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Matrix Elasticity Directs Stem Cell Fates - How Deeply Can Cells Feel?

机译:基质弹性指导干细胞的命运-细胞能感觉到多深?

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Cells make a number of key decisions by actively applying forces to the objects that they 'touch'. Naive mesen chymal stem cells (MSCs) from human bone marrow will be shown to specify lineage and commit to phenotypes with ex treme sensitivity to tissue level elasticity. Soft matrices that mimic brain appear neurogenic, stiffer matrices that mimic muscle are myogenic, and comparatively rigid matrices that mimic collagenous bone prove osteogenic. Inhibition of the motor protein myosin blocks all elasticity directed lineage specification. While the results have significant implications for understanding physical effects of the in vivo microenvi ronment around cells and also for use of materials in biological studies and therapeutic applications of stem cells, they raise additional questions such as how far cells can feel. This ques tion is addressed with MSCs and a series of gels of controlled thickness, with the results showing that cells probe microns into matrix.
机译:单元格通过向其“触摸”的对象主动施加力量来做出许多关键决策。来自人类骨髓的幼稚间充质造血干细胞(MSCs)将显示出特定的谱系,并具有对组织水平弹性极度敏感的表型。模仿大脑的软性矩阵具有神经源性,模仿肌肉的较硬的矩阵具有肌源性,而模仿胶原质骨的相对刚性的矩阵则具有成骨性。抑制运动蛋白肌球蛋白会阻断所有针对弹性的谱系规范。虽然这些结果对于理解细胞周围的体内微环境的物理作用以及在生物学研究和干细胞的治疗应用中使用材料具有重大意义,但它们提出了其他问题,例如细胞的感觉。 MSC和一系列厚度受控的凝胶解决了这一问题,结果表明细胞可以将微米级探针探查到基质中。

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