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Investigating Antifungal Susceptibility in Candida Species With MALDI-TOF MS-Based Assays
Margot Delavy1, Andrea R Dos Santos1, Clara M Heiman1
1Institute of Microbiology, University of Lausanne and University Hospital of Lausanne, Lausanne, Switzerland.
Abstract:
Half of invasive fungal infections lead to death. Amongst pathogenic fungi, the most widespread species belong to the Candida genus and vary in their susceptibility to antifungal drugs. The emergence of antifungal resistance has become a major clinical problem. Therefore, the definition of susceptibility patterns is crucial for the survival of patients and the monitoring of resistance epidemiology. Although, most routinely used methods of AntiFungal Susceptibility Testing (AFST) have reached their limits, the rediscovery of Matrix Associated Laser Desorption/Ionization Time of Flight Mass Spectrometry (MALDI-TOF MS) in the field of mycology provides a promising alternative for the study of antifungal resistance. MALDI-TOF MS is already used in mycology for fungal identification, which permits to highlight inherent antifungal resistance. However, the main concern of clinicians is the rise of acquired antifungal resistance and the time needed for their detection. For this purpose, MALDI-TOF MS has been shown to be an accurate tool for AFST, presenting numerous advantages in comparison to commonly used techniques. Finally, MALDI-TOF MS could be used directly to detect resistance mechanisms through typing. Consequently, MALDI-TOF MS offers new perspectives in the context of healthcare associated outbreaks of emerging multi-drug resistant fungi, such as C. auris. As a proof of concept, we will illustrate the current and future benefits in using and adapting MALDI-TOF MS-based assays to define the susceptibility pattern of C. auris, by species identification, AFST, and typing.
Insights
Matrix Associated Laser Desorption/Ionization Time of Flight Mass Spectrometry (MALDI-TOF MS) offers a faster, more accurate method for antifungal susceptibility testing. This technology aids in identifying drug-resistant fungi, improving patient survival and epidemiological monitoring.
Area of Science:
- Medical Mycology
- Clinical Microbiology
- Infectious Diseases
Background:
- Invasive fungal infections are a significant cause of mortality, with the Candida genus being a primary concern.
- Antifungal drug resistance in fungi presents a major clinical challenge, necessitating effective susceptibility testing.
- Current antifungal susceptibility testing (AFST) methods have limitations in speed and accuracy.
Purpose of the Study:
- To evaluate Matrix Associated Laser Desorption/Ionization Time of Flight Mass Spectrometry (MALDI-TOF MS) as a tool for AFST.
- To explore the utility of MALDI-TOF MS in identifying antifungal resistance mechanisms and epidemiological typing.
- To demonstrate the application of MALDI-TOF MS for Candida auris susceptibility profiling.
Main Methods:
- Utilizing MALDI-TOF MS for rapid fungal identification.
- Adapting MALDI-TOF MS-based assays for direct antifungal susceptibility testing.
- Employing MALDI-TOF MS for molecular typing to detect resistance mechanisms.
Main Results:
- MALDI-TOF MS demonstrates accuracy and advantages over conventional AFST methods.
- The technique can be applied to identify inherent and acquired antifungal resistance.
- MALDI-TOF MS facilitates rapid detection of resistance in emerging multi-drug resistant fungi like C. auris.
Conclusions:
- MALDI-TOF MS provides a promising alternative for routine AFST and resistance monitoring.
- This technology enhances the ability to manage healthcare-associated outbreaks of resistant fungi.
- MALDI-TOF MS offers new perspectives for defining susceptibility patterns and improving patient outcomes.
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