Overview of ZACTRAN
| Property | Description |
|---|---|
| Active Ingredient | Gamithromycin |
| Form | Sterile parenteral solution (Injectable) |
| Pharmacological Class | Macrolide Antibiotic (Azalide) |
| General Purpose | Anti-infective (Combatting bacterial growth) |
| Origin | Semi-synthetic |
ZACTRAN is a specialized veterinary medicine defined as a powerful anti-infective agent used for the management of bacterial diseases in susceptible livestock. Its fundamental purpose is to support animal health by providing effective treatment and prevention of bacterial infections.
What Type of Antimicrobial is ZACTRAN?
ZACTRAN is classified as a macrolide antibiotic, with its active ingredient being Gamithromycin. This drug belongs more specifically to the azalide antimicrobial sub-class. Gamithromycin is a semi-synthetic compound, meaning it is chemically derived from a natural macrolide precursor to optimize its properties. Its classification as an antimicrobial confirms its role is to target and manage the growth of susceptible bacterial pathogens.
Composition and Form: The Injectable Solution
The product is supplied as a sterile parenteral solution, which is a ready-to-use injectable solution administered via the parenteral route, primarily in cattle and, in some jurisdictions, pigs and sheep. The composition is standardized to contain 150 mg of Gamithromycin as the free base per milliliter of solution. The active substance is dissolved in a glycerol formal solvent vehicle, along with stabilizing excipients like succinic acid, which is necessary to maintain the solution's stability and ensure the reliable delivery of the drug. The injectable format is intended for achieving rapid and highly available therapeutic levels after a single injection.
How Does Gamithromycin Generally Help Resolve Infection?
Gamithromycin helps resolve bacterial infections by acting as a protein synthesis inhibitor within the bacterial cell, which is its high-level mechanism of action. Specifically, it achieves its antibacterial effect by binding to the 50S ribosomal subunit of the bacteria, thereby obstructing the process of protein construction critical for the pathogen's ability to grow and replicate. This inhibition primarily stops the infection from advancing, enabling the animal's own immune defenses to clear the remaining bacteria and achieve the resolution of the bacterial disease.
Regulatory References
































