抗菌剂
生物膜
微生物学
形态发生
细胞
药品
化学
细胞生长
抗药性
生物
免疫系统
生物活性
抗真菌
渗透(HVAC)
抗菌肽
体外
细胞生物学
抗生素
药理学
菌丝
抗生素耐药性
抗感染药
细胞培养
药物开发
电池类型
细菌
细胞毒性
作者
Zhongjie Li,Yabo Liu,Yonggui Yuan,Zhuoqian Sun,Jiao Zhang,Dai Qi,Shasha Li,Bo Deng,Wenlu Zhang,Yanfang Dong,Gaofeng Liang,Shegan Gao
出处
期刊:Microbiology spectrum
[American Society for Microbiology]
日期:2025-12-19
卷期号:14 (2): e0119725-e0119725
标识
DOI:10.1128/spectrum.01197-25
摘要
ABSTRACT The increasing frequency of infections and drug resistance of Candida albicans has emerged as significant public health challenges, highlighting the urgent need for new antifungal agents. In this study, a decapeptide AntiCADP was designed, which could effectively inhibit the growth of C. albicans . AntiCADP killed C. albicans cells by disrupting the cell membrane, inducing ROS accumulation, damaging mitochondria, and ultimately leading to cellular necrosis. Additionally, AntiCADP inhibited the hyphal morphogenesis and biofilm formation of C. albicans . AntiCADP could also kill C. albicans cells in the mature biofilm. In a mouse subcutaneous infection model, AntiCADP significantly inhibited the development of abscesses, reduced C. albicans cell counts within abscesses, and suppressed inflammatory cell infiltration at the infected area. Taken together, AntiCADP has the potential to be an antifungal agent against skin infections caused by C. albicans . IMPORTANCE To effectively cope with the increasing frequency of infections and drug resistance of Candida albicans , various types of new antimicrobial molecules have been studied. Among these molecules, antimicrobial peptides have attracted great attention. In the present study, we designed a decapeptide AntiCADP, which showed good anti- C . albicans activity in vitro and in vivo . AntiCADP killed C. albicans cells via multiple modes, including disrupting the cell membrane, inducing ROS accumulation, damaging mitochondria, and inducing cellular necrosis. AntiCADP could also inhibit hyphal morphogenesis and biofilm formation of C. albicans and kill C. albicans cells in the mature biofilm. Thus, AntiCADP had the potential against skin infections caused by C. albicans .
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