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首页> 外文期刊>Acta biomaterialia >Hydrophobic nanopillars initiate mesenchymal stem cell aggregation and osteo-differentiation.
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Hydrophobic nanopillars initiate mesenchymal stem cell aggregation and osteo-differentiation.

机译:疏水纳米柱引发间充质干细胞聚集和骨分化。

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摘要

Surface engineering approaches that alter the physical topography of a substrate could be used as an effective tool and as an alternative to biochemical means of directing stem cell interactions and their subsequent differentiation. In this paper we compare hydrophobic micro- vs. nanopillar type fabrication techniques for probing mesenchymal stem cell (MSC) interaction with the surface physical environment. The roles played by the topography of the nanopillar in particular influenced MSC growth and allowed for regulatory control of the stem cell fate. The nanopillar induced large 3-D cell aggregates to form on the surface which had up-regulated osteogenic specific matrix components. The ability to control MSC differentiation, using only the topographical factors, has a profound effect on both MSC biology and tissue engineering. This study aims to highlight the importance of the physical material carrier in stem cell based tissue engineering schemes.
机译:改变底物物理形貌的表面工程方法可以用作有效的工具,也可以作为指导干细胞相互作用及其随后分化的生化手段的替代方法。在本文中,我们比较了疏水微和纳米柱型制造技术,以探测间充质干细胞(MSC)与表面物理环境的相互作用。纳米柱形貌起的作用尤其影响了MSC的生长,并允许对干细胞命运的调控。纳米柱诱导大型3-D细胞聚集体形成在具有上调成骨特异性基质成分的表面上。仅使用地形因素控制MSC分化的能力对MSC生物学和组织工程都有深远的影响。这项研究旨在强调物理材料载体在基于干细胞的组织工程计划中的重要性。

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