Overview of Oxigen
Quick Facts
| Property | Description |
|---|---|
| Active ingredient | Nimodipine |
| Form | Oral tablets, Solution for infusion |
| Pharmacological class | Calcium Channel Blocker (Dihydropyridine) |
| General purpose | Targeted cerebral blood flow improvement |
| Origin | Synthetic compound |
Oxigen: The Identity and Composition of Nimodipine
Oxigen is the trade name for a medicine containing the single active substance, Nimodipine, which is the internationally recognized nonproprietary name (INN) for the compound. As a synthetic compound, it is supplied exclusively as a prescription-only medicine (Rx), primarily for use in adults. Nimodipine is chemically defined as a dihydropyridine derivative and is provided in two primary dosage forms: oral tablets and a solution for infusion, allowing for administration via both the oral and intravenous (IV) routes. Nimodipine's composition as a single active ingredient product is clinically recognized for delivering a targeted effect in acute neurological settings.
Pharmacological Type: A Selective Cerebral Calcium Channel Blocker
Nimodipine belongs to the established pharmacological class of calcium channel blockers. Its mechanism involves inhibiting the influx of calcium ions into the vascular smooth muscle cells. Unlike many general systemic agents in this class, Nimodipine is notably distinguished by its higher affinity for the blood vessels of the brain, leading to its classification as a selective cerebral vasodilator. The high lipophilicity of Nimodipine facilitates its distinct ability to readily cross the blood-brain barrier. This specific targeting is a key differentiating factor that separates Nimodipine from other calcium channel blocking medicines.
General Purpose and Benefit in Cerebrovascular Care
The general purpose of Nimodipine's selective action is to achieve targeted blood flow improvement within the brain's circulation. By relaxing constricted cerebral arteries (selective vessel relaxation), the medicine works to prevent insufficient blood flow and oxygen supply to sensitive brain tissue. This action supports the preservation of neurological function, serving the general purpose of neuroprotection within acute cerebrovascular care.
Regulatory References

