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Plasma-Modified Biomaterials for Self-Antimicrobial Applications

机译:用于自抗菌应用的等离子改性生物材料

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The surface compatibility and antibacterial properties of biomaterials are crucial to tissue engineering and other medical applications, and plasma-assisted technologies have been employed to enhance these characteristics with good success. Herein, we describe and review the recent developments made by our interdisciplinary team on self-antimicrobial biomaterials with emphasis on plasma-based surface modification. Our results indicate that a self-antibacterial surface can be produced on various types of materials including polymers, metals, and ceramics by plasma treatment. Surface characteristics such as roughness, microstructure, chemistry, electronegativity, free energy, hydrophilicity, and interfacial physiochemistry are important factors and can be tailored by using the appropriate plasma-assisted processing parameters. In particular, mechanistic studies reveal that the interfacial physiochemical processes, biocidal agents, and surface free energy are predominantly responsible for the antibacterial effects of plasma-modified biomaterials.
机译:生物材料的表面相容性和抗菌特性对于组织工程和其他医学应用至关重要,并且已经采用等离子体辅助技术来成功地增强这些特性。在这里,我们描述并回顾了我们的跨学科团队在自我抗菌生物材料方面的最新进展,重点是基于等离子体的表面改性。我们的结果表明,可以通过等离子体处理在包括聚合物,金属和陶瓷在内的各种类型的材料上产生自我抗菌的表面。表面特性(例如粗糙度,微观结构,化学性质,电负性,自由能,亲水性和界面物理化学)是重要因素,可以使用适当的等离子体辅助处理参数进行定制。尤其是,机理研究表明,界面物理化学过程,杀生物剂和表面自由能主要负责等离子体改性生物材料的抗菌作用。

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