Semenya Matlou D, Aladejana Adebowale E, Ndlovu Sizwe I
Department of Biotechnology and Food Technology, Faculty of Science, University of Johannesburg, Johannesburg, 2028, South Africa.
Int Microbiol. 2025 Mar;28(3):575-587. doi: 10.1007/s10123-024-00563-1. Epub 2024 Aug 7.
The emergence of Candida auris has caused a major concern in the public health worldwide. This novel fungus is characterized by its multidrug resistance profile, ability to thrive in harsh and stressful conditions, as well as high temperatures and salt concentrations, persistence on hospital surfaces, causing nosocomial infections and outbreaks, and unique fitness properties. Here, we study the antifungal susceptibility patterns, thermotolerance, and halotolerance of 15 putative C. auris clinical isolates from Inkosi Albert Academic Hospital, Durban, South Africa. Five of the C. auris isolates showed resistance to all three antifungals (fluconazole, amphotericin B, and micafungin) and were selected for characterization of their adaptability mechanisms. Four of the tested multidrug-resistant C. auris isolates (C. auris strain F25, C. auris strain F276, C. auris F283, and C. auris M153) showed good growth when exposed to high temperature (42 °C) and salinity (10% NaCl) conditions whereas one isolate (C. auris F65) showed moderate growth under these conditions. Candida parapsilosis showed poor growth whereas C. albicans no growth under these conditions. The five C. auris strains were positive for all the adaptive features.
耳念珠菌的出现引起了全球公共卫生领域的重大关注。这种新型真菌的特点是具有多重耐药性,能够在恶劣、应激条件下以及高温和高盐浓度环境中生存,能在医院表面存活,可导致医院感染和暴发,还具有独特的适应性。在此,我们研究了来自南非德班因科西·阿尔伯特学术医院的15株疑似耳念珠菌临床分离株的抗真菌药敏模式、耐热性和耐盐性。其中5株耳念珠菌分离株对所有三种抗真菌药物(氟康唑、两性霉素B和米卡芬净)均耐药,并被选来表征其适应机制。4株受试的多重耐药耳念珠菌分离株(耳念珠菌菌株F25、耳念珠菌菌株F276、耳念珠菌F283和耳念珠菌M153)在高温(42℃)和高盐(10%氯化钠)条件下生长良好,而1株分离株(耳念珠菌F65)在这些条件下生长中等。近平滑念珠菌生长较差,而白色念珠菌在这些条件下不生长。这5株耳念珠菌菌株的所有适应性特征均呈阳性。