartan-treated patients was 5.5% compared to 1.8% in placebo-treated patients. If excessive hypotension occurs, the patient should be placed in the supine position and, if necessary, given 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. **Impaired Renal Function** Changes in renal function including acute renal failure can be caused by drugs that inhibit the renin-angiotensin system and by diuretics. Patients whose renal function may depend in part on the activity of the renin-angiotensin system (e.g., patients with renal artery stenosis, chronic kidney disease, severe congestive heart failure, or volume depletion) may be at particular risk of developing acute renal failure on valsartan. Monitor renal function periodically in these patients. Consider withholding or discontinuing therapy in patients who develop a clinically significant decrease in renal function on valsartan. **Hyperkalemia** Some patients with heart failure have developed increases in potassium. These effects are usually minor and transient, and they are more likely to occur in patients with pre-existing renal impairment. Dosage reduction and/or discontinuation of valsartan may be required.

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

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