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Antimicrobial therapy for Stenotrophomonas maltophilia infections
A C Nicodemo1, J I Garcia Paez
1Department of Infectious Diseases, University of São Paulo Medical School, São Paulo, SP, Brazil. ac_nicodemo@uol.com.br
Abstract:
Stenotrophomonas maltophilia has emerged as an important nosocomial pathogen capable of causing respiratory, bloodstream, and urinary infections. The treatment of nosocomial infections by S. maltophilia is difficult, as this pathogen shows high levels of intrinsic or acquired resistance to different antimicrobial agents, drastically reducing the antibiotic options available for treatment. Intrinsic resistance may be due to reduced outer membrane permeability or to the multidrug efflux pumps. However, specific mechanisms of resistance such as aminoglycoside-modifying enzymes or the heterogeneous production of metallo-beta-lactamase have contributed to the multidrug-resistant phenotype displayed by this pathogen. Moreover, the lack of standardized susceptibility tests and their interpretative criteria hinder the choice of an adequate antibiotic treatment. Recommendations for the treatment of infections by S. maltophilia are based on in vitro studies, certain nonrandomized clinical trials, and anecdotal experience. Trimethoprim-sulfamethoxazole remains the drug of choice, although in vitro studies indicate that ticarcillin-clavulanic acid, minocycline, some of the new fluoroquinolones, and tigecycline may be useful agents. This review describes the main resistance mechanisms, the in vitro susceptibility profile, and treatment options for S. maltophilia infections.
Insights
Stenotrophomonas maltophilia causes difficult-to-treat nosocomial infections due to antimicrobial resistance. Trimethoprim-sulfamethoxazole is the preferred treatment, but other agents show potential.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Stenotrophomonas maltophilia is a significant nosocomial pathogen.
- It causes diverse infections, including respiratory, bloodstream, and urinary tract infections.
- Treatment is challenging due to high intrinsic and acquired antimicrobial resistance.
Purpose of the Study:
- To review resistance mechanisms in S. maltophilia.
- To outline the in vitro susceptibility profile of S. maltophilia.
- To discuss current and potential treatment options for S. maltophilia infections.
Main Methods:
- Literature review of in vitro studies.
- Analysis of nonrandomized clinical trials.
- Examination of anecdotal clinical experience.
Main Results:
- S. maltophilia exhibits resistance via reduced outer membrane permeability and multidrug efflux pumps.
- Specific resistance mechanisms include aminoglycoside-modifying enzymes and metallo-beta-lactamase production.
- Trimethoprim-sulfamethoxazole is the primary treatment; ticarcillin-clavulanic acid, minocycline, fluoroquinolones, and tigecycline show promise.
Conclusions:
- Understanding S. maltophilia resistance mechanisms is crucial for effective treatment.
- Standardized susceptibility testing is needed to guide therapy.
- While trimethoprim-sulfamethoxazole is key, alternative agents warrant consideration for S. maltophilia infections.
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