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Designing nanotopographical density of extracellular matrix for controlled morphology and function of human mesenchymal stem cells

机译:设计细胞外基质的纳米形貌密度以控制人间充质干细胞的形态和功能

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摘要

Inspired by ultrastructural analysis of ex vivo human tissues as well as the physiological importance of structural density, we fabricated nanogrooves with 1:1, 1:3, and 1:5 spacing ratio (width:spacing, width = 550?nm). In response to the nanotopographical density, the adhesion, migration, and differentiation of human mesenchymal stem cells (hMSCs) were sensitively controlled, but the proliferation showed no significant difference. In particular, the osteo- or neurogenesis of hMSCs were enhanced at the 1:3 spacing ratio rather than 1:1 or 1:5 spacing ratio, implying an existence of potentially optimized nanotopographical density for stem cell function. Furthermore, such cellular behaviors were positively correlated with several cell morphological indexes as well as the expression of integrin β1 or N-cadherin. Our findings propose that nanotopographical density may be a key parameter for the design and manipulation of functional scaffolds for stem cell-based tissue engineering and regenerative medicine.
机译:受离体人体组织的超微结构分析以及结构密度的生理重要性的启发,我们制造了具有1:1、1:3和1:5间距比(宽度:间距,宽度= 550?nm)的纳米沟槽。响应于纳米地形图密度,人类间充质干细胞(hMSCs)的粘附,迁移和分化受到敏感控制,但增殖没有显着差异。特别是,hMSC的骨生成或神经生成以1:3的间距比而不是1:1或1:5的间距比得到增强,这意味着存在潜在优化的干细胞功能纳米形貌密度。此外,这种细胞行为与多种细胞形态学指标以及整联蛋白β1或N-钙粘蛋白的表达呈正相关。我们的发现表明,纳米形貌的密度可能是用于基于干细胞的组织工程和再生医学的功能支架的设计和操作的关键参数。

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