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通过简便的表面功能化,获得具有良好抗菌、抗生物膜、抗细胞黏附性和生物相容性的聚氨酯。

Favorable Antibacterial, Antibiofilm, Antiadhesion to Cells, and Biocompatible Polyurethane by Facile Surface Functionalization.

机构信息

Macoliromolecular Chemistry II, Bavarian Polymer Institute, University of Bayreuth, Universitätsstrasse 30, Bayreuth 95440, Germany.

Department of Organic Chemistry and Polymer, Faculty of Chemistry, Kharazmi University, Tehran 15719-14911, Iran.

出版信息

ACS Appl Bio Mater. 2021 May 17;4(5):4629-4640. doi: 10.1021/acsabm.1c00356. Epub 2021 Apr 29.

Abstract

It is of paramount importance to prohibit biofilm formation in a wide range of implant devices, such as thermoplastic polyurethane (PU)-based catheters. It is possible only by means of a multifunctional material that provides fast and effective antibacterial activity, proper biocompatibility, and low bacterial and cell adhesion. In this paper, a facile chemistry approach has been developed to modify biomedical-grade PU with PU species, containing reactive uretdione functional groups for functionalization with the contact-type polyguanidine bactericidal agent and oxidized dextran as an antifouling polymer without sacrificing the thermal and mechanical properties. The resulting PU possesses broad-spectrum contact-active antibacterial activity against Gram-negative and Gram-positive bacteria with fast kinetics. The excellent antifouling capacity was confirmed by low nonspecific protein adsorption and reduced adhesion of fibroblast cells by ≥ 90%. In addition to antiadhesive and antibiofilm properties, high cell viability (>90%) and low hemolysis rate (HR < 1%) verified favorable cytocompatibility. Hence, the strategy followed to functionalize PUs in this paper might be considered to modify PU-based biomedical devices.

摘要

在各种植入式设备(如基于热塑性聚氨酯 (PU) 的导管)中,防止生物膜形成至关重要。这只能通过一种多功能材料来实现,该材料提供快速有效的抗菌活性、适当的生物相容性以及低细菌和细胞粘附性。在本文中,开发了一种简便的化学方法来修饰生物医学级 PU,使其具有含有反应性尿嘧啶二酮官能团的 PU 物种,可用于与接触型聚胍杀菌剂功能化,并作为抗污聚合物的氧化葡聚糖,而不会牺牲热和机械性能。所得的 PU 具有广谱的接触式活性抗菌活性,可有效对抗革兰氏阴性菌和革兰氏阳性菌,具有快速动力学。通过低非特异性蛋白质吸附和减少成纤维细胞的粘附(≥90%)证实了其出色的抗污能力。除了抗粘附和抗生物膜特性外,高细胞活力 (>90%) 和低溶血率 (HR < 1%) 证实了其良好的细胞相容性。因此,本文中用于修饰 PUs 的策略可以被认为是用于修饰基于 PU 的生物医学设备。

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