高分子抗菌涂层研究进展

Najah Hafizah Musa, Zhengmian Chang, Y. H. Teow, N. Rosli, A. Mohammad
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引用次数: 0

摘要

抗菌涂层已成为全球微生物感染缓解计划的关键组成部分。由于材料科学、生物技术和环境微生物学的最新发展,设计具有抗菌特性的表面的广泛替代方案现在是可以获得的。抗菌涂层在控制疾病传播,防止微生物在各种应用中使用的基质上定植方面发挥着重要作用。通过利用具有抗菌特性的聚合物或将抗菌剂掺入聚合物中,可以在基材上形成抗菌涂层。通过控制聚合物的使用和周围条件,涂层的抗菌活性可以相应地调整。由于抗菌剂和高分子抗菌剂的理化性质不同,抗菌剂的作用机理可以从抗菌剂释放、抗菌剂保留、接触杀灭和抗粘附等方面进行论证。本文介绍了抗菌涂料的合成方法、抗菌机理、影响因素及其在各行业中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review on Polymer Based Antimicrobial Coating
Antimicrobial coatings have become a key component of the worldwide microbial infection mitigation plan. A wide range of alternatives for designing surfaces with antimicrobial qualities is now accessible, attributed to the recent developments in materials science, biotechnology, and environmental microbiology. Antimicrobial coatings have a big role to control the spread of disease, preventing microbial colonisation on the substrate used in various applications. The antimicrobial coatings could be formed on the substrate by utilizing the polymer with antimicrobial properties or incorporating the antimicrobial agents into the polymer. By manipulating the use of polymers and surrounding conditions, the antimicrobial activity of the coating could be tailored accordingly. Due to the difference in physicochemical properties of both antimicrobial polymers and agents, the antimicrobial mechanism could be demonstrated by antimicrobial agent release, antimicrobial agent retention, contact-killing, and anti-adhesion. This paper provides information on antimicrobial coatings, in terms of the synthesis methods, antimicrobial mechanism, influencing factors, and applications in various industries.
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