Overview of Karbis
| Property | Description |
|---|---|
| Active Ingredient | Candesartan cilexetil (Prodrug) |
| Form | Tablet (Oral Solid Dosage Form) |
| Pharmacological Class | Angiotensin II Receptor Antagonists (ARBs) |
| Common Use | Cardiovascular Regulation / Blood Pressure Support |
| Origin | Synthetic (Non-peptide derivative) |
What Type of Medicine is Karbis (Candesartan)?
Karbis is a specific, prescription-only brand name for a synthetic medicine containing the active substance Candesartan cilexetil. This substance is categorized pharmacologically as an Angiotensin II Receptor Antagonist (ARB), a class recognized for its role in systemic cardiovascular regulation and the management of the hormonal balance that affects blood pressure.
Its general purpose is to intervene in the renin-angiotensin-aldosterone system (RAAS) to promote sustained, efficient management of pressure within the circulatory system, a foundational requirement for individuals needing long-term cardiovascular support. Candesartan is chemically characterized as a non-peptide benzimidazole-derived tetrazole derivative.
Composition and Form: The Active Ingredient Candesartan Cilexetil
Karbis is supplied for oral route of administration as a solid tablet dosage form, distinguishing it from liquid or injectable formulations. It is a single active ingredient product. The active substance in the tablets is Candesartan cilexetil, which possesses the unique feature of being a prodrug—an inactive molecule that requires chemical alteration to become active.
Upon ingestion, Candesartan cilexetil rapidly undergoes hydrolysis within the digestive tract, transforming into the fully active agent, Candesartan. This active agent functions as an ARB by blocking the AT1 receptor.
How Candesartan Targets the Circulatory System
The principle underlying Candesartan’s action is the highly selective antagonism of the Angiotensin II type 1 (AT1) receptor. By specifically binding to this receptor, the active molecule prevents the potent hormonal signal, Angiotensin II, from causing vasoconstriction.
This direct blockade of restrictive hormonal effects results in vasodilation, allowing blood vessels to relax and widen. This physiological change reduces resistance in the peripheral vascular system. The overall consequence is a sustained effect that supports effective blood pressure lowering and consistent cardiovascular regulation.
Regulatory References









