细菌
光敏剂
抗菌活性
光动力疗法
锌
化学
活性氧
组合化学
大肠杆菌
革兰氏阴性菌
材料科学
微生物学
光化学
生物
生物化学
有机化学
遗传学
基因
作者
Zuokai Wang,Shuang Zeng,Yifu Hao,Wenlin Cai,Wen Sun,Jianjun Du,Saran Long,Jiangli Fan,Jingyun Wang,Xiaoqiang Chen,Xiaojun Peng
出处
期刊:Biomaterials
[Elsevier]
日期:2024-04-15
卷期号:308: 122571-122571
被引量:2
标识
DOI:10.1016/j.biomaterials.2024.122571
摘要
The abuse and overuse of antibiotics let drug-resistant bacteria emerges. Antibacterial photodynamic therapy (APDT) has shown outstanding merits to eliminate the drug-resistant bacteria via cytotoxic reactive oxygen species produced by irradiating photosensitizer. However, most of photosensitizers are not effective for Gram-negative bacteria elimination. Herein conjugates of NBS, a photosensitizer, linked with one (NBS-DPA-Zn) or two (NBS-2DPA-Zn) equivalents of zinc-dipicolylamine (Zn-DPA) have been designed to achieve the functional recognition of different bacteria. Due to the cationic character of NBS and metal transfer channel effect of Zn-DPA, NBS-DPA-Zn exhibited the first regent to distinguish P. aeruginosa from other Gram-negative bacteria. Whereas NBS-2DPA-Zn showed broad-spectrum antibacterial effect because the two arm of double Zn-DPA enhanced interactions with anionic membranes of bacteria, led the bacteria aggregation and thus provided the efficacy of APDT to bacteria and corresponding biofilm. In combination with a hydrogel of Pluronic, NBS-2DPA-Zn@gel shows promising clinical application in mixed bacterial diabetic mouse model infection. This might propose a new method that can realize functional identification and elimination of bacteria through intelligent regulation of Zn-DPA, and shows excellent potential for antibacterial application.
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