Overview of Tienam
Quick Facts
| Property | Description |
|---|---|
| Active Ingredients | Imipenem and Cilastatin |
| Form | Powder for solution for infusion |
| Pharmacological Class | Carbapenem Antibiotic, DHP-I Inhibitor Combination |
| Common Use | Treatment of serious bacterial infections |
| Origin | Synthetic derivative and synthetic compound |
What is the Carbapenem Combination of Imipenem and Cilastatin?
Tienam is a well-recognized fixed-dose combination product containing the active ingredients Imipenem and Cilastatin, which is classified as an essential, high-priority antibacterial agent. It belongs to the carbapenem class of antibiotics, which are advanced beta-lactam compounds utilized for addressing complex and severe bacterial infections. Imipenem is a potent, synthetic derivative of thienamycin, designed to offer a significantly broad spectrum of activity against difficult-to-treat, often susceptible organisms. This combination, which is clinically recognized for its role in fighting infections that require robust, broad-spectrum coverage, is also known by the brand name Primaxin in various regions.
Composition and Pharmaceutical Form
The medicine is composed of two components that are functionally necessary: Imipenem, the primary bactericidal ingredient that works to destroy bacteria, and Cilastatin, which serves as a protective Dehydropeptidase-I Inhibitor. Cilastatin itself has no antibacterial properties but prevents the body’s enzymes from rapidly inactivating Imipenem in the kidney, a crucial inhibitory action that ensures the full therapeutic concentration is reached at the site of infection. Tienam is supplied exclusively as a sterile powder for solution for infusion, which must be reconstituted and delivered via the parenteral (intravenous) route of administration, a form necessary for rapid, systemic distribution in critically ill patients.
General Purpose of this Broad-Spectrum Agent
The general purpose of this combination is to provide a highly reliable and potent defense capable of neutralizing a wide array of severe systemic infections caused by diverse susceptible organisms. The dual-action mechanism is designed to ensure a quick, robust, and broad-spectrum effect against serious, widespread bacterial threats. This makes it a critical resource for typical scenarios involving severe hospital-acquired infections where the infecting pathogen is unknown or may harbor resistance.
Regulatory References

