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聚乙二醇链密度不同的基底上蛋白质吸附与细胞行为的相关性研究。

A correlation study of protein adsorption and cell behaviors on substrates with different densities of PEG chains.

作者信息

Sun Mingcong, Deng Jun, Tang Zengchao, Wu Jindan, Li Dan, Chen Hong, Gao Changyou

机构信息

MOE of Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.

Macromolecules and Biointerface Lab, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.

出版信息

Colloids Surf B Biointerfaces. 2014 Oct 1;122:134-142. doi: 10.1016/j.colsurfb.2014.06.041. Epub 2014 Jul 1.

Abstract

The adsorption of proteins, in particular fibronectin (Fn), was studied on poly(ethylene glycol) (PEG, 5kDa)-grafted surfaces, and was correlated with the adhesion behaviors of smooth muscle cells (SMCs). The PEG molecules were covalently grafted on aldehyde-activated substrates with different densities of amino groups. The thickness of PEG layer increased nearly 10 fold in a hydrated state, reaching to 27nm on the surface of highest PEG chain density with a brush configuration. On the lower PEG-grafted surfaces, however, the PEG molecules adopted a mushroom configuration. The adsorption of Fn without and with the competition of bovine serum albumin (BSA) and serum was studied by using ellipsometry, fluorescence microscopy and radio-labeling techniques. The adsorption amount of Fn in serum decreased initially with increased PEG chain density until 0.12chains/nm(2) PEG, and then slightly increased on the 0.29chains/nm(2) PEG. A series of protein preadsorption experiments were carried out under different conditions before SMCs culture in vitro. Compared with those substrates without Fn preadsorption, the cell adhesion and spreading were significantly enhanced on all the PEG surfaces preadsorbed with Fn and serum, although they overall decreased along with the increase of PEG grafting density. The adhesion force of Fn decreased monotonously with the increase of PEG grafting density, which was in accordance with the cell adhesion force. The correlation between the PEG-grafted surfaces, Fn adsorption, and cellular behaviors is finally suggested.

摘要

研究了蛋白质,特别是纤连蛋白(Fn)在聚乙二醇(PEG,5kDa)接枝表面上的吸附情况,并将其与平滑肌细胞(SMC)的黏附行为相关联。PEG分子通过共价键接枝到具有不同氨基密度的醛基活化底物上。在水合状态下,PEG层的厚度增加了近10倍,在具有刷状结构的最高PEG链密度表面上达到27nm。然而,在较低PEG接枝的表面上,PEG分子呈现蘑菇状结构。通过椭圆偏振法、荧光显微镜和放射性标记技术研究了有无牛血清白蛋白(BSA)和血清竞争时Fn的吸附情况。血清中Fn的吸附量最初随着PEG链密度的增加而降低,直至PEG为0.12链/nm(2),然后在PEG为0.29链/nm(2)时略有增加。在体外培养SMC之前,在不同条件下进行了一系列蛋白质预吸附实验。与未预吸附Fn的底物相比,在所有预吸附了Fn和血清的PEG表面上,细胞黏附和铺展均显著增强,尽管它们总体上随着PEG接枝密度的增加而降低。Fn的黏附力随着PEG接枝密度的增加而单调降低,这与细胞黏附力一致。最后提出了PEG接枝表面、Fn吸附和细胞行为之间的相关性。

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