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Infecting Mice with Malassezia spp. to Study the Fungus-Host Interaction
Published on: November 6, 2019
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.
Abstract:
Malassezia furfur, a constituent of the normal human skin flora, is an etiological agent of pityriasis versicolor, which represents one of the most common human skin diseases. Under certain conditions, both exogenous and endogenous, the fungus can transition from a yeast form to a pathogenic mycelial form. To develop a standardized medium for reproducible production of the mycelial form of M. furfur to develop and optimize susceptibility testing for this pathogen, we examined and characterized variables, including kojic acid and glycine concentration, agar percentage, and pH, to generate a chemically defined minimal medium on which specific inoculums of M. furfur generated the most robust filamentation. Next, we examined the capacity of ketoconazole to inhibit the formation of M. furfur mycelial form. Both low and high, 0.01, 0.05 and 0.1 µg/ml concentrations of ketoconazole significantly inhibited filamentation at 11.9, 54.5 and 86.7%, respectively. Although ketoconazole can have a direct antifungal effect on both M. furfur yeast and mycelial cells, ketoconazole also has a dramatic impact on suppressing morphogenesis. Since mycelia typified the pathogenic form of Malassezia infection, the capacity of ketoconazole to block morphogenesis may represent an additional important effect of the antifungal.
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.
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