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Carbapenemases: Transforming Acinetobacter baumannii into a Yet More Dangerous Menace
Maria Soledad Ramirez1, Robert A Bonomo2,3,4, Marcelo E Tolmasky1
1Center for Applied Biotechnology Studies, Department of Biological Science, California State University Fullerton, Fullerton, CA 92831, USA.
Abstract:
Acinetobacter baumannii is a common cause of serious nosocomial infections. Although community-acquired infections are observed, the vast majority occur in people with preexisting comorbidities. A. baumannii emerged as a problematic pathogen in the 1980s when an increase in virulence, difficulty in treatment due to drug resistance, and opportunities for infection turned it into one of the most important threats to human health. Some of the clinical manifestations of A. baumannii nosocomial infection are pneumonia; bloodstream infections; lower respiratory tract, urinary tract, and wound infections; burn infections; skin and soft tissue infections (including necrotizing fasciitis); meningitis; osteomyelitis; and endocarditis. A. baumannii has an extraordinary genetic plasticity that results in a high capacity to acquire antimicrobial resistance traits. In particular, acquisition of resistance to carbapenems, which are among the antimicrobials of last resort for treatment of multidrug infections, is increasing among A. baumannii strains compounding the problem of nosocomial infections caused by this pathogen. It is not uncommon to find multidrug-resistant (MDR, resistance to at least three classes of antimicrobials), extensively drug-resistant (XDR, MDR plus resistance to carbapenems), and pan-drug-resistant (PDR, XDR plus resistance to polymyxins) nosocomial isolates that are hard to treat with the currently available drugs. In this article we review the acquired resistance to carbapenems by A. baumannii. We describe the enzymes within the OXA, NDM, VIM, IMP, and KPC groups of carbapenemases and the coding genes found in A. baumannii clinical isolates.
Insights
Acinetobacter baumannii causes severe hospital infections, with resistance to last-resort carbapenem drugs increasing. This review details carbapenemase enzymes and genes in drug-resistant Acinetobacter baumannii strains.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Acinetobacter baumannii is a significant cause of nosocomial infections, particularly in patients with comorbidities.
- This pathogen has become a major health threat due to increased virulence and antimicrobial resistance since the 1980s.
- A. baumannii infections manifest in various forms, including pneumonia, bloodstream infections, and severe soft tissue infections.
Purpose of the Study:
- To review the mechanisms of acquired carbapenem resistance in Acinetobacter baumannii.
- To describe carbapenemase enzymes and their encoding genes found in clinical isolates of A. baumannii.
Main Methods:
- Literature review focusing on Acinetobacter baumannii.
- Analysis of genetic mechanisms conferring carbapenem resistance.
- Description of carbapenemase enzyme families (OXA, NDM, VIM, IMP, KPC) and associated genes.
Main Results:
- Acinetobacter baumannii exhibits remarkable genetic plasticity, facilitating rapid acquisition of antimicrobial resistance.
- Increasing resistance to carbapenems, critical last-resort antibiotics, is a major concern.
- Clinical isolates frequently display multidrug-resistant (MDR), extensively drug-resistant (XDR), and pan-drug-resistant (PDR) phenotypes.
Conclusions:
- Acquired carbapenem resistance in A. baumannii poses a severe challenge for treating nosocomial infections.
- Understanding the specific carbapenemase enzymes and genes is crucial for developing effective therapeutic strategies.
- The rise of MDR, XDR, and PDR A. baumannii necessitates urgent attention in healthcare settings.
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