Overview of Bivol
Bivol is a medicinal product containing the active ingredient Nebivolol, which is a synthetic compound designed to manage and support the cardiovascular system. It is supplied as an oral formulation in the form of a tablet. The drug is defined by its distinctive pharmacological classification and its unique dual mechanism of action on the heart and blood vessels.
Quick Facts
| Property | Description |
|---|---|
| Active Ingredient | Nebivolol |
| Form | Tablet (Oral formulation) |
| Pharmacological Class | Third-generation beta-blocker |
| General Purpose | Reduction of cardiac workload and systemic blood pressure |
| Origin | Synthetic compound |
Pharmacological Class: Third-Generation beta-Blocker
Bivol is classified as a third-generation beta-blocker (beta-adrenoceptor blocking agent), positioning it among the modern compounds in this therapeutic class. Its fundamental function is that of a highly selective beta1-adrenergic receptor antagonist, meaning it preferentially targets and blocks specific receptors primarily found in the heart muscle. This high beta1-selectivity is a key attribute, often resulting in fewer off-target effects compared to older, non-selective agents. Nebivolol is designated as a third-generation agent due to its property of concurrent vasodilation.
Composition and Dual-Action Purpose
The single active ingredient, Nebivolol, forms the basis of the product, which is combined with solid excipients to create the tablet dosage form for oral administration. Nebivolol is structurally a racemic mixture of two distinct mirror-image forms (stereoisomers). This structural complexity is a core differentiating feature, as both isomers contribute to the drug's activity, which provides dual cardiovascular support.
The general therapeutic purpose of Bivol stems directly from this dual-action mechanism. Beyond the traditional blockade of beta1-receptors that lowers the heart rate and reduces contractile force, Nebivolol is characterized by its ability to promote the widening and relaxation of arteries via nitric oxide (NO)-mediated vasodilation. This combination makes it an antihypertensive agent, used to reduce elevated systemic pressure and stabilize overall cardiovascular function.
Regulatory References


