Identification of Antifungal Compounds against Multidrug-Resistant Candida auris Utilizing a High-Throughput Drug-Repurposing Screen

Candida auris is an emerging fatal fungal infection that has resulted in several outbreaks in hospitals and care facilities. Current treatment options are limited by the development of drug resistance. Identification of new pharmaceuticals to combat these drug-resistant infections will thus be requi...

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Veröffentlicht in:Antimicrobial agents and chemotherapy 2021-03, Vol.65 (4), Article 01305
Hauptverfasser: Cheng, Yu-Shan, Roma, Jose Santinni, Shen, Min, Fernandes, Caroline Mota, Tsang, Patricia S., Forbes, He Eun, Boshoff, Helena, Lazzarini, Cristina, Del Poeta, Maurizio, Zheng, Wei, Williamson, Peter R.
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Sprache:eng
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Zusammenfassung:Candida auris is an emerging fatal fungal infection that has resulted in several outbreaks in hospitals and care facilities. Current treatment options are limited by the development of drug resistance. Identification of new pharmaceuticals to combat these drug-resistant infections will thus be required to overcome this unmet medical need. We have established a bioluminescent ATP-based assay to identify new compounds and potential drug combinations showing effective growth inhibition against multiple strains of multidrug-resistant Candida auris. The assay is robust and suitable for assessing large compound collections by high-throughput screening (HTS). Utilizing this assay, we conducted a screen of 4,314 approved drugs and pharmacologically active compounds that yielded 25 compounds, including 6 novel anti-Candida awls compounds and 13 sets of potential two-drug combinations. Among the drug combinations, the serine palmitoyltransferase inhibitor myriocin demonstrated a combinational effect with flucytosine against all tested isolates during screening. This combinational effect was confirmed in 13 clinical isolates of Candida auris.
ISSN:0066-4804
1098-6596
DOI:10.1128/AAC.01305-20