生物材料
细菌
生物相容性
体内
微生物学
碱性磷酸酶
大肠杆菌
化学
材料科学
生物
生物化学
纳米技术
酶
生物技术
有机化学
基因
遗传学
作者
Jing Zhang,Ying Fu,Rongtao Zhou,Moli Yin,Wenhe Zhu,Shunjie Yan,Huiyan Wang
标识
DOI:10.1002/adhm.202202421
摘要
Abstract Urinary tract infections caused by urinary catheter implantations are becoming more serious. Therefore, the construction of a responsive antibacterial biomaterial that can not only provide biocompatible conditions, but also effectively prevent the growth and metabolism of bacteria, is urgently needed. In this work, a benzophenone‐derived phosphatase light‐triggered antibacterial agent is designed and synthesized, which is tethered to the biological materials using a one‐step method for in vivo antibacterial therapy. This surface could kill gram‐positive bacteria ( Staphylococcus aureus ) and gram‐negative bacteria ( Escherichia coli ). More importantly, because this material exhibited a zwitterion structure, it does not damage blood cells and tissue cells. When the bacteria interact with this surface, the initial fouling of the bacteria is reduced by zwitterion hydration. When the bacteria actively accumulate and metabolize to produce a certain amount of alkaline phosphatase, the surface immediately started the sterilization performance, and the bactericidal effect is achieved by destroying the bacterial cell membrane. In summary, an antibacterial biomaterial that shows biocompatibility with mammalian cells is successfully constructed, providing new ideas for the development of intelligent urinary catheters.
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