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接触血液材料的自组装表面。

Self-assembling surfaces of blood-contacting materials.

机构信息

Institute of Metallurgy and Materials Science, Polish Academy of Sciences, Cracow, Poland.

出版信息

J Mater Sci Mater Med. 2013 Mar;24(3):725-33. doi: 10.1007/s10856-012-4824-y. Epub 2012 Dec 11.

Abstract

The optimal scaffold should have the self-organising property of activating the appropriate tissues surrounding the re-population. The anti-bacterial property of the coating was obtained through surface pre-treatment with coatings a few nanometres in thickness deposited using vapour-based methods. The coating's anti-thrombogenic properties were obtained by the selective mobilisation of cellular functions, which was controlled by the structure of porous coatings deposited on bulk substrates and by the small biological agent-L-arginyl-glycyl-L-aspartic acid (tripeptide Arg-Gly-Asp-RGD) protein domains. Two tests simulating arterial flow conditions were performed: Impact-R, for examining platelet function under near physiological conditions, and radial flow chamber, a cell detachment test that gives an overview of cell behaviour and shear stresses that could appear between the cell and the biomaterial. Cell structures were analysed using laser scanning confocal microscopy and flow cytometry. The performed in vitro dynamic test for the haemo-compatibility revealed the most promising surface functionalization was based on porous extracellular-like structure covered with endothelium cells simultaneously. The antibacterial function was achieved by the appropriate phase composition of the coating used for the pre-treatment stage. The coating for the pre-treatment was selected on the basis of the blood-material and bacteria-material interaction.

摘要

最佳的支架应具有自我组织特性,能够激活周围重新填充的组织。通过使用气相沉积方法沉积几纳米厚的涂层进行表面预处理,获得了涂层的抗菌性能。通过对多孔涂层的结构和小生物活性剂 L-精氨酸-甘氨酸-L-天冬氨酸(三肽 Arg-Gly-Asp-RGD)蛋白结构域的选择性激活细胞功能,获得了涂层的抗血栓形成性能。进行了两种模拟动脉流动条件的测试:Impact-R,用于在近生理条件下检查血小板功能,以及径向流动室,这是一种细胞脱落测试,可全面了解细胞行为和细胞与生物材料之间可能出现的剪切力。使用激光共聚焦扫描显微镜和流式细胞术分析了细胞结构。进行的体外血液相容性动态测试表明,最有前途的表面功能化是基于同时覆盖内皮细胞的多孔细胞外样结构。抗菌功能是通过用于预处理阶段的涂层的适当相组成实现的。预处理涂层的选择基于血液材料和细菌材料的相互作用。

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