Adhesion and Osteoblastic Differentiation of Mouse Mesenchymal Stem Cells Overexpressing Cadherin-11 on Scaffold Surfaces

S. Dong, D. Ying, Bo Yang, Zhao Xie, Xiaojun Duan
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Abstract

The interface of scaffold and cell affects the cell adhesion and differentiation. Many investigators focus on the surface properties of biomaterials and scaffolds such as their topography, chemistry or surface energy, which very important for cell behaviors such as cell attachment, proliferation, extracellular matrix secretion, and differentiation. As the basic important element, however, the function of cell oneself should not be neglected. In this study, the adhesion and differentiation of mouse mesenchymal stem cells (MSCs) overexpressing Cadherin-11 on materials were examined. MSCs were seeded into the large porous scaffolds, acellular bone extracellular matrix scaffolds. Alkaline phosphatase activity and osteocalcin content of MSCs overexpressing Cadherin-11, as the early stage and later stage osteoblast marke respectively, were upregulated. Scanning electron microscopy and biomechanics analysis showed cells spreading and growing well in the scaffolds and the adhesive force of cell-cell increased. The results indicate that Cadherin-11 is essential up-regulator of osteoblastic differentiation of MSCs on the scaffold surfaces. Our study may provide a potential method to obtain the engineering seeded cells in the process of tissue construction.
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过表达Cadherin-11的小鼠间充质干细胞在支架表面的粘附和成骨分化
支架与细胞的界面影响细胞的粘附和分化。许多研究者关注生物材料和支架的表面特性,如其形貌、化学或表面能,这对细胞附着、增殖、细胞外基质分泌和分化等细胞行为非常重要。然而,细胞作为人体最基本的重要组成部分,其自身的功能也不容忽视。本研究研究了过表达Cadherin-11的小鼠间充质干细胞(MSCs)在材料上的粘附和分化。将MSCs植入大孔支架、脱细胞骨细胞外基质支架中。过表达Cadherin-11的MSCs分别作为早期和晚期成骨细胞市场,其碱性磷酸酶活性和骨钙素含量均上调。扫描电镜和生物力学分析表明,细胞在支架内扩散和生长良好,细胞间的黏附力增强。结果表明,Cadherin-11是支架表面间充质干细胞成骨分化的重要上调因子。本研究为在组织构建过程中获得工程种子细胞提供了一种潜在的方法。
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