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Adhesion and Growth of Vascular Smooth Muscle Cells on Nanostructured and Biofunctionalized Polyethylene

机译:纳米结构和生物功能化聚乙烯上血管平滑肌细胞的粘附和生长

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摘要

Cell colonization of synthetic polymers can be regulated by physical and chemical modifications of the polymer surface. High-density and low-density polyethylene (HDPE and LDPE) were therefore activated with Ar+ plasma and grafted with fibronectin (Fn) or bovine serum albumin (BSA). The water drop contact angle usually decreased on the plasma-treated samples, due to the formation of oxidized groups, and this decrease was inversely related to the plasma exposure time (50–300 s). The presence of nitrogen and sulfur on the polymer surface, revealed by X-ray photoelectron spectroscopy (XPS), and also by immunofluorescence staining, showed that Fn and BSA were bound to this surface, particularly to HDPE. Plasma modification and grafting with Fn and BSA increased the nanoscale surface roughness of the polymer. This was mainly manifested on HDPE. Plasma treatment and grafting with Fn or BSA improved the adhesion and growth of vascular smooth muscle cells in a serum-supplemented medium. The final cell population densities on day 6 after seeding were on an average higher on LDPE than on HDPE. In a serum-free medium, BSA grafted to the polymer surface hampered cell adhesion. Thus, the cell behavior on polyethylene can be modulated by its type, intensity of plasma modification, grafting with biomolecules, and composition of the culture medium.
机译:合成聚合物的细胞定植可以通过聚合物表面的物理和化学修饰来调节。因此,高密度和低密度聚乙烯(HDPE和LDPE)被Ar + 血浆活化,并被纤连蛋白(Fn)或牛血清白蛋白(BSA)接枝。由于形成了氧化基团,在经过等离子体处理的样品上,水滴的接触角通常会减小,而这种减小与血浆暴露时间(50-300 s)成反比。 X射线光电子能谱(XPS)以及免疫荧光染色表明,聚合物表面存在氮和硫,这表明Fn和BSA与该表面结合,特别是与HDPE结合。用Fn和BSA进行等离子体改性和接枝增加了聚合物的纳米级表面粗糙度。这主要表现在HDPE上。血浆处理和Fn或BSA移植改善了血清补充培养基中血管平滑肌细胞的粘附和生长。接种后第6天,LDPE的最终细胞密度平均高于HDPE。在无血清的培养基中,BSA接枝到聚合物表面阻碍了细胞粘附。因此,在聚乙烯上的细胞行为可以通过其类型,血浆修饰的强度,生物分子的接枝以及培养基的组成来调节。

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