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Nanotopographical Control of Stem Cell Differentiation

机译:干细胞分化的纳米形貌控制

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摘要

Stem cells have the capacity to differentiate into various lineages, and the ability to reliably direct stem cell fate determination would have tremendous potential for basic research and clinical therapy. Nanotopography provides a useful tool for guiding differentiation, as the features are more durable than surface chemistry and can be modified in size and shape to suit the desired application. In this paper, nanotopography is examined as a means to guide differentiation, and its application is described in the context of different subsets of stem cells, with a particular focus on skeletal (mesenchymal) stem cells. To address the mechanistic basis underlying the topographical effects on stem cells, the likely contributions of indirect (biochemical signal-mediated) and direct (force-mediated) mechanotransduction are discussed. Data from proteomic research is also outlined in relation to topography-mediated fate determination, as this approach provides insight into the global molecular changes at the level of the functional effectors.
机译:干细胞具有分化成各种谱系的能力,而可靠地指导干细胞命运确定的能力将对基础研究和临床治疗具有巨大的潜力。纳米形貌提供了一种指导分化的有用工具,因为这些特征比表面化学方法更耐用,并且可以更改大小和形状以适合所需的应用。在本文中,将纳米形貌作为引导分化的一种手段进行了研究,并在干细胞的不同亚群的背景下描述了纳米形貌的应用,其中特别着重于骨骼(间质)干细胞。为了解决对干细胞的地形影响的机理基础,讨论了间接(生化信号介导)和直接(力介导)机械转导的可能贡献。蛋白质组学研究的数据也与地形学介导的命运确定有关,因为这种方法可以洞察功能效应子水平上的整体分子变化。

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