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等离子体技术在金属抗菌表面性能方面的应用。

Use of Plasma Technologies for Antibacterial Surface Properties of Metals.

机构信息

Department of Surface Engineering, Jožef Stefan Institute, Jamova 39, SI-1000 Ljubljana, Slovenia.

出版信息

Molecules. 2021 Mar 5;26(5):1418. doi: 10.3390/molecules26051418.

Abstract

Bacterial infections of medical devices present severe problems connected with long-term antibiotic treatment, implant failure, and high hospital costs. Therefore, there are enormous demands for innovative techniques which would improve the surface properties of implantable materials. Plasma technologies present one of the compelling ways to improve metal's antibacterial activity; plasma treatment can significantly alter metal surfaces' physicochemical properties, such as surface chemistry, roughness, wettability, surface charge, and crystallinity, which all play an important role in the biological response of medical materials. Herein, the most common plasma treatment techniques like plasma spraying, plasma immersion ion implantation, plasma vapor deposition, and plasma electrolytic oxidation as well as novel approaches based on gaseous plasma treatment of surfaces are gathered and presented. The latest results of different surface modification approaches and their influence on metals' antibacterial surface properties are presented and critically discussed. The mechanisms involved in bactericidal effects of plasma-treated surfaces are discussed and novel results of surface modification of metal materials by highly reactive oxygen plasma are presented.

摘要

医疗器械的细菌感染会带来严重的问题,包括长期的抗生素治疗、植入物失效和高昂的医院费用。因此,人们迫切需要创新技术来改善可植入材料的表面性能。等离子体技术是提高金属抗菌活性的一种极具吸引力的方法;等离子体处理可以显著改变金属表面的物理化学性质,如表面化学、粗糙度、润湿性、表面电荷和结晶度,这些性质在医用材料的生物反应中都起着重要作用。本文收集并介绍了最常见的等离子体处理技术,如等离子喷涂、等离子体浸没离子注入、等离子体气相沉积和等离子体电解氧化,以及基于气体等离子体处理表面的新型方法。介绍并批判性地讨论了不同表面改性方法的最新结果及其对金属抗菌表面性能的影响。讨论了等离子体处理表面的杀菌作用机制,并介绍了高反应性氧等离子体改性金属材料的新结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db93/7961478/044265fa47e8/molecules-26-01418-g001.jpg

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