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Deconstructing the Effects of Matrix Elasticity and Geometry in Mesenchymal Stem Cell Lineage Commitment

机译:解构基质弹性和几何形状对间充质干细胞谱系承诺的影响

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摘要

A wide variety of environmental factors including physical and biochemical signals are responsible for stem cell behavior and function. In particular, matrix elasticity and cell shape have been shown to determine stem cell function, yet little is known about the interplay between how these physical cues control cell differentiation. For the first time, by using ultraviolet (UV) lithography to pattern poly(ethylene) glycol (PEG) hydrogels we are able to manufacture microenvironments capable of parsing the effects of matrix elasticity, cell shape, and cell size in order to explore the relationship between matrix elasticity and cell shape in mesenchymal stem cell (MSC) lineage commitment. Our data shows that cells cultured on 1,000 μm2 circles, squares, and rectangles were primarily adipogenic lineage regardless of matrix elasticity, while cells cultured on 2,500 and 5,000 μm2 shapes more heavily depended on shape and elasticity for lineage specification. We further went on to characterize how modifying the cell cytoskeleton through pharmacological inhibitors can modify cell behavior. By showing MSC lineage commitment relationships due to physical signals, this study highlights the importance of cell shape and matrix elasticity in further understanding stem cell behavior for future tissue engineering strategies.
机译:干细胞的行为和功能与多种环境因素有关,包括物理和生化信号。特别是,已经显示出基质弹性和细胞形状决定了干细胞的功能,但关于这些物理提示如何控制细胞分化之间的相互作用还知之甚少。第一次,通过使用紫外线(UV)光刻技术对聚(乙二醇)(PEG)水凝胶进行图案化,我们能够制造出能够解析基质弹性,细胞形状和细胞大小的微环境,从而探索它们之间的关系。间充质干细胞(MSC)沿袭承诺的基质弹性和细胞形状之间的关系。我们的数据显示,无论基质弹性如何,在1,000μm 2 圆形,正方形和矩形上培养的细胞都是成脂谱系,而在2,500和5,000μm 2 上培养的细胞形状更多。血统规格很大程度上取决于形状和弹性。我们进一步研究了通过药理抑制剂修饰细胞骨架如何改变细胞行为的特征。通过显示由于物理信号引起的MSC谱系承诺关系,本研究强调了细胞形状和基质弹性在进一步了解干细胞行为对于未来组织工程策略中的重要性。

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