Department of Materials Science and Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.
ACS Appl Bio Mater. 2022 Apr 18;5(4):1364-1390. doi: 10.1021/acsabm.1c01006. Epub 2022 Apr 4.
Bacteria-assisted infections on biomaterials used inside a body as an implant/device are one of the major threats to human health. Microbial-resistant coatings on biomaterials can potentially be considered to mitigate the biomaterial-associated infections. Usually biomaterials with leachable antimicrobial coatings, though economically attractive, provide only short-term protection of the surface against bacteria. Therefore, a stable, nonfouling or bactericidal, and biocompatible polymeric coating is highly desirable. In this regard, polymer brushes, defined as polymer chains tethered to a surface by one end, with suitable anti-infective functionality, represent a useful class of stable coatings which are covalently connected to the underlying surface, thus prolonging the infection resistance of the coated surface. Surface-initiated atom transfer radical polymerization (SI-ATRP) is a versatile technique for the generation of polymeric brushes via "grafting from" way. In this review, we have attempted to give a brief overview about the recent developments of surface coatings by infection-resistant polymer brushes synthesized via SI-ATRP and their applications in the biomedical field. On the basis of their charges, these anti-infective brushes can be classified into five different categories such as neutral, cationic, anionic, zwitterionic, and mixed brushes. The working mechanism of each type of brush in repelling (nonfouling/bacteriostatic) and/or killing (bactericidal) the bacteria has also been discussed. A brief summary of their future scope is also highlighted.
生物材料在体内作为植入物/器械使用时,细菌辅助感染是对人类健康的主要威胁之一。生物材料上的微生物耐药涂层可能被认为是减轻与生物材料相关的感染的一种方法。通常,具有可沥滤抗菌涂层的生物材料虽然具有经济吸引力,但只能为表面提供短期的细菌防护。因此,非常需要一种稳定、不粘或杀菌且生物相容的聚合物涂层。在这方面,聚合物刷定义为通过一端键合到表面的聚合物链,具有合适的抗感染功能,代表了一类有用的稳定涂层,它们通过共价键连接到下面的表面,从而延长了涂层表面的抗感染能力。表面引发原子转移自由基聚合(SI-ATRP)是通过“从接枝”方式生成聚合物刷的一种通用技术。在这篇综述中,我们试图简要概述通过 SI-ATRP 合成的抗感染聚合物刷的表面涂层的最新进展及其在生物医学领域的应用。根据它们的电荷,这些抗感染刷可以分为五种不同的类别,如中性、阳离子、阴离子、两性离子和混合刷。每种类型的刷在排斥(非粘附和/抑菌)和/或杀死(杀菌)细菌方面的工作机制也进行了讨论。还简要总结了它们未来的应用前景。