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Precisely delivered nanomechanical forces induce blebbing in undifferentiated mouse embryonic stem cells

机译:精确传递的纳米机械力在未分化的小鼠胚胎干细胞中诱导起泡

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Abstract: The aim of this study was to probe the morphological response of single mouse embryonic stem cells (mESC) to precisely delivered nanomechanical forces. Plating mESC as single cells gave rise to either round compact or flattened fibroblastic morphologies. The expression of OCT4 and Nanog was reduced in flattened cells, indicating that this population had begun to differentiate. Upon application of >5 nN of force, using atomic force microscopy and simultaneous laser scanning confocal microscopy, round cells, but not flattened cells, were capable of forming mechanically induced blebs (miBlebs). Flattened cells appeared to have a more highly developed cytoskeleton than undifferentiated stem cells as characterized by the distribution of phospho-ezrin-radixin-moesin (pERM). Higher levels of pERM and an inability to form miBlebs in flattened cells imply that the earliest stages of embryonic stem cell differentiation are associated with the development of stronger mechanical links between the plasma membrane and the cytoskeleton.
机译:摘要:本研究的目的是探讨单个小鼠胚胎干细胞(mESC)对精确传递的纳米机械力的形态反应。将mESC电镀为单细胞会产生圆形致密或扁平的成纤维细胞形态。在扁平化的细胞中,OCT4和Nanog的表达降低,表明该群体已开始分化。在施加大于5 nN的力后,使用原子力显微镜和同时进行激光扫描共聚焦显微镜,圆形细胞而非扁平细胞能​​够形成机械诱导的气泡(miBleb)。扁平化的细胞似乎比未分化的干细胞具有更高的细胞骨架,其特征在于磷酸化-ezrin-radixin-moesin(pERM)的分布。较高水平的pERM以及无法在扁平化细胞中形成miBleb的现象暗示着胚胎干细胞分化的最早阶段与质膜和细胞骨架之间更牢固的机械连接发展有关。

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