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Published on: December 28, 2017
Heteroresistance to fluconazole in Cryptococcus neoformans is intrinsic and associated with virulence
Edward Sionov1, Yun C Chang, H Martin Garraffo
1Laboratory of Clinical Infectious Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
In 1999, heteroresistance to triazoles was reported in Cryptococcus neoformans strains isolated from an azole therapy failure case of cryptococcosis in an AIDS patient and in a diagnostic strain from a non-AIDS patient. In this study, we analyzed 130 strains of C. neoformans isolated from clinical and environmental sources before 1979, prior to the advent of triazoles, and 16 fluconazole (FLC)-resistant strains isolated from AIDS patients undergoing FLC maintenance therapy during 1990 to 2000. All strains isolated prior to 1979 manifested heteroresistance (subset of a population that grows in the presence of FLC) at concentrations between 4 and 64 microg/ml, and all 16 FLC-resistant AIDS isolates manifested heteroresistance at concentrations between 16 and 128 microg/ml. Upon exposure to stepwise increases in the concentration of FLC, subpopulations that could grow at higher concentrations emerged. Repeated transfer on drug-free media caused the highly resistant subpopulations to revert to the original level of heteroresistance. The reversion pattern fell into four categories based on the number of transfers required. The strains heteroresistant at > or =32 microg/ml were significantly more resistant to other xenobiotics and were also more virulent in mice than were those heteroresistant at < or =8 microg/ml. During FLC treatment of mice infected by strains with low levels of heteroresistance, subpopulations exhibiting higher levels of heteroresistance emerged after a certain period of time. The ABC transporter AFR1, known to efflux FLC, was unrelated to the heteroresistance mechanism. Our study showed that heteroresistance to azole is universal and suggests that heteroresistance contributes to relapse of cryptococcosis during azole maintenance therapy.
Insights
Heteroresistance to azoles is a universal trait in Cryptococcus neoformans, potentially explaining cryptococcosis relapses during antifungal therapy. This study found pre-existing heteroresistance in strains predating triazole use.
Area of Science:
- Mycology
- Antimicrobial Resistance
- Infectious Diseases
Background:
- Heteroresistance to triazoles was previously reported in Cryptococcus neoformans.
- This phenomenon was observed in strains from both AIDS and non-AIDS patients.
- The clinical significance of heteroresistance, especially in relation to azole therapy failure, remained unclear.
Purpose of the Study:
- To investigate the prevalence and characteristics of heteroresistance in Cryptococcus neoformans.
- To determine if pre-existing heteroresistance predates the widespread use of triazole antifungals.
- To explore the relationship between heteroresistance, virulence, and the emergence of resistance during fluconazole (FLC) treatment.
Main Methods:
- Analyzed 130 pre-1979 clinical and environmental C. neoformans strains.
- Tested 16 fluconazole-resistant strains from AIDS patients undergoing FLC therapy.
- Assessed heteroresistance levels, reversion patterns, xenobiotic resistance, virulence in mice, and emergence of resistance during FLC treatment.
Main Results:
- All pre-1979 strains exhibited heteroresistance to FLC (4–64 µg/ml).
- FLC-resistant AIDS isolates showed higher heteroresistance (16–128 µg/ml).
- Higher heteroresistance correlated with increased xenobiotic resistance and mouse virulence; FLC treatment induced higher heteroresistance levels.
Conclusions:
- Heteroresistance to azoles is a universal characteristic of Cryptococcus neoformans, present even before triazole introduction.
- The emergence of higher heteroresistance levels during FLC therapy suggests a mechanism contributing to treatment relapse.
- The ABC transporter AFR1 was not implicated in this heteroresistance mechanism.
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