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Cell chirality: emergence of asymmetry from cell culture

机译:细胞手性:细胞培养中不对称现象的出现

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摘要

Increasing evidence suggests that intrinsic cell chirality significantly contributes to the left-right (LR) asymmetry in embryonic development, which is a well-conserved characteristic of living organisms. With animal embryos, several theories have been established, but there are still controversies regarding mechanisms associated with embryonic LR symmetry breaking and the formation of asymmetric internal organs. Recently, in vitro systems have been developed to determine cell chirality and to recapitulate multicellular chiral morphogenesis on a chip. These studies demonstrate that chirality is indeed a universal property of the cell that can be observed with well-controlled experiments such as micropatterning. In this paper, we discuss the possible benefits of these in vitro systems to research in LR asymmetry, categorize available platforms for single-cell chirality and multicellular chiral morphogenesis, and review mathematical models used for in vitro cell chirality and its applications in in vivo embryonic development. These recent developments enable the interrogation of the intracellular machinery in LR axis establishment and accelerate research in birth defects in laterality.
机译:越来越多的证据表明,固有的细胞手性在胚胎发育中显着地导致左右(LR)不对称,这是活生物体的一个良好保存的特征。关于动物胚胎,已经建立了几种理论,但是关于与胚胎LR对称性破坏和不对称内部器官的形成有关的机制仍存在争议。近来,已经开发了用于确定细胞手性并在芯片上概括多细胞手性形态发生的体外系统。这些研究表明,手性确实是细胞的普遍特性,可以通过控制良好的实验(例如微图案)观察到。在本文中,我们讨论了这些体外系统在LR不对称性研究中可能带来的好处,对单细胞手性和多细胞手性形态发生的可用平台进行分类,并回顾了用于体外细胞手性及其在体内胚胎中的应用的数学模型。发展。这些最新的进展使得能够在LR轴建立过程中对细胞内机械进行询问,并加速了对侧身先天缺陷的研究。

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