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等离子体表面改性策略在抗菌生物材料制备中的应用:对近期文献的综述。

Plasma surface modification strategies for the preparation of antibacterial biomaterials: A review of the recent literature.

机构信息

Department of Chemistry, Ankara Hacı Bayram Veli University, 06900 Ankara, Turkey.

Department of Chemistry, Ankara Hacı Bayram Veli University, 06900 Ankara, Turkey.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Dec;131:112474. doi: 10.1016/j.msec.2021.112474. Epub 2021 Oct 13.

Abstract

Plasma-based strategies offer several advantages for developing antibacterial biomaterials and can be used directly or combined with other surface modification techniques. Direct plasma strategies can be classified as plasma surface modifications that derive antibacterial property by tailoring surface topography or surface chemistry. Nano patterns induced by plasma modification can exhibit antibacterial property and promote the adhesion and proliferation of mammalian cells, creating antibacterial and biocompatible surfaces. Antibacterial effect by tailoring surface chemistry via plasma can be attained by either creating bacteriostatic surfaces or bactericidal surfaces. Plasma-assisted strategies incorporate plasma processes in combination with other surface modification techniques. Plasma coating can serve as a drug-eluting reservoir and diffusion barrier. The plasma-functionalized surface can serve as a platform for grafting antibacterial agents, and plasma surface activation can improve the adhesion of polymeric layers with antibacterial properties. This article critically reviews plasma-based strategies reported in the recent literature for the development of antibacterial biomaterial surfaces. Studies using both atmospheric and low-pressure plasmas are included in this review. The findings are discussed in terms of the trends in material and precursor selection, modification stability, antibacterial efficacy, the choice of bacterial strains tested, cell culture findings, critical aspects of in vitro performance testing and in vivo experimental design.

摘要

基于等离子体的策略为开发抗菌生物材料提供了几个优势,并且可以直接使用或与其他表面改性技术结合使用。直接等离子体策略可分为通过调整表面形貌或表面化学来获得抗菌性能的等离子体表面改性。等离子体改性诱导的纳米图案可以表现出抗菌性能,并促进哺乳动物细胞的黏附和增殖,从而创造出具有抗菌和生物相容性的表面。通过等离子体表面化学修饰来实现的抗菌效果可以通过创建抑菌表面或杀菌表面来获得。等离子体辅助策略将等离子体工艺与其他表面改性技术结合使用。等离子体涂层可用作药物释放的储库和扩散屏障。等离子体功能化表面可用作接枝抗菌剂的平台,而等离子体表面激活可以改善具有抗菌性能的聚合物层的黏附性。本文批判性地回顾了近期文献中报道的用于开发抗菌生物材料表面的基于等离子体的策略。本综述包括使用大气压和低压等离子体的研究。根据材料和前体选择、改性稳定性、抗菌效果、测试的细菌菌株选择、细胞培养结果、体外性能测试的关键方面和体内实验设计的趋势,讨论了这些发现。

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