Reaction‐Induced Self‐Assembly of Polymyxin Mitigates Cytotoxicity and Reverses Drug Resistance

多粘菌素 多粘菌素B 细胞毒性 革兰氏阴性菌 微生物学 抗药性 生物膜 多重耐药 抗菌剂 药品 抗生素 体内 生物 细菌 粘菌素 细菌细胞结构 药理学 体外 生物化学 大肠杆菌 生物技术 遗传学 基因
作者
Xiaowen Hu,Dongdong Li,Huaping Li,Yinzi Piao,Prashant K. Sharma,Tieli Zhou,Mahdi Karimi,Xinghong Zhao,Yuanfeng Li,Linqi Shi,Yong Liu
出处
期刊:Advanced Materials [Wiley]
标识
DOI:10.1002/adma.202406156
摘要

Abstract Polymyxins have been regarded as an efficient therapeutic against many life‐threatening, multidrug resistant Gram‐negative bacterial infections; however, the cytotoxicity and emergence of drug resistance associated with polymyxins have greatly hindered their clinical potential. Herein, the reaction‐induced self‐assembly (RISA) of polymyxins and natural aldehydes in aqueous solution is presented. The resulting assemblies effectively mask the positively charged nature of polymyxins, reducing their cytotoxicity. Moreover, the representative PMB A 4 (composed of polymyxin B (PMB) and ( E )‐2‐heptenal ( A 4 )) assemblies demonstrate enhanced binding to Gram‐negative bacterial outer membranes and exhibit multiple antimicrobial mechanisms, including increased membrane permeability, elevated bacterial metabolism, suppression of quorum sensing, reduced ATP synthesis, and potential reduction of bacterial drug resistance. Remarkably, PMB A 4 assemblies reverse drug resistance in clinically isolated drug‐resistant strains of Gram‐negative bacteria, demonstrating exceptional efficacy in preventing and eradicating bacterial biofilms. PMB A 4 assemblies efficiently eradicate Gram‐negative bacterial biofilm infections in vivo and alleviate inflammatory response. This RISA strategy offers a practical and clinically applicable approach to minimize side effects, reverse drug resistance, and prevent the emergence of resistance associated with free polymyxins.
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