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Relationship between nanotopographical alignment and stem cell fate with live imaging and shape analysis

机译:实时成像和形状分析的纳米形貌比对与干细胞命运之间的关系

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摘要

The topography of a biomaterial regulates cellular interactions and determine stem cell fate. A complete understanding of how topographical properties affect cell behavior will allow the rational design of material surfaces that elicit specified biological functions once placed in the body. To this end, we fabricate substrates with aligned or randomly organized fibrous nanostructured topographies. Culturing adipose-derived stem cells (ASCs), we explore the dynamic relationship between the alignment of topography, cell shape and cell differentiation to osteogenic and myogenic lineages. We show aligned topographies differentiate cells towards a satellite cell muscle progenitor state - a distinct cell myogenic lineage responsible for postnatal growth and repair of muscle. We analyze cell shape between the different topographies, using fluorescent time-lapse imaging over 21 days. In contrast to previous work, this allows the direct measurement of cell shape at a given time rather than defining the morphology of the underlying topography and neglecting cell shape. We report quantitative metrics of the time-based morphological behaviors of cell shape in response to differing topographies. This analysis offers insights into the relationship between topography, cell shape and cell differentiation. Cells differentiating towards a myogenic fate on aligned topographies adopt a characteristic elongated shape as well as the alignment of cells.
机译:生物材料的地形可调节细胞相互作用并决定干细胞的命运。完全了解地形特性如何影响细胞行为将使材料表面的合理设计成为可能,一旦放置在体内,该材料表面便会引发特定的生物学功能。为此,我们制造具有对齐或随机组织的纤维纳米结构形貌的基底。培养脂肪来源的干细胞(ASC),我们探讨了成骨和成肌谱系的拓扑结构,细胞形状和细胞分化之间的动态关系。我们显示对齐的地形将细胞分化为卫星细胞肌肉祖细胞状态-负责产后生长和肌肉修复的独特细胞成肌谱系。我们使用21天的荧光延时成像技术分析了不同地形之间的细胞形状。与以前的工作相比,这允许在给定时间直接测量单元格形状,而不是定义基础形貌的形态并忽略单元格形状。我们报告了基于时间的不同形状的细胞形状的形态行为的定量指标。该分析提供了有关地形,细胞形状和细胞分化之间关系的见解。在对齐的地形图上向成肌命运分化的细胞采用特征性的细长形状以及细胞的对齐方式。

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