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基于微米级分层聚合物刷系统的通用聚合物基底自适应抗菌涂层。

Self-Adaptive Antibacterial Coating for Universal Polymeric Substrates Based on a Micrometer-Scale Hierarchical Polymer Brush System.

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.

University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Sep 23;12(38):42576-42585. doi: 10.1021/acsami.0c13413. Epub 2020 Sep 9.

Abstract

Surface-tethered hierarchical polymer brushes find wide applications in the development of antibacterial surfaces due to the well-defined spatial distribution and the separate but complementary properties of different blocks. Existing methods to achieve such polymer brushes mainly focused on inorganic material substrates, precluding their practical applications on common medical devices. In this work, a hierarchical polymer brush system is proposed and facilely constructed on polymeric substrates via light living graft polymerization. The polymer brush system with micrometer-scale thickness exhibits a unique hierarchical architecture consisting of a poly(hydroxyethyl methacrylate) (PHEMA) outer layer and an anionic inner layer loading with cationic antimicrobial peptide (AMP) via electrostatic attraction. The surface of this system inhibits the initial adhesion of bacteria by the PHEMA hydration outer layer under neutral pH conditions; when bacteria adhere and proliferate on this surface, the bacterially induced acidification triggers the cleavage of labile amide bonds within the inner layer to expose the positively charged amines and vigorously release melittin (MLT), allowing the surface to timely kill the adhering bacteria. The hierarchical surface employs multiple antibacterial mechanisms to combat bacterial infection and shows high sensitiveness and responsiveness to pathogens. A new paradigm is supplied by this modular hierarchical polymer brushes system for the progress of intelligent surfaces on universal polymer substrates, showing great potential to a promising strategy for preventing infection related to medical devices.

摘要

基于不同嵌段的明确空间分布和独立但互补的特性,表面接枝的分级聚合物刷在抗菌表面的发展中得到了广泛的应用。现有的实现这种聚合物刷的方法主要集中在无机材料基底上,这排除了它们在常见医疗设备上实际应用的可能性。在这项工作中,提出并通过光活接枝聚合在聚合物基底上轻松构建了分级聚合物刷系统。具有微米级厚度的聚合物刷系统具有独特的分级结构,由聚(羟乙基甲基丙烯酸酯)(PHEMA)外层和带正电荷的抗菌肽(AMP)的阴离子内层通过静电吸引组成。在中性 pH 条件下,该系统的 PHEMA 水合外层抑制了细菌的初始粘附;当细菌在该表面上粘附和增殖时,细菌诱导的酸化会触发内层中不稳定酰胺键的断裂,暴露出带正电荷的胺,并剧烈释放蜂毒素(MLT),使表面能够及时杀死粘附的细菌。分层表面采用多种抗菌机制来对抗细菌感染,对病原体具有高度的敏感性和响应性。这种模块化分级聚合物刷系统为通用聚合物基底上智能表面的发展提供了一个新范例,显示出作为一种有希望的预防与医疗设备相关感染的策略的巨大潜力。

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