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Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Role and Interpretation of Antifungal Susceptibility Testing for the Management of Invasive Fungal Infections
Frederic Lamoth1, Russell E Lewis2, Dimitrios P Kontoyiannis3
1Infectious Diseases Service and Institute of Microbiology, University Hospital of Lausanne, Lausanne University, 1011 Lausanne, Switzerland.
Abstract:
Invasive fungal infections (IFIs) are associated with high mortality rates and timely appropriate antifungal therapy is essential for good outcomes. Emerging antifungal resistance among Candida and Aspergillus spp., the major causes of IFI, is concerning and has led to the increasing incorporation of in vitro antifungal susceptibility testing (AST) to guide clinical decisions. However, the interpretation of AST results and their contribution to management of IFIs remains a matter of debate. Specifically, the utility of AST is limited by the delay in obtaining results and the lack of pharmacodynamic correlation between minimal inhibitory concentration (MIC) values and clinical outcome, particularly for molds. Clinical breakpoints for Candida spp. have been substantially revised over time and appear to be reliable for the detection of azole and echinocandin resistance and for outcome prediction, especially for non-neutropenic patients with candidemia. However, data are lacking for neutropenic patients with invasive candidiasis and some non-albicans Candida spp. (notably emerging Candida auris). For Aspergillus spp., AST is not routinely performed, but may be indicated according to the epidemiological context in the setting of emerging azole resistance among A. fumigatus. For non-Aspergillus molds (e.g., Mucorales, Fusarium or Scedosporium spp.), AST is not routinely recommended as interpretive criteria are lacking and many confounders, mainly host factors, seem to play a predominant role in responses to antifungal therapy. This review provides an overview of the pre-clinical and clinical pharmacodynamic data, which constitute the rationale for the use and interpretation of AST testing of yeasts and molds in clinical practice.
Insights
Antifungal susceptibility testing (AST) guides treatment for invasive fungal infections (IFIs). While useful for Candida, its role for molds requires further research due to resistance concerns and limited clinical correlation.
Area of Science:
- Mycology
- Infectious Diseases
- Clinical Pharmacology
Background:
- Invasive fungal infections (IFIs) have high mortality rates, necessitating prompt antifungal therapy.
- Emerging antifungal resistance in Candida and Aspergillus species necessitates improved diagnostic strategies.
- In vitro antifungal susceptibility testing (AST) is increasingly used but faces interpretation challenges.
Purpose of the Study:
- To review the clinical utility and interpretation of AST for yeasts and molds causing IFIs.
- To explore the pharmacodynamic rationale for AST in guiding antifungal therapy.
- To highlight limitations and future directions for AST in managing IFIs.
Main Methods:
- Review of pre-clinical and clinical pharmacodynamic data related to antifungal susceptibility testing.
- Analysis of current guidelines and evidence for AST interpretation in Candida and Aspergillus infections.
- Evaluation of AST utility across different fungal pathogens and patient populations.
Main Results:
- Clinical breakpoints for Candida spp. are reliable for azole/echinocandin resistance detection in non-neutropenic patients.
- AST for Aspergillus spp. is not routine but may be indicated due to azole resistance.
- AST is not routinely recommended for non-Aspergillus molds due to lack of criteria and host factor influence.
Conclusions:
- AST plays a role in managing candidemia, particularly in non-neutropenic hosts.
- Further research is needed to establish robust AST interpretation for neutropenic patients and emerging Candida species.
- AST for molds, especially non-Aspergillus, requires more data and defined interpretive criteria for clinical application.
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