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基于季铵盐的 PNIPAM 微凝胶制备的通用抗菌表面

Universal Antibacterial Surfaces Fabricated from Quaternary Ammonium Salt-Based PNIPAM Microgels.

机构信息

State and Local Joint Engineering Laboratory for Novel Functional Polymeric Materials, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, P. R. China.

Jiangsu Biosurf Biotech Company Ltd., 218 Xinghu Street, Suzhou 215123, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 29;12(17):19268-19276. doi: 10.1021/acsami.0c00791. Epub 2020 Apr 15.

Abstract

Because of the excellent film-forming ability of poly(-isopropylacrylamide) (PNIPAM) microgel and high-efficient bactericidal property of quaternary ammonium salt (QAS), QAS-based PNIPAM (QAS-PNIPAM) microgels are synthesized and employed to modify the surface of a range of commonly used materials including metal, plastic, and elastomer. Bacterial culture is carried out on such QAS-PNIPAM microgel-modified surfaces to examine the viability of the attached bacteria. It is found that the bactericidal efficiency is nearly 100% on the modified surfaces of all the studied materials. We attribute the high-efficient bactericidal performance of QAS-PNIPAM microgel film to the QAS component rather than the topography of the microgel film itself. In addition, the microgel film is robust and shows great integrity even after culture of the bacteria and repeated rinses, and the cell experiment demonstrates that this microgel film is cyto-compatible. Therefore, such a simple, versatile method of preparing antibacterial films paves the way for future bactericidal applications.

摘要

由于聚(异丙基丙烯酰胺)(PNIPAM)微凝胶具有优异的成膜能力和季铵盐(QAS)的高效杀菌性能,因此合成了基于 QAS 的 PNIPAM(QAS-PNIPAM)微凝胶,并将其用于修饰一系列常用材料的表面,包括金属、塑料和弹性体。在这些 QAS-PNIPAM 微凝胶修饰的表面上进行细菌培养,以检查附着细菌的活力。结果发现,在所有研究材料的修饰表面上,杀菌效率接近 100%。我们将 QAS-PNIPAM 微凝胶膜的高效杀菌性能归因于 QAS 成分,而不是微凝胶膜本身的形貌。此外,即使在培养细菌和反复冲洗后,微凝胶膜仍具有很强的完整性和稳定性,细胞实验表明该微凝胶膜具有细胞相容性。因此,这种简单、通用的制备抗菌膜的方法为未来的杀菌应用铺平了道路。

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