真菌性角膜炎
角膜
基质
角膜炎
纳他霉素
肽
结合
菌丝
间质细胞
角膜上皮
角膜炎症
微生物学
真菌病原
生物
病菌
化学
免疫学
生物化学
癌症研究
免疫组织化学
神经科学
数学分析
遗传学
数学
食品科学
作者
Xiaoyan Ju,Li-Ping Wu,Ning Gao,Ye Tian,Guojun Lu,Yichen Gao,Shaozhen Zhao,Zhongwei Niu,Ruibo Yang
标识
DOI:10.1002/adhm.202202409
摘要
Fungal hyphae deeply invade the cornea in fungal keratitis. The corneal stroma hinders the infiltration of antifungal drugs and reduces their bioavailability. Here, this work reports a peptide conjugate nano-assembly that permeates the stroma and kills the pathogen without irritating the ocular cornea. The hydrophilic surface of the nano-assembly ensures deep permeation into the stroma. When encountering a fungal hyphal cell, the nano-assembly disassembles and exposes the α-helical peptide to destroy the fungal membrane, thus inactivating the pathogen. In a rabbit model of fungal keratitis, the nano-assembly exhibits a better therapeutic effect than commercially available natamycin ophthalmic suspension. Peptide conjugates with a nano-assembled structure and assembly-disassembly behavior could serve as the foundation of a new therapy for fungal keratitis.
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