AI Article Synopsis

  • The Trichophyton mentagrophytes complex includes dermatophyte fungi that cause skin infections, with a rising concern of drug resistance, especially in Trichophyton indotineae, which shows terbinafine resistance.
  • A study in Hue City, Vietnam analyzed these fungi's characteristics and antifungal susceptibilities, revealing that 24% of superficial mycoses were linked to this complex, predominantly identifying T. interdigitale genotype II.
  • While the fungi were generally sensitive to itraconazole and voriconazole, about 50% of T. indotineae isolates were resistant to terbinafine due to a specific mutation, highlighting the urgent need for better strategies to combat drug resistance in dermatology.

Article Abstract

The Trichophyton mentagrophytes complex comprises a group of dermatophyte fungi responsible for various dermatological infections. The increasing drug resistance of this species complex, especially terbinafine resistance of Trichophyton indotineae, is a major concern in dermatologist practice. This study provides a comprehensive analysis of T. mentagrophytes complex strains isolated from patients in Hue City, Vietnam, focusing on their phenotypic and genetic characteristics, antifungal susceptibility profiles, and molecular epidemiology. Keratinophilic fungi from dermatophytosis culture samples were identified morphologically and phenotypically, with species and genotypes confirmed by internal transcribed spacer sequencing and phylogenetic analysis. Antifungal susceptibility testing was carried out to evaluate their susceptibility to itraconazole, voriconazole, and terbinafine. The 24% (n = 27/114) of superficial mycoses were phenotypically attributed to T. mentagrophytes complex isolates. Trichophyton interdigitale, mainly genotype II*, was predominant (44.4%), followed by T. mentagrophytes genotype III* (22.2%), T. indotineae (14.8%), T. tonsurans (11.2%), and T. mentagrophytes (7.4%). While all isolates were susceptible to itraconazole and voriconazole, half of T. indotineae isolates exhibited resistance to terbinafine, linked to the Phe397Leu mutation in the SQLE protein. This study highlighted the presence of terbinafine-resistant T. indotineae isolates in Vietnam, emphasizing the need to investigate dermatophyte drug resistance and implement effective measures in clinical practice.

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Source
http://dx.doi.org/10.1093/mmy/myae088DOI Listing

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