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底物诱导纤连蛋白形成网络:表面化学的影响及其对成骨细胞黏附的作用。

Substrate-induced assembly of fibronectin into networks: influence of surface chemistry and effect on osteoblast adhesion.

机构信息

Center for Biomaterials and Tissue Engineering, Universidad Politécnica de Valencia, Valencia, Spain.

出版信息

Tissue Eng Part A. 2009 Nov;15(11):3271-81. doi: 10.1089/ten.TEA.2009.0141.

Abstract

The influence of surface chemistry-substrates with controlled surface density of -OH groups-on fibronectin (FN) conformation and distribution is directly observed by atomic force microscopy (AFM). FN fibrillogenesis, which is known to be a process triggered by interaction with integrins, is shown in our case to be induced by the substrate (in absence of cells), which is able to enhance FN-FN interactions leading to the formation of a protein network on the material surface. This phenomenon depends both on surface chemistry and protein concentration. The level of the FN fibrillogenesis was quantified by calculating the fractal dimension of the adsorbed protein from image analysis of the AFM results. The total amount of adsorbed FN is obtained by making use of a methodology that employs Western blotting combined with image analysis of the corresponding protein bands, with the lowest sensitivity threshold equal to 15 ng of adsorbed protein. Further, FN adsorption is correlated to human osteoblast adhesion through morphology and actin cytoskeleton formation. Actin polymerization is in need of the formation of the protein network on the substrate's surface. Cell morphology is more rounded (as quantified by calculating the circularity of the cells by image analysis) when the degree of FN fibrillogenesis on the substrate is lower.

摘要

通过原子力显微镜(AFM)直接观察到表面化学-具有受控-OH 基团表面密度的基底-对纤连蛋白(FN)构象和分布的影响。众所周知,FN 的原纤维形成是由与整合素相互作用触发的过程,在我们的情况下,它是由能够增强 FN-FN 相互作用从而在材料表面形成蛋白质网络的基底(在没有细胞的情况下)诱导的。这种现象既取决于表面化学又取决于蛋白质浓度。通过从 AFM 结果的图像分析计算吸附蛋白质的分形维数来定量 FN 原纤维形成的程度。通过利用一种结合 Western blot 并对相应蛋白质条带进行图像分析的方法来获得吸附 FN 的总量,其最低灵敏度阈值等于 15ng 吸附的蛋白质。此外,FN 的吸附与通过形态和肌动蛋白细胞骨架形成的人成骨细胞粘附相关。肌动蛋白聚合需要在基底表面形成蛋白质网络。当基底上 FN 原纤维形成程度较低时,细胞形态更圆(通过图像分析计算细胞的圆度来定量)。

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