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间充质干细胞介导的三维胶原纤维重塑需要整合素与基质的相互作用。

Three-dimensional collagen fiber remodeling by mesenchymal stem cells requires the integrin-matrix interaction.

作者信息

Chang Ching-Fang, Lee Ming-Wei, Kuo Pei-Yin, Wang Yng-Jiin, Tu Yi-Hsien, Hung Shih-Chieh

机构信息

Stem Cell Laboratory, Medical Research and Education, Veterans General Hospital-Taipei, 201, Sec. 2, Shih-Pai Road, 112 Taipei, Taiwan, Republic of China.

出版信息

J Biomed Mater Res A. 2007 Feb;80(2):466-74. doi: 10.1002/jbm.a.30963.

Abstract

Tissue engineering aiming to repair or regenerate damaged tissues necessitates fabricating three-dimensional biomaterial scaffolds with controlled porosity for delivering cells. To facilitate cell distribution, a strategy using stem cell-based fabrication of biomaterials was tested in type II collagen fibers. Human mesenchymal stem cells when delivered in type II collagen assembled and reorganized these matrices and differentiated into spherical chondrocytes with the synthesis of cartilage proteins. The cell-mediated assembly and reorganization of collagen fibers was not limitless and only restricted to an appropriate ratio of cell number and collagen amount. The blocking of alpha2 or beta1-integrin function with specific antibodies significantly impeded the collagen-assembly effects. In vitro chondrogenesis or in vivo cartilage formation of human mesenchymal stem cells was also dependent on the interactions between cells and surrounding matrices. This method for three-dimensional fabricating collagen fibers may generally be applied to other biomaterials, when combined with surface modification or ligand addition for cell adhesion.

摘要

旨在修复或再生受损组织的组织工程需要制造具有可控孔隙率的三维生物材料支架来递送细胞。为促进细胞分布,在II型胶原纤维中测试了一种基于干细胞制造生物材料的策略。当人骨髓间充质干细胞被递送至II型胶原中时,它们会组装并重组这些基质,并通过合成软骨蛋白分化为球形软骨细胞。细胞介导的胶原纤维组装和重组并非无限,仅局限于细胞数量与胶原量的适当比例。用特异性抗体阻断α2或β1整合素功能会显著阻碍胶原组装效应。人骨髓间充质干细胞的体外软骨形成或体内软骨形成也依赖于细胞与周围基质之间的相互作用。这种三维制造胶原纤维的方法,当与用于细胞黏附的表面修饰或配体添加相结合时,通常可应用于其他生物材料。

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