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通过季铵盐化合物的共价接枝形成接触活性抗菌表面。

Formation of contact active antimicrobial surfaces by covalent grafting of quaternary ammonium compounds.

机构信息

Department of Food Quality and Safety, the Volcani Center, ARO, Rishon LeZion 7505101, Israel.

Department of Food Quality and Safety, the Volcani Center, ARO, Rishon LeZion 7505101, Israel.

出版信息

Colloids Surf B Biointerfaces. 2018 Sep 1;169:195-205. doi: 10.1016/j.colsurfb.2018.04.065. Epub 2018 May 16.

DOI:10.1016/j.colsurfb.2018.04.065
PMID:29778035
Abstract

Different synthetic strategies for the formation of contact active antimicrobial materials utilizing covalent linkage of quaternary ammonium compounds (QACs) were reviewed. There is a demand to find methods that will prevent bacterial fouling without the release of antimicrobial agents, because biocides cause environment pollution and promote the development of bacteria resistance mechanisms. The contact active antimicrobial surfaces may provide a useful tool for this purpose. The covalent surface grafting of QACs seems to be a feasible and promising approach for the formation of safe and effective antimicrobial materials that could be utilized for medical devices, food industry, water treatment systems and other applications. This manuscript reviews covalent attachment of QACs to form contact active antimicrobial materials based on glass, metals, synthetic and natural polymers. The review emphasizes the description of different synthetic methods that are used for the covalent linkage. Direct covalent linkage of QACs to the material surfaces, a linkage via auxiliary nanoparticles (NPs), or spacers, controlled radical polymerization techniques and a linkage to pre-activated surfaces are discussed. The physico-chemical properties and biological activity of the modified surfaces are also described. This review does not cover non-covalent grafting of QACs and incorporation of QACs into a bulk material.

摘要

本文综述了利用季铵化合物(QACs)的共价键合形成接触式活性抗菌材料的不同合成策略。人们需要找到一种方法来防止细菌污染而不释放抗菌剂,因为杀生物剂会造成环境污染并促进细菌耐药机制的发展。接触式活性抗菌表面可能为此提供了有用的工具。QAC 的共价表面接枝似乎是形成安全有效抗菌材料的可行且有前途的方法,可用于医疗器械、食品工业、水处理系统和其他应用。本文综述了基于玻璃、金属、合成和天然聚合物的 QAC 共价接枝形成接触式活性抗菌材料。综述强调了用于共价键合的不同合成方法的描述。讨论了 QAC 与材料表面的直接共价键合、通过辅助纳米粒子(NPs)或间隔物的键合、可控自由基聚合技术以及与预激活表面的键合。还描述了改性表面的物理化学性质和生物活性。本文综述不包括 QAC 的非共价接枝和 QAC 掺入本体材料。

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