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On the potential for fibronectin/phosphorylcholine coatings on PTFE substrates to jointly modulate endothelial cell adhesion and hemocompatibility properties

机译:关于在PTFE基底上的纤连蛋白/磷酸胆碱涂层共同调节内皮细胞粘附和血液相容性的潜力

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摘要

The use of biomolecules as coatings on biomaterials is recognized to constitute a promising approach to modulate the biological response of the host. In this work, we propose a coating composed by 2 biomolecules susceptible to provide complementary properties for cardiovascular applications: fibronectin (FN) to enhance endothelialization, and phosphorylcholine (PRC) for its non thrombogenic properties. Polytetrafluoroethylene (PTFE) was selected as model substrate mainly because it is largely used in cardiovascular applications. Two approaches were investigated: 1) a sequential adsorption of the 2 biomolecules and 2) an adsorption of the protein followed by the grafting of phosphorylcholine via chemical activation. All coatings were characterized by immunofluorescence staining, X-Ray Photoelectron Spectroscopy and Scanning Electron Microscopy analyses. Assays with endothelial cells showed improvement on cell adhesion, spreading and metabolic activity on FN-PRC coatings compared with the uncoated PTFE. Platelets adhesion and activation were both reduced on the coated surfaces when compared with uncoated PTFE. Moreover, clotting time tests exhibited better hemocompatibility properties of the surfaces after a sequential adsorption of FN and PRC. In conclusion, FN-PRC coating improves cell adhesion and non-thrombogenic properties, thus revealing a certain potential for the development of this combined deposition strategy in cardiovascular applications.
机译:使用生物分子作为生物材料上的涂层被认为是调节宿主生物反应的一种有前途的方法。在这项工作中,我们提出了一种由2种生物分子组成的涂层,这些分子易于为心血管应用提供互补的特性:纤连蛋白(FN)增强内皮化作用,而磷酸胆碱(PRC)则具有非血栓形成特性。选择聚四氟乙烯(PTFE)作为模型基材,主要是因为它广泛用于心血管领域。研究了两种方法:1)依次吸附2种生物分子,以及2)吸附蛋白质,然后通过化学活化接枝磷酸胆碱。所有涂层均通过免疫荧光染色,X射线光电子能谱和扫描电子显微镜分析进行表征。与未涂覆的PTFE相比,用内皮细胞进行的测定显示出FN-PRC涂层在细胞粘附,扩散和代谢活性方面的改善。与未涂层的PTFE相比,涂层表面的血小板粘附和活化都降低。而且,凝结时间测试在依次吸附FN和PRC后表现出更好的表面血液相容性。总之,FN-PRC涂层改善了细胞粘附性和非血栓形成特性,因此揭示了在心血管应用中开发这种联合沉积策略的一定潜力。

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