铜绿假单胞菌
生物膜
微生物学
角膜炎
抗生素
细菌
多重耐药
抗菌剂
抗生素耐药性
生物
遗传学
作者
Yiwen Zhu,Shijing Wu,Yujie Sun,Xuan Zou,Liang Zheng,Shun Duan,Julin Wang,Bingran Yu,Ruifang Sui,Fu‐Jian Xu
标识
DOI:10.1002/adfm.202111066
摘要
Abstract Multidrug‐resistant Pseudomonas aeruginosa (MDR‐ P. aeruginosa ) cannot be extirpated with any of the antipseudomonal antibiotics available in clinic because P. aeruginosa exhibit natural resistance to antibiotics and form a stable biofilm. Biofilm formed by P. aeruginosa is a leading cause of bacterial keratitis which may cause corneal perforation and even blindness. Antibacterial photodynamic therapy (aPDT) is a promising bactericidal method in combatting drug‐resistant bacteria. Unfortunately, the use of broad‐spectrum aPDT that kills bacteria indiscriminately may lead to microbiota imbalance and cause serious side effects in normal cells. Herein, PαGal 50 ‐b‐ PGRB 20 , which can effectively disperse biofilms and selectively kill MDR‐ P. aeruginosa inside biofilms by binding to Lec A in the extracellular polymeric substances and on the P. aeruginosa membrane with low phototoxicity caused by broad‐spectrum aPDT, is designed and synthesized. PαGal 50 ‐b‐ PGRB 20 has bactericidal activities by damaging DNA, RNA, protein, and membrane. In vivo study of the MDR ‐P. aeruginosa biofilm infected keratitis model demonstrates the potential of PαGal 50 ‐b‐ PGRB 20 for a better corneal recovery. This work provides a dedicated antibacterial material for preferentially killing MDR‐ P. aeruginosa over normal cells and other bacteria.
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