Isavuconazole MIC distribution of 29 yeast species responsible for invasive infections (2015-2017)
M Desnos-Ollivier1, S Bretagne2, A Boullié1
1Institut Pasteur, Molecular Mycology Unit, National Reference Centre for Invasive Mycoses & Antifungal, UMR2000, CNRS, Paris, France.
Objectives:
Isavuconazole is a recent extended-spectrum triazole with activity against yeasts. However, few data are available about the in vitro activity of rare yeast species. We report the MIC distribution of isavuconazole compared with fluconazole for a large collection of common or rare yeasts.
Methods:
Isavuconazole and fluconazole MICs were determined using the EUCAST method for 1457 clinical isolates, mainly recovered from invasive infections, belonging to 29 species. They were sent to the National Reference Centre for Invasive Mycoses & Antifungals between January 2015 and October 2017 and species identification was performed using a polyphasic approach (matrix-assisted laser desorption/ionization time of flight analysis and a molecular method).
Results:
Isavuconazole had effective in vitro activity against Cryptococcus neoformans (MIC90 < 0.25 mg/L), the five most common Candida spp. (MIC90 ≤ 0.5 mg/L for Candida albicans, Candida glabrata, Candida tropicalis, Candida parapsilosis, and Candida krusei) and also against the majority of rare species, including Candida kefyr and Candida lusitaniae. A few isolates of C. albicans (0.7%, 3/404), C. glabrata (2.7%, 5/184), C. tropicalis (1.0%, 1/96) and C. parapsilosis (0.8%, 1/127) exhibited MIC ≥4 mg/L. All were also resistant to fluconazole according to the EUCAST breakpoints. Some isolates with isavuconazole MIC ≥4 mg/L were also observed among rarer species: Meyerozyma guilliermondii (8.7%, 2/23), Wickerhamomyces anomalus (10.0%, 1/10). Other rare species Saprochaete clavata, Magnusiomyces capitatus, and Rhodotorula mucilaginosa had high MIC50 (≥1 mg/L) and MIC90 (≥4 mg/L) and could be considered as resistant to isavuconazole.
Conclusions:
We confirmed the good in vitro activity of isavuconazole against common Candida, Cryptococcus species and the majority of the rare yeast species studied.
Insights
Isavuconazole demonstrates effective in vitro activity against common and most rare yeast species, including Candida and Cryptococcus. However, some rare yeast isolates showed resistance, similar to fluconazole resistance patterns.
Area of Science:
- Medical Mycology
- Antimicrobial Susceptibility Testing
Background:
- Isavuconazole is a newer triazole antifungal with broad-spectrum activity.
- Limited data exist on its in vitro efficacy against uncommon yeast pathogens.
Purpose of the Study:
- To evaluate the in vitro activity of isavuconazole against a large collection of yeast isolates.
- To compare isavuconazole's efficacy with fluconazole, particularly for rare yeast species.
Main Methods:
- Determined MICs for 1457 clinical yeast isolates from 29 species using the EUCAST method.
- Employed matrix-assisted laser desorption/ionization time of flight and molecular methods for accurate species identification.
Main Results:
- Isavuconazole showed potent activity against Cryptococcus neoformans and common Candida species (MIC90 ≤ 0.5 mg/L).
- Effective activity was observed against most rare yeasts, including Candida kefyr and Candida lusitaniae.
- A small proportion of common and rare yeasts exhibited high MICs (≥4 mg/L) and were also resistant to fluconazole.
Conclusions:
- Isavuconazole exhibits favorable in vitro activity against prevalent Candida and Cryptococcus species.
- The study confirms isavuconazole's efficacy against the majority of rare yeast species tested.
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