白色念珠菌
化学
甾醇
白色体
体内
细胞毒性
药理学
生物膜
微生物学
体外
生物化学
生物
胆固醇
细菌
遗传学
生物技术
作者
Xue Wang,Xueyang Jin,Fabao Zhao,Zejun Xu,Wenzhuo Tan,Jiaozhen Zhang,Yuliang Xu,Xiaoyi Luan,Min Fang,Zhiyu Xie,Wenqiang Chang,Hong‐Xiang Lou
标识
DOI:10.1021/acs.jmedchem.4c00470
摘要
Interfering with sterol biosynthesis is an important strategy for developing safe and effective antifungal drugs. We previously identified compound H55 as an allosteric inhibitor of the fungal-specific C-24 sterol methyltransferase Erg6 for treating Candida albicans infections. Herein, 62 derivatives of H55 were designed and synthesized based on target–ligand interactions to identify more active candidates. Among them, d28 displayed the most potent antivirulence ability (MHIC50 = 0.25 μg/mL) by targeting Erg6, exhibiting an 8-fold increase in potency compared with H55. Moreover, d28 significantly outperformed H55 in inhibiting cell adhesion and biofilm formation, and exhibited minimal cytotoxicity and negligible potential to induce drug resistance. Of note, the coadministration of d28 and other sterol biosynthesis inhibitors, such as tridemorph or terbinafine, demonstrated a strong synergistic antifungal action in vitro and in vivo in a murine skin infection model. These results support the potential application of d28 in the treatment of C. albicans infections.
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