Ketoconazole inhibits Malassezia furfur morphogenesis in vitro under filamentation optimized conditions

Sirida Youngchim1, Joshua D Nosanchuk2, Siriporn Chongkae3

  • 1Department Microbiology, Faculty of Medicine, Chiang Mai University, Chiang Mai, 50200, Thailand. syoungchim@gmail.com.

Insights

Researchers developed a standardized medium to grow the pathogenic mycelial form of Malassezia furfur. Ketoconazole effectively inhibited this fungal filamentation, suggesting a key mechanism against pityriasis versicolor.

Area of Science:

  • Dermatology
  • Mycology
  • Antimicrobial Research

Background:

  • Malassezia furfur is a common skin fungus.
  • It can switch from yeast to a pathogenic mycelial form.
  • This transition causes pityriasis versicolor, a prevalent skin disease.

Purpose of the Study:

  • To create a standardized medium for reproducible production of M. furfur mycelial form.
  • To optimize susceptibility testing for M. furfur.
  • To evaluate ketoconazole's efficacy against M. furfur morphogenesis.

Main Methods:

  • Characterized variables like kojic acid, glycine, agar, and pH for a defined medium.
  • Generated robust filamentation of M. furfur.
  • Assessed ketoconazole's inhibition of mycelial form development.

Main Results:

  • A chemically defined minimal medium was developed for M. furfur filamentation.
  • Ketoconazole significantly inhibited M. furfur filamentation in a dose-dependent manner (11.9% at 0.01 µg/ml to 86.7% at 0.1 µg/ml).
  • Ketoconazole suppressed fungal morphogenesis.

Conclusions:

  • The developed medium enables standardized M. furfur mycelial form production.
  • Ketoconazole effectively inhibits M. furfur filamentation.
  • Blocking morphogenesis is a significant antifungal mechanism of ketoconazole against M. furfur.