Overview of Ranitidine Arrow
Quick Facts
| Property | Description |
|---|---|
| Active ingredient | Ranitidine Hydrochloride |
| Form | Film-coated tablets, oral solution, solution for injection |
| Pharmacological class | Histamine H2-receptor antagonist (H2-blocker) |
| Common use | Reducing stomach acid and relieving related irritation |
| Origin | Synthetic compound |
What Type of Medicine is Ranitidine Arrow?
Ranitidine is a single-component product with the active ingredient Ranitidine Hydrochloride as its core substance. This medicine is a synthetic compound classified pharmacologically as a Histamine H2-receptor antagonist, commonly known as an H2-blocker. This classification means the medicine is specifically designed to reduce the quantity of acid produced within the stomach. H2-blockers work by decreasing the amount of acid the stomach makes, a mechanism utilized for providing sustained relief from acid-related discomfort.
Composition and Physical Form of Ranitidine
The active ingredient, Ranitidine Hydrochloride, is formulated alongside standard pharmaceutical excipients, not a natural base. Ranitidine is presented in multiple high-level dosage forms, including the common film-coated tablets for oral administration, as well as an oral solution and a solution for injection. This availability confirms the medicine's use through both oral and parenteral administration routes, ensuring flexible management of gastric acid secretion across various medical settings. The drug possesses properties as an acid-reducing agent with anti-secretory effects.
How Does Ranitidine Help the Body?
The primary function of this medicine is to alleviate discomfort and irritation caused by excessive stomach acid by promoting a less corrosive environment. Ranitidine achieves this through its highly specific action: it performs competitive antagonism of the histamine signal that triggers acid production. By blocking the specific H2-receptors on the stomach lining cells, the medicine significantly reduces the quantity and concentration of gastric acid secretion. This mechanism is frequently applied in managing the burning sensation often associated with temporary episodes of indigestion.
Regulatory References

