Overview of Teracin
| Property | Description |
|---|---|
| Active Ingredient | Oxytetracycline Hydrochloride |
| Form | Capsule, Tablet, Ointment, Solution |
| Pharmacological Class | Tetracycline Antibiotic, Anti-infective |
| Common Use | Treating susceptible bacterial infections |
| Origin | Natural product derivative (Streptomyces rimosus) |
What Type of Medicine is Teracin?
Teracin is an anti-infective medicinal product that primarily serves to suppress the growth of susceptible bacteria. Its core active compound, Oxytetracycline Hydrochloride, is officially classified as a tetracycline antibiotic. This classification places the drug among the broad-spectrum agents, effective against a wide variety of bacterial pathogens, and clinically recognized for its role in anti-infective therapy. Teracin is positioned as a broad-utility option, often indicated for skin or respiratory tract infections, a common use scenario for this class. Oxytetracycline is characterized by a bacteriostatic effect, meaning it inhibits the bacteria's ability to multiply and spread, thereby assisting the body's natural immune processes in clearing the remaining organisms.
Composition, Origin, and Available Forms
The core active substance, Oxytetracycline, is a derivative of a natural product, originally isolated from the soil-dwelling bacterium Streptomyces rimosus. The active substance is typically used as the hydrochloride salt to ensure its optimal stability and absorption properties. Teracin preparations are designed for versatility and are available in several dosage forms, including capsules or tablets intended for oral (systemic) administration, as well as ointments or solutions suitable for topical (external) application. The distinction between its oral and topical forms highlights varied treatment approaches depending on the infection's location.
What is the General Purpose of Teracin?
The general purpose of Teracin is to provide pharmacological suppression of bacterial populations involved in various infections. This is achieved by the compound entering the bacterial cell and interfering with the crucial process of protein synthesis. This mechanism, common to all tetracyclines, is an effective way of disrupting the bacterial life cycle. This foundational action of halting reproduction provides the generalized benefit of managing and limiting the proliferation of infectious agents throughout the body.
Regulatory References

