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Registered Kenya · PPB

TELTAN CL 80

TELMISARTAN & CHLORTALIDONE

H2010/22464/322 80MG & 25MG GENERIC/BIOSIMILARS cardiovascular system INN generic

What it does

Chlortalidone is a type of medication known as a thiazide diuretic, which helps your body get rid of excess fluid and lowers blood pressure.

Commonly used for: high blood pressure (hypertension), swelling (oedema) due to heart or kidney problems

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

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Registration & product details

Registration no.
H2010/22464/322
Registration date
-
Expiry date
-
Status
Registered
Active ingredient
TELMISARTAN & CHLORTALIDONE
Dosage form
80MG & 25MG
Strength
-
Pack size
PACKED IN 3×10 ALU ALU PACK
Therapeutic class
GENERIC/BIOSIMILARS
ATC class (WHO)
C03BA - Sulfonamides, plain
RxNorm RxCUI
2409
Manufacturer / MAH
Surgilinks
Applicant / LTR
SURGILINKS LIMITED
Country of origin
FOREIGN
Manufacturer location
MRGV+VXV, Mombasa Road, Nairobi, Kenya

Source: Pharmacy and Poisons Board · fetched 2026-01-28 20:30:23 · updated 2026-07-26 09:29:28

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

About chlortalidone

Chlortalidone is a type of medication known as a thiazide diuretic, which helps your body get rid of excess fluid and lowers blood pressure.

What it treats

  • high blood pressure (hypertension)
  • swelling (oedema) due to heart or kidney problems

How it works

It works by helping the kidneys remove extra salt and water from the body, which lowers blood pressure and reduces swelling.

Who it's for

It is usually prescribed for adults with high blood pressure or conditions that cause fluid buildup.

Drug class

Thiazide diuretics

Cautions

  • • Be careful if you are taking other medications that lower blood pressure.
  • • Avoid medicines that can lower potassium levels in your blood.
  • • Use with caution if taking drugs 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 telmisartan

Telmisartan is a medicine that helps lower blood pressure and protect your heart.

What it treats

  • high blood pressure (hypertension)
  • heart protection

How it works

Telmisartan works by blocking a substance in your body that can raise blood pressure, helping your blood vessels relax.

Who it's for

Telmisartan is for adults with high blood pressure or those needing heart protection.

Drug class

Angiotensin-II receptor antagonists

Cautions

  • • Be careful if you take medications that can cause low blood pressure when starting this medicine.
  • • Avoid medications that can lower blood pressure too much.
  • • Watch out for medicines that can increase potassium levels in your blood.

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

Clinical monograph: Chlortalidone

BNF-referenced

Chlortalidone is a thiazide-like diuretic used primarily for the management of hypertension and edema associated with various conditions such as heart failure and nephrotic syndrome. It functions by inhibiting sodium and chloride reabsorption in the renal tubules, leading to increased urine output and decreased blood volume. This mechanism contributes to its antihypertensive effects.

Indications

  • Hypertension
  • Oedema associated with heart failure
  • Oedema due to nephrotic syndrome
  • Ascites due to cirrhosis in stable patients

Dosage

Children: Refer to the BNF for Children for appropriate dosing guidelines.

Adults: Initially 25 mg daily, taken in the morning; this may be increased to 50 mg daily if necessary. For edema, the initial dose can be 50-100 mg once daily, depending on the clinical situation.

Mechanism of action

Chlorthalidone prevents reabsorption of sodium and chloride by inhibiting the Na+/Cl- symporter in the cortical diluting segment of the ascending limb of the loop of Henle. This inhibition results in osmotic diuresis, reducing plasma volume and extracellular fluid. Additionally, it increases sodium delivery to the distal renal tubule, promoting potassium excretion. Its antihypertensive effects are thought to be due to reduced cardiac output and decreased total peripheral resistance, alongside possible alterations in platelet aggregation and vascular permeability.

Pharmacodynamics

Chlorthalidone exhibits dose-dependent diuretic effects, leading to increased urine production and decreased plasma volume. This results in a reduction of blood pressure through decreased cardiac output initially, followed by a reduction in peripheral vascular resistance. The drug also has implications in reducing cardiovascular risks, possibly through its action on carbonic anhydrase-related pathways.

Pharmacokinetics

Chlorthalidone is well absorbed following oral administration, with peak plasma concentrations occurring within 12 hours. It has a long half-life, allowing for once-daily dosing. The drug is primarily excreted unchanged in the urine. Monitoring of electrolytes, particularly potassium, is recommended due to the potential for hypokalemia, especially in patients with renal impairment.

Contra-indications

  • Addison’s disease
  • Anuria
  • Hyperkalaemia

Adverse effects

  • Diarrhoea
  • Nausea
  • Vomiting
  • Dry mouth
  • Headache
  • Hyperuricaemia
  • Renal failure (reversible on discontinuation)
  • Skin reactions
  • Megaloblastic anaemia
  • Nephritis
  • Pancytopenia
  • Photosensitivity
  • Asthenia
  • Jaundice
  • Metabolic acidosis
  • Urine discolouration

Interactions

  • Potassium-sparing diuretics
  • Thiazide diuretics

Precautions

  • Caution in diabetes mellitus
  • Monitor electrolytes
  • Caution in renal impairment
  • Caution in hepatic impairment

Pregnancy

Not used to treat gestational hypertension. Avoid unless essential.

Breast-feeding

Present in milk-manufacturer advises to avoid. Large doses may suppress lactation.

Storage

Store at room temperature, away from moisture and heat.

Formulations

  • Chlortalidone 25 mg tablets
  • Chlortalidone 50 mg tablets
BNF 85 (British National Formulary) p.271 BNF for Children 2019-2020 p.166 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: Telmisartan

BNF-referenced

Telmisartan is an angiotensin-II receptor antagonist primarily used to treat hypertension. It belongs to the class of drugs known for their ability to lower blood pressure by inhibiting the effects of angiotensin II, a potent vasoconstrictor. Additionally, telmisartan may offer metabolic benefits through its partial agonistic effects on peroxisome proliferator-activated receptor gamma (PPARγ).

Indications

  • Hypertension
  • Heart failure
  • Chronic kidney disease
  • Diabetic nephropathy

Dosage

Children: For paediatric patients, refer to the BNF for Children for appropriate dosing guidelines.

Adults: The usual starting dose is 40 mg once daily, which may be adjusted based on blood pressure response. The maximum recommended dose is 80 mg per day.

Mechanism of action

Telmisartan interferes with the binding of angiotensin II to the angiotensin II AT1 receptor by selectively binding to these receptors in vascular smooth muscle and the adrenal gland. This blockage leads to reduced systemic vascular resistance and lower blood pressure. Telmisartan is not an ACE inhibitor and does not affect other hormone receptors or ion channels. It may also enhance carbohydrate and lipid metabolism via its PPARγ activity.

Pharmacodynamics

Telmisartan exhibits high affinity for the AT1 receptor subtype, making it an effective angiotensin II antagonist. It plays a significant role in lowering blood pressure by preventing vasoconstriction and aldosterone release. The potential PPARγ agonistic properties suggest additional metabolic advantages, including improved glucose and lipid metabolism.

Pharmacokinetics

Telmisartan is administered orally and has a high bioavailability. It is extensively bound to plasma proteins and undergoes hepatic metabolism, primarily via glucuronidation. The drug has a long half-life, allowing for once-daily dosing. Excretion occurs mainly through the feces, with minimal renal elimination.

Contra-indications

  • Hypersensitivity to telmisartan or any of the excipients
  • Severe hepatic impairment
  • Severe renal impairment or patients on dialysis

Adverse effects

  • Dizziness
  • Fatigue
  • Hypotension
  • Hyperkalemia
  • Renal impairment
  • Angioedema

Interactions

  • Other antihypertensives
  • Nonsteroidal anti-inflammatory drugs (NSAIDs)
  • Lithium
  • Potassium-sparing diuretics
  • Renin-angiotensin-aldosterone system (RAAS) inhibitors

Precautions

  • Monitor renal function, particularly in patients with renal artery stenosis
  • Caution in patients with a history of angioedema
  • Use with caution in patients with diabetes
  • Monitor potassium levels in patients at risk for hyperkalemia

Pregnancy

Telmisartan is not recommended during pregnancy, particularly in the second and third trimesters, due to potential harm to the fetus.

Breast-feeding

The effects of telmisartan on breastfed infants are unknown; caution should be exercised.

Storage

Store at room temperature, away from moisture and heat.

Formulations

  • Tablets: 20 mg, 40 mg
  • Combination tablets with hydrochlorothiazide: 20 mg/12.5 mg, 40 mg/12.5 mg
BNF 85 (British National Formulary) p.214 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: Chlortalidone

PubChem CID 2732

Molecular formula: C14H11ClN2O4S

Mechanism of action

Chlorthalidone prevents reabsorption of sodium and chloride through inhibition of the Na+/Cl- symporter in the cortical diluting segment of the ascending limb of the loop of Henle. Reduction of sodium reabsorption subsequently reduces extracellular fluid and plasma volume via an osmotic, sodium-driven diuresis. By increasing the delivery of sodium to the distal renal tubule, Chlorthalidone indirectly increases potassium excretion via the sodium-potassium exchange mechanism. The exact mechanism of chlorthalidone's anti-hypertensive effect is under debate, however, it is thought that increased diuresis results in decreased plasma and extracellular fluid volume which therefore requires decreased cardiac output and overall lowers blood pressure. Chlorthalidone has also been shown to decrease platelet aggregation and vascular permeability, as well as promote angiogenesis in vitro, which is thought to be partly the result of reductions in carbonic anhydrase–dependent pathways. These pathways may play a role in chlorthalidone's cardiovascular risk reduction effects. ...ACT BY INHIBITING RENAL TUBULAR TRANSPORT OF VARIOUS IONS. Decreased plasma volume and decreased extracellular fluid volume; decreased cardiac output initially, followed by decreased total peripheral resistance with normalization of cardiac output ... /from table/ ...ANTIHYPERTENSIVE EFFECT OF CHLORTHALIDONE IS THOUGHT TO BE DUE TO DECR CARDIAC OUTPUT. The exact mechanism for reduction of arterial blood pressure by diuretics is not certain. Initially the drugs decrease extracellular volume and cardiac output. However, the hypotensive effect is maintained during long-term therapy because of reduced vascular resistance ... /Diuretics/ For more Mechanism of Action (Complete) data for CHLORTHALIDONE (8 total), please visit the HSDB record page.

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

Molecular reference: Telmisartan

PubChem CID 65999

Molecular formula: C33H30N4O2

Mechanism of action

Telmisartan interferes with the binding of angiotensin II to the angiotensin II AT<sub>1</sub>-receptor by binding reversibly and selectively to the receptors in vascular smooth muscle and the adrenal gland. As angiotensin II is a vasoconstrictor, which also stimulates the synthesis and release of aldosterone, blockage of its effects results in decreases in systemic vascular resistance. Telmisartan does not inhibit the angiotensin converting enzyme, other hormone receptors, or ion channels. Studies also suggest that telmisartan is a partial agonist of PPAR&gamma;, which is an established target for antidiabetic drugs. This suggests that telmisartan can improve carbohydrate and lipid metabolism, as well as control insulin resistance without causing the side effects that are associated with full PPAR&gamma; activators. Migration of CD4-positive lymphocytes into the vessel wall represents an important step in early atherogenesis. Telmisartan is an angiotensin type 1 receptor (AT1R) blocker with peroxisome proliferator-activated receptor (PPAR)-gamma-activating properties. The present study examined the effect of telmisartan on CD4-positive cell migration and the role of PPARgamma in this context. CD4-positive lymphocytes express both the AT1R and PPARgamma. Stimulation of CD4-positive lymphocytes with stromal cell-derived factor (SDF)-1 leads to a 4.1+/-3.1-fold increase in cell migration. Pretreatment of cells with telmisartan reduces this effect in a concentration-dependent manner to a maximal 1.6+/-0.7-fold induction at 10 mumol/L of telmisartan (P<0.01 compared with SDF-1-treated cells; n=22). Three different PPARgamma activators, rosiglitazone, pioglitazone, and GW1929, had similar effects, whereas eprosartan, a non-PPARgamma-activating AT1R blocker, did not affect chemokine-induced lymphocyte migration. Telmisartan's effect on CD4-positive lymphocyte migration was mediated through an early inhibition of chemokine-induced phosphatidylinositol 3-kinase activity. Downstream, telmisartan inhibited F-actin formation, as well as intercellular adhesion molecule-3 translocation. Transfection of CD4-positive lymphocytes with PPARgamma small interfering RNA abolished telmisartan's effect on migration, whereas blockade of the AT1R had no such effect. Telmisartan inhibits chemokine-induced CD4-positive cell migration independent of the AT1R via PPARgamma. These data provide a novel mechanism to explain how telmisartan modulates lymphocyte activation by its PPARgamma-activating properties. 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. Telmisartan blocks the vasoconstrictor and aldosterone-secreting effects of angiotensin II by selectively blocking the binding of angiotensin II to the AT1 receptor in many tissues, such as vascular smooth muscle and the adrenal gland. Its action is therefore independent of the pathways for angiotensin II synthesis. There is also an AT2 receptor found in many tissues, but AT2 is not known to be associated with cardiovascular homeostasis. Telmisartan has much greater affinity (>3,000 fold) for the AT1 receptor than for the AT2 receptor. Blockade of the renin-angiotensin system with ACE inhibitors, which inhibit the biosynthesis of angiotensin II from angiotensin I, is widely used in the treatment of hypertension. ACE inhibitors also inhibit the degradation of bradykinin, a reaction also catalyzed by ACE. Because telmisartan does not inhibit ACE (kininase II), it does not affect the response to bradykinin. Whether this difference has clinical relevance is not yet known. Telmisartan does not bind to or block other hormone receptors or ion channels known to be important in cardiovascular regulation. Block

Pharmacodynamics

Telmisartan is an orally active nonpeptide angiotensin II antagonist that acts on the AT<sub>1</sub> receptor subtype. It has the highest affinity for the AT<sub>1</sub> receptor among commercially available ARBs and has minimal affinity for the AT<sub>2</sub> receptor. New studies suggest that telmisartan may also have PPAR&gamma; agonistic properties that could potentially confer beneficial metabolic effects, as PPAR&gamma; is a nuclear receptor that regulates specific gene transcription, and whose target genes are involved in the regulation of glucose and lipid metabolism, as well as anti-inflammatory responses. This observation is currently being explored in clinical trials. 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. Telmisartan works by blocking the vasoconstrictor and aldosterone secretory effects of angiotensin II.

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

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