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Process analysis of variables for standardization of antifungal susceptibility testing of nonfermentative yeasts
Oscar Zaragoza1, Ana C Mesa-Arango, Alicia Gómez-López
1Servicio de Micología, Centro Nacional de Microbiología, Instituto de Salud Carlos III, Carretera Majadahonda-Pozuelo, km 2, Majadahonda 28220, Madrid, Spain.
Abstract:
Nonfermentative yeasts, such as Cryptococcus spp., have emerged as fungal pathogens during the last few years. However, standard methods to measure their antifungal susceptibility (antifungal susceptibility testing [AST]) are not completely reliable due to the impaired growth of these yeasts in standard media. In this work, we have compared the growth kinetics and the antifungal susceptibilities of representative species of nonfermentative yeasts such as Cryptococcus neoformans, Cryptococcus gattii, Cryptococcus albidus, Rhodotorula spp., Yarrowia lipolytica, Geotrichum spp., and Trichosporon spp. The effect of the growth medium (RPMI medium versus yeast nitrogen base [YNB]), glucose concentration (0.2% versus 2%), nitrogen source (ammonium sulfate), temperature (30°C versus 35°C), shaking, and inoculum size (10(3), 10(4), and 10(5) cells) were analyzed. The growth rate, lag phase, and maximum optical density were obtained from each growth experiment, and after multivariate analysis, YNB-based media demonstrated a significant improvement in the growth of yeasts. Shaking, an inoculum size of 10(5) CFU/ml, and incubation at 30°C also improved the growth kinetics of organisms. Supplementation with ammonium sulfate and with 2% glucose did not have any effect on growth. We also tested the antifungal susceptibilities of all the isolates by the reference methods of the CLSI and EUCAST, the EUCAST method with shaking, YNB under static conditions, and YNB with shaking. MIC values obtained under different conditions showed high percentages of agreement and significant correlation coefficient values between them. MIC value determinations according to CLSI and EUCAST standards were rather complicated, since more than half of isolates tested showed a limited growth index, hampering endpoint determinations. We conclude that AST conditions including YNB as an assay medium, agitation of the plates, reading after 48 h of incubation, an inoculum size of 10(5) CFU/ml, and incubation at 30°C made MIC determinations easier without an overestimation of MIC values.
Insights
Optimizing antifungal susceptibility testing (AST) for nonfermentative yeasts like Cryptococcus spp. requires specific conditions. Yeast Nitrogen Base (YNB) medium with shaking and a 10^5 cells/mL inoculum improves growth and simplifies MIC determination.
Area of Science:
- Medical Mycology
- Antimicrobial Resistance
- Clinical Microbiology
Background:
- Nonfermentative yeasts, including Cryptococcus spp., are increasingly recognized as significant fungal pathogens.
- Standard antifungal susceptibility testing (AST) methods face challenges with these yeasts due to impaired growth in conventional media.
- Reliable AST is crucial for guiding effective antifungal therapy against emerging fungal infections.
Purpose of the Study:
- To optimize growth conditions for nonfermentative yeasts to improve antifungal susceptibility testing.
- To compare the impact of various factors on yeast growth kinetics and MIC value determination.
- To identify the most suitable conditions for accurate and reproducible AST of nonfermentative yeasts.
Main Methods:
- Growth kinetics of Cryptococcus spp., Rhodotorula spp., Yarrowia lipolytica, Geotrichum spp., and Trichosporon spp. were analyzed under varied conditions.
- Factors investigated included growth medium (RPMI vs. YNB), glucose concentration, nitrogen source, temperature, shaking, and inoculum size.
- Antifungal susceptibility testing (AST) was performed using CLSI, EUCAST, and modified YNB-based methods.
Main Results:
- Yeast Nitrogen Base (YNB) medium significantly enhanced yeast growth compared to RPMI.
- Incubation at 30°C, use of shaking, and an inoculum size of 10^5 cells/mL improved growth kinetics.
- Modified AST conditions using YNB, shaking, and a 48-hour incubation period simplified MIC determinations without overestimating values.
Conclusions:
- Optimized AST conditions, particularly using YNB medium with agitation and specific incubation parameters, are essential for nonfermentative yeasts.
- These optimized methods facilitate easier and more reliable Minimum Inhibitory Concentration (MIC) determinations.
- Improved AST protocols are critical for managing infections caused by challenging nonfermentative yeast pathogens.
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