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主体-客体相互作用介导的光/温度双重控制抗菌表面。

Host-Guest Interaction-Mediated Photo/Temperature Dual-Controlled Antibacterial Surfaces.

机构信息

College of Materials Science & Engineering, Zhejiang University of Technology, Hangzhou 310014, P. R. China.

Department of Chemical, Biomolecular, and Corrosion Engineering, College of Engineering and Polymer Science, The University of Akron, Akron, Ohio 44325, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 31;13(12):14543-14551. doi: 10.1021/acsami.0c21626. Epub 2021 Mar 18.

Abstract

Development of smart switchable surfaces to solve the inevitable bacteria attachment and colonization has attracted much attention; however, it proves very challenging to achieve on-demand regeneration for noncontaminated surfaces. We herein report a smart, host-guest interaction-mediated photo/temperature dual-controlled antibacterial surface, topologically combining stimuli-responsive polymers with nanobactericide. From the point of view of long-chain polymer design, the peculiar hydration layer generated by hydrophilic poly(2-hydroxyethyl methacrylate) (polyHEMA) segments severs the route of initial bacterial attachment and subsequent proliferation, while the synergistic effect on chain conformation transformation poly(-isopropylacrylamide) (polyNIPAM) and guest complex dissociation azobenzene/cyclodextrin (Azo/CD) complex greatly promotes the on-demand bacterial release in response to the switch of temperature and UV light. Therefore, the resulting surface exhibits triple successive antimicrobial functions simultaneously: (i) resists ∼84.9% of initial bacterial attachment, (ii) kills ∼93.2% of inevitable bacteria attack, and (iii) releases over 94.9% of killed bacteria even after three cycles. The detailed results not only present a potential and promising strategy to develop renewable antibacterial surfaces with successive antimicrobial functions but also contribute a new antimicrobial platform to biomedical or surgical applications.

摘要

开发智能可切换表面以解决不可避免的细菌附着和定植问题引起了广泛关注;然而,实现无污染物表面的按需再生极具挑战性。本文报道了一种智能的、主体-客体相互作用介导的光/温度双控抗菌表面,拓扑结合了刺激响应聚合物和纳米抗菌剂。从长链聚合物设计的角度来看,亲水聚(2-羟乙基甲基丙烯酸酯)(polyHEMA)段产生的特殊水合层阻断了初始细菌附着和随后增殖的途径,而聚(异丙基丙烯酰胺)(polyNIPAM)的链构象转变协同效应和客体配合物解离偶氮苯/环糊精(Azo/CD)复合物极大地促进了按需细菌释放,以响应温度和紫外光的切换。因此,所得表面同时表现出三重连续抗菌功能:(i)抵抗约 84.9%的初始细菌附着,(ii)杀死约 93.2%的不可避免的细菌攻击,(iii)即使在三个循环后,杀死的细菌也释放出超过 94.9%。详细的结果不仅提出了一种有潜力和有前途的策略,用于开发具有连续抗菌功能的可再生抗菌表面,而且为生物医学或外科应用提供了一个新的抗菌平台。

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