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Anticipating the Unpredictable: A Review of Antimicrobial Stewardship and Acinetobacter Infections
Eric Wenzler1, Debra A Goff2, Romney Humphries3
1College of Pharmacy, University of Illinois at Chicago, Chicago, IL, USA. wenzler@uic.edu.
Abstract:
Acinetobacter remains one of the most challenging pathogens in the field of infectious diseases owing primarily to the uniqueness and multiplicity of its resistance mechanisms. This resistance often leads to devastatingly long delays in time to appropriate therapy and increased mortality for patients afflicted with Acinetobacter infections. Selecting appropriate empiric and definitive antibacterial therapy for Acinetobacter is further complicated by the lack of reliability in commercial antimicrobial susceptibility testing devices and limited breakpoint interpretations for available agents. Existing treatment options for infections due to Acinetobacter are limited by a lack of robust efficacy and safety data along with concerns regarding appropriate dosing, pharmacokinetic/pharmacodynamic targets, and toxicity. Antimicrobial stewardship programs are essential to combat this unpredictable pathogen through use of infection prevention, rapid diagnostics, antibiogram-optimized treatment regimens, and avoidance of overuse of antimicrobials. The drug development pipeline includes several agents with encouraging in vitro activity against Acinetobacter, but their place in therapy and contribution to the armamentarium against this pathogen remain to be defined. The objective of this review is to highlight the unique challenge of treating infections due to Acinetobacter and summarize recent literature regarding optimal antimicrobial treatment for this pathogen. The drug development pipeline is also explored for future potentially effective treatment options.
Insights
Acinetobacter infections pose significant challenges due to antimicrobial resistance, complicating treatment and increasing mortality. This review highlights current treatment difficulties and explores new drug development for Acinetobacter infections.
Area of Science:
- Infectious Diseases
- Microbiology
- Pharmacology
Background:
- Acinetobacter is a challenging pathogen due to unique and multiple resistance mechanisms.
- Antimicrobial resistance in Acinetobacter leads to treatment delays and increased patient mortality.
- Reliability issues in susceptibility testing and limited breakpoint interpretations complicate therapy selection.
Purpose of the Study:
- To highlight the challenges in treating Acinetobacter infections.
- To summarize recent literature on optimal antimicrobial treatment strategies.
- To explore the drug development pipeline for future treatment options.
Main Methods:
- Literature review of recent studies on Acinetobacter infections.
- Analysis of current treatment options, including efficacy, safety, and dosing.
- Exploration of the drug development pipeline for novel agents.
Main Results:
- Existing treatments for Acinetobacter infections have limited efficacy and safety data.
- Antimicrobial stewardship is crucial for managing Acinetobacter infections.
- Several new agents show promising in vitro activity but require further evaluation.
Conclusions:
- Treating Acinetobacter infections requires careful consideration of resistance mechanisms and limited therapeutic options.
- Antimicrobial stewardship programs are essential for effective management.
- The drug development pipeline offers potential future treatments, but their clinical utility is yet to be determined.
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