抗生素
抗菌剂
微生物学
化学
抗生素耐药性
青霉素
药物输送
细菌
体内
小泡
酶
生物化学
生物
生物技术
有机化学
遗传学
膜
作者
Yamin Li,Guhuan Liu,Xiaorui Wang,Jinming Hu,Shiyong Liu
标识
DOI:10.1002/anie.201509401
摘要
Abstract Antimicrobial resistance poses serious public health concerns and antibiotic misuse/abuse further complicates the situation; thus, it remains a considerable challenge to optimize/improve the usage of currently available drugs. We report a general strategy to construct a bacterial strain‐selective delivery system for antibiotics based on responsive polymeric vesicles. In response to enzymes including penicillin G amidase ( PGA ) and β‐lactamase ( Bla ), which are closely associated with drug‐resistant bacterial strains, antibiotic‐loaded polymeric vesicles undergo self‐immolative structural rearrangement and morphological transitions, leading to sustained release of antibiotics. Enhanced stability, reduced side effects, and bacterial strain‐selective drug release were achieved. Considering that Bla is the main cause of bacterial resistance to β‐lactam antibiotic drugs, as a further validation, we demonstrate methicillin‐resistant S . aureus (MRSA)‐triggered release of antibiotics from Bla ‐degradable polymeric vesicles, in vitro inhibition of MRSA growth, and enhanced wound healing in an in vivo murine model.
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