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物理可切换抗菌表面和涂层:一般概念与最新进展

Physically Switchable Antimicrobial Surfaces and Coatings: General Concept and Recent Achievements.

作者信息

Elashnikov Roman, Ulbrich Pavel, Vokatá Barbora, Pavlíčková Vladimíra Svobodová, Švorčík Václav, Lyutakov Oleksiy, Rimpelová Silvie

机构信息

Department of Solid State Engineering, University of Chemistry and Technology Prague, Technická 3, Prague 6, 166 28 Prague, Czech Republic.

Department of Biochemistry and Microbiology, University of Chemistry and Technology Prague, Technická 3, Prague 6, 166 28 Prague, Czech Republic.

出版信息

Nanomaterials (Basel). 2021 Nov 16;11(11):3083. doi: 10.3390/nano11113083.

Abstract

Bacterial environmental colonization and subsequent biofilm formation on surfaces represents a significant and alarming problem in various fields, ranging from contamination of medical devices up to safe food packaging. Therefore, the development of surfaces resistant to bacterial colonization is a challenging and actively solved task. In this field, the current promising direction is the design and creation of nanostructured smart surfaces with on-demand activated amicrobial protection. Various surface activation methods have been described recently. In this review article, we focused on the "physical" activation of nanostructured surfaces. In the first part of the review, we briefly describe the basic principles and common approaches of external stimulus application and surface activation, including the temperature-, light-, electric- or magnetic-field-based surface triggering, as well as mechanically induced surface antimicrobial protection. In the latter part, the recent achievements in the field of smart antimicrobial surfaces with physical activation are discussed, with special attention on multiresponsive or multifunctional physically activated coatings. In particular, we mainly discussed the multistimuli surface triggering, which ensures a better degree of surface properties control, as well as simultaneous utilization of several strategies for surface protection, based on a principally different mechanism of antimicrobial action. We also mentioned several recent trends, including the development of the to-detect and to-kill hybrid approach, which ensures the surface activation in a right place at a right time.

摘要

细菌在环境中的定殖以及随后在表面形成生物膜,在从医疗设备污染到安全食品包装等各个领域都是一个重大且令人担忧的问题。因此,开发抗细菌定殖的表面是一项具有挑战性且正在积极解决的任务。在该领域,当前有前景的方向是设计和制造具有按需激活抗菌保护功能的纳米结构智能表面。最近已经描述了各种表面激活方法。在这篇综述文章中,我们聚焦于纳米结构表面的“物理”激活。在综述的第一部分,我们简要描述了外部刺激应用和表面激活的基本原理及常见方法,包括基于温度、光、电场或磁场的表面触发,以及机械诱导的表面抗菌保护。在后者部分,讨论了物理激活的智能抗菌表面领域的最新成果,特别关注多响应或多功能物理激活涂层。具体而言,我们主要讨论了多刺激表面触发,它能确保更好地控制表面性能,以及基于主要不同抗菌作用机制同时利用多种表面保护策略。我们还提到了几个近期趋势,包括开发检测与杀灭混合方法,该方法能确保在正确的时间和地点激活表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6175/8619822/ff9b0ca1f8f5/nanomaterials-11-03083-g001.jpg

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