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.

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.

Related Concept Videos