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聚合物刷功能化壳聚糖水凝胶作为抗污植入涂层。

Polymer Brush-Functionalized Chitosan Hydrogels as Antifouling Implant Coatings.

机构信息

NovioSense B.V., Transistorweg 5, 6534 AT Nijmegen, The Netherlands.

DWI-Leibniz Institute for Interactive Materials and Institute of Technical and Macromolecular Chemistry, RWTH Aachen University , Forckenbeckstraße 50, 52074 Aachen, Germany.

出版信息

Biomacromolecules. 2017 Jun 12;18(6):1983-1992. doi: 10.1021/acs.biomac.7b00516. Epub 2017 May 12.

Abstract

Implantable sensor devices require coatings that efficiently interface with the tissue environment to mediate biochemical analysis. In this regard, bioinspired polymer hydrogels offer an attractive and abundant source of coating materials. However, upon implantation these materials generally elicit inflammation and the foreign body reaction as a consequence of protein fouling on their surface and concomitant poor hemocompatibility. In this report we investigate a strategy to endow chitosan hydrogel coatings with antifouling properties by the grafting of polymer brushes in a "grafting-from" approach. Chitosan coatings were functionalized with polymer brushes of oligo(ethylene glycol) methyl ether methacrylate and 2-hydroxyethyl methacrylate using photoinduced single electron transfer living radical polymerization and the surfaces were thoroughly characterized by XPS, AFM, water contact angle goniometry, and in situ ellipsometry. The antifouling properties of these new bioinspired hydrogel-brush coatings were investigated by surface plasmon resonance. The influence of the modifications to the chitosan on hemocompatibility was assessed by contacting the surfaces with platelets and leukocytes. The coatings were hydrophilic and reached a thickness of up to 180 nm within 30 min of polymerization. The functionalization of the surface with polymer brushes significantly reduced the protein fouling and eliminated platelet activation and leukocyte adhesion. This methodology offers a facile route to functionalizing implantable sensor systems with antifouling coatings that improve hemocompatibility and pave the way for enhanced device integration in tissue.

摘要

植入式传感器设备需要与组织环境有效接口的涂层,以介导生化分析。在这方面,仿生聚合物水凝胶为涂层材料提供了有吸引力和丰富的来源。然而,这些材料在植入后,由于表面的蛋白质污染和随之而来的较差血液相容性,通常会引起炎症和异物反应。在本报告中,我们研究了一种通过“从接枝”方法在壳聚糖水凝胶涂层上接枝聚合物刷来赋予其抗污染特性的策略。使用光诱导单电子转移自由基聚合,将壳聚糖涂层功能化,得到聚乙二醇甲基醚甲基丙烯酸酯和 2-羟乙基甲基丙烯酸酯的聚合物刷,并用 XPS、AFM、水接触角测量法和原位椭圆光度法对表面进行了彻底的表征。通过表面等离子体共振研究了这些新的仿生水凝胶刷涂层的抗污染特性。通过将表面与血小板和白细胞接触,评估了对壳聚糖的修饰对血液相容性的影响。涂层具有亲水性,在聚合 30 分钟内达到 180nm 的厚度。表面的聚合物刷功能化显著降低了蛋白质污染,并消除了血小板激活和白细胞黏附。这种方法为用抗污染涂层功能化植入式传感器系统提供了一种简便的途径,改善了血液相容性,为提高设备在组织中的集成度铺平了道路。

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