Exploiting diverse chemical collections to uncover novel antifungals

التفاصيل البيبلوغرافية
العنوان: Exploiting diverse chemical collections to uncover novel antifungals
المؤلفون: Kali Iyer, Kaddy Camara, Martin Daniel-Ivad, Nicole Revie, Jennifer Lou, Sheena Li, Richard Trilles, Sheila Elardo, Yoko Yashiroda, Jen Fossen, Karen Marchillo, Zhongle Liu, Shakti Singh, Jose Muñoz, Sang Hu Kim, Hiroyuki Hirano, Minoru Yoshida, Hiroyuki Osada, Christina Cuomo, Noelle Williams, Ashraf Ibrahim, Jack Edwards, David Andes, Justin Nodwell, John Porco, Charlie Boone, Mohammad Mazhab-Jafari, Lauren Brown, Luke Whitesell, Nicole Robbins, Leah Cowen
المصدر: Access Microbiology. 3
بيانات النشر: Microbiology Society, 2021.
سنة النشر: 2021
مصطلحات موضوعية: General Materials Science
الوصف: The rise in drug resistance amongst pathogenic fungi, paired with the limited arsenal of antifungals available is an imminent threat to our medical system. To address this, we screened two distinct compound libraries to identify novel strategies to expand the antifungal armamentarium. The first collection wasthe RIKEN Natural Product Depository (NPDepo), which was screened for antifungal activity against four major human fungal pathogens: Candida albicans, Candida glabrata, Candida auris, and Cryptococcus neoformans. Through a prioritization pipeline, one compound, NPD6433, emerged as having broad-spectrum antifungal activity and minimal mammalian cytotoxicity. Chemical-genetic and biochemical assays demonstrated that NPD6433 inhibits the essential fungal enzyme fatty acid synthase 1 (Fas1). Treatment with NPD6433 inhibited various virulence traits in C. neoformans and C. auris, and rescued mammalian cell growth in a co-culture model with C. auris. The second compound library screened was adiversity-oriented collectionfrom Boston University. This chemical screen was focused on identifying novel molecules that enhance the activity of the widely deployed antifungal, fluconazole, against C. auris. Through this endeavour, we discovered a potent compound that enhanced fluconazole efficacy against C. auris through increasing azole intracellular accumulation. This activity was dependent on expression of the multidrug transporter geneCDR1, suggesting that this compound targets efflux mechanisms. Furthermore, this molecule significantly reduced fungal burden alone and in combination with fluconazole in a murine model of C. auris disseminated infection. Overall, this work identifies novel compounds with bioactivity against fungal pathogens, revealing important biology, and paving the way for the critical development of therapeutic strategies.
تدمد: 2516-8290
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::2d25588ce823236432c9f5519dc089a7
https://doi.org/10.1099/acmi.cc2021.po0006
حقوق: OPEN
رقم الأكسشن: edsair.doi...........2d25588ce823236432c9f5519dc089a7
قاعدة البيانات: OpenAIRE