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Lineage-Specific Chiral Biases of Human Embryonic Stem Cells during Differentiation

机译:分化期间人胚胎干细胞的谱系特异性手性偏见

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摘要

Left-right symmetry breaking is a complex developmental process and an important part of embryonic axis development. As of yet, the biophysical mechanism behind LR asymmetry establishment remains elusive for the overall asymmetry of embryos as well as for the organ-specific asymmetry. Here, we demonstrate that inherent cellular chirality is observable in the cells of early embryonic stages using a 3D Matrigel bilayer system. Differentiation of human embryonic stem cells to three lineages corresponding to heart, intestine, and neural tissues demonstrates phenotype-specific inherent chiral biases, complementing the current knowledge regarding organ development. The existence of inherent cellular chirality early in development and its correlation with organ asymmetry implicate cell chirality as a possible regulator in LR symmetry breaking.
机译:左右对称性破裂是复杂的发展过程和胚胎轴发育的重要组成部分。 据目,LR不对称建立背后的生物物理机制仍然难以实现胚胎的总不对称性以及器官特异性的不对称性。 这里,我们证明使用3D基质胶双层系统在早期胚胎阶段的细胞中可观察到固有的细胞手性。 人胚胎干细胞的分化为对应于心脏,肠和神经组织对应的三个谱系,证明了表型特异性固有的手性偏差,补充了关于器官发展的目前的知识。 早期发展中固有细胞患者的存在及其与器官不对称的相关性牵引细胞手性作为LR对称性突破中可能的调节剂。

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