流出
苯甲脒
唑
化学
生物膜
微生物学
药品
伊曲康唑
白色念珠菌
系统性念珠菌病
药理学
抗药性
白色体
抗真菌
生物化学
生物
细菌
酶
遗传学
作者
Xue Wang,Xueyang Jin,Zhiyu Xie,Hongyang Zhang,Tiantian Liu,Hongbo Zheng,Xiaoyi Luan,Yan Sun,Wenjie Fang,Wenqiang Chang,Hong‐Xiang Lou
标识
DOI:10.1021/acs.jmedchem.3c01068
摘要
Fungal infections present a growing global public health concern, necessitating the development of novel antifungal drugs. However, many potential antifungals, particularly the expelled potential active agents (EPAAs), are often underestimated owing to their limitations in cellular entry or expulsion by efflux pumps. Herein, we identified 68 EPAAs out of 2322 candidates with activity against a Candida albicans efflux pump-deficient strain and no inhibitory activity against the wild-type strain. Using a novel conjugation strategy involving benzamidine (BM) as a mitochondrion-targeting warhead, we successfully converted EPAAs into potent antifungals against various urgent-threat azole-resistantCandida strains. Among the obtained EPAA-BM conjugates, IS-2-BM (11) exhibited excellent antifungal activities and induced negligible drug resistance. Furthermore, IS-2-BM prevented biofilm formation, eradicated mature biofilms, and exhibited excellent therapeutic effects in a murine model of systemic candidiasis. These findings provide a promising strategy for increasing the possibilities of discovering more antifungals.
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