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一种用于特定细胞黏附的新型星形聚乙二醇衍生表面涂层。

A novel star PEG-derived surface coating for specific cell adhesion.

作者信息

Groll Juergen, Fiedler Joerg, Engelhard Erika, Ameringer Thomas, Tugulu Stefano, Klok Harm-Anton, Brenner Rolf E, Moeller Martin

机构信息

Department of Textile and Macromolecular Chemistry, RWTH Aachen, Pauwelsstrasse 8, 52074 Aachen, Germany.

出版信息

J Biomed Mater Res A. 2005 Sep 15;74(4):607-17. doi: 10.1002/jbm.a.30335.

Abstract

In this study a novel approach for the coating and functionalization of substrates for cell culture and tissue engineering is presented. Glass, silicon, and titanium panes were coated with an ultrathin film (30 +/- 5 nm) of reactive star-shaped poly(ethylene glycol) prepolymers (Star PEG). Homogeneity of the films was checked by optical microscopy and scanning force microscopy. These coatings prevent unspecific protein adsorption as monitored by fluorescence microscopy and ellipsometry. In order to allow specific cell adhesion the films were modified with linear RGD peptides (gRGDsc) in different concentrations. After sterilization, fibroblast, SaOS, and human mesenchymal stem cells (hMSC) were seeded on these substrates. Cell adhesion, spreading, and survival was observed for up to 30 days on linear RGD peptide (gRGDsc)-modified coatings, whereas no cell adhesion could be detected on unmodified Star PEG layers. By variation of the RGD concentration within the film the amount of cells that became adhesive could be controlled. When differentiation conditions are used for cultivation of hMSCs the cells show the expression of osteogenic marker genes after 14 days which is comparable to cultivation on cell culture plastic. Thus, the Star PEG/RGD film did not negatively influence the differentiation process. The high flexibility of the system considering the incorporation of biologically active compounds opens a broad field of future experiments.

摘要

在本研究中,提出了一种用于细胞培养和组织工程的底物涂层及功能化的新方法。玻璃、硅和钛板被涂覆了反应性星形聚乙二醇预聚物(星形PEG)的超薄膜(30±5纳米)。通过光学显微镜和扫描力显微镜检查薄膜的均匀性。通过荧光显微镜和椭偏仪监测发现,这些涂层可防止非特异性蛋白质吸附。为了实现特异性细胞黏附,用不同浓度的线性RGD肽(gRGDsc)对薄膜进行修饰。灭菌后,将成纤维细胞、SaOS细胞和人间充质干细胞(hMSC)接种在这些底物上。在线性RGD肽(gRGDsc)修饰的涂层上观察到细胞黏附、铺展和存活长达30天,而在未修饰的星形PEG层上未检测到细胞黏附。通过改变薄膜中RGD的浓度,可以控制黏附细胞的数量。当使用分化条件培养hMSC时,细胞在14天后显示出成骨标记基因的表达,这与在细胞培养塑料上培养相当。因此,星形PEG/RGD薄膜不会对分化过程产生负面影响。考虑到生物活性化合物的掺入,该系统的高灵活性为未来的实验开辟了广阔的领域。

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