Overview of OM-5
| Property | Description |
|---|---|
| Active Ingredient | Oleandomycin |
| Pharmacological Class | Macrolide Antibiotic / Anti-Infective |
| Origin | Natural Product (from Streptomyces antibioticus) |
| Forms | Capsules, Powder for Solution for Injection |
| General Purpose | To inhibit the growth of susceptible bacteria |
What Type of Medicine is OM-5 (Oleandomycin)?
OM-5 refers to the compound Oleandomycin, which is classified as a macrolide antibiotic and an anti-bacterial agent. This substance is a natural product, originally isolated in 1954 through the fermentation process of the microorganism Streptomyces antibioticus. Oleandomycin is designated within the J01FA ATC code group, which comprises systemically administered antibacterials. As a single-ingredient drug, Oleandomycin is available in pharmaceutical forms like capsules for oral intake and as a sterile powder for solution for injection for parenteral use.
The Composition and Chemical Structure of Oleandomycin
The sole active ingredient in this medication is Oleandomycin, a complex polyketide molecule characterized by its specific 14-membered macrolide ring structure. For therapeutic application, the active substance is typically converted into a pharmaceutically stable salt, such as Oleandomycin hydrochloride or Oleandomycin phosphate, to ensure its stability and optimal absorption. This specific structure is recognized for exhibiting antimicrobial activity against various Gram-positive bacteria. Oleandomycin shares a close chemical relationship with the more widely known macrolide, Erythromycin, though specific molecular features differentiate their respective therapeutic profiles.
What is the General Purpose of This Anti-Infective?
The general purpose of Oleandomycin is to act as a bacteriostatic agent, meaning it limits the growth and multiplication of susceptible bacteria in the body. This is achieved by its specific binding to the bacterial 50S ribosomal subunit, which ultimately prevents the microorganisms from performing protein synthesis. This mechanism is critical for controlling microbial expansion, allowing the patient's immune defenses to resolve the infection.
Regulatory References

