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Review on Antifungal Resistance Mechanisms in the Emerging Pathogen Candida auris
Farid Chaabane1, Artan Graf1, Léonard Jequier1
1School of Biology, University of Lausanne, Lausanne, Switzerland.
Abstract:
Candida auris is an emerging multi-drug resistant yeast, that causes major issues regarding patient treatment and surface disinfection in hospitals. Indeed, an important proportion of C. auris strains isolated worldwide present a decreased sensitivity to multiple and sometimes even all available antifungals. Based on recent tentative breakpoints by the CDC, it appears that in the USA about 90, 30, and < 5% of isolates have been resistant to fluconazole, amphotericin B, and echinocandins, respectively. To date, this has lead to a low therapeutic success. Furthermore, C. auris is prone to cause outbreaks, especially since it can persist for weeks in a nosocomial environment and survive high-end disinfection procedures. In this review, we describe the molecular resistance mechanisms to antifungal drugs identified so far in C. auris and compare them to those previously discovered in other Candida species. Additionally, we examine the role that biofilm formation plays in the reduced antifungal sensitivity of this organism. Finally, we summarize the few insights on how this yeast survives on hospital surfaces and discuss the challenge it presents regarding nosocomial environment disinfection.
Insights
Candida auris is a multi-drug resistant yeast causing hospital infections. Understanding its resistance mechanisms and survival strategies is crucial for effective patient treatment and disinfection.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Candida auris is an emerging multi-drug resistant yeast.
- It poses significant challenges for patient treatment and hospital disinfection.
- High resistance rates to fluconazole, amphotericin B, and echinocandins are observed.
Purpose of the Study:
- To review molecular resistance mechanisms in Candida auris.
- To compare these mechanisms with other Candida species.
- To examine biofilm formation's role in antifungal sensitivity and C. auris survival in hospitals.
Main Methods:
- Literature review of molecular resistance mechanisms.
- Comparative analysis of resistance in Candida species.
- Examination of biofilm formation and environmental survival.
Main Results:
- Detailed description of identified molecular resistance mechanisms.
- Comparison with known mechanisms in other Candida species.
- Insights into biofilm's contribution to reduced antifungal sensitivity.
Conclusions:
- Candida auris exhibits significant antifungal resistance.
- Biofilm formation and environmental persistence complicate treatment and disinfection.
- Further research is needed to address the challenges posed by C. auris in healthcare settings.
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