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定向细胞分裂会影响拉伸状态下单层细胞的整体应激和细胞堆积几何结构。

Oriented cell division affects the global stress and cell packing geometry of a monolayer under stretch.

作者信息

Xu Guang-Kui, Liu Yang, Zheng Zhaoliang

机构信息

International Center for Applied Mechanics, State Key Laboratory for Strength and Vibration of Mechanical Structures, School of Aerospace, Xi׳an Jiaotong University, Xi׳an 710049, China.

International Center for Applied Mechanics, State Key Laboratory for Strength and Vibration of Mechanical Structures, School of Aerospace, Xi׳an Jiaotong University, Xi׳an 710049, China.

出版信息

J Biomech. 2016 Feb 8;49(3):401-7. doi: 10.1016/j.jbiomech.2015.12.046. Epub 2016 Jan 7.

Abstract

Cell division plays a vital role in tissue morphogenesis and homeostasis, and the division plane is crucial for cell fate. For isolated cells, extensive studies show that the orientation of divisions is sensitive to cell shape and the direction of extrinsic mechanical forces. However, it is poorly understood that how the cell divides within a cell monolayer and how the local stress change, due to the division, affects the global stress of epithelial monolayers. Here, we use the vertex dynamics models to investigate the effects of division orientation on the configurations and mechanics of a cell monolayer under stretch. We examine three scenarios of the divisions: dividing along the stretch axis, dividing along the geometric long axis of cells, and dividing at a random angle. It is found that the division along the long cell axis can induce the minimal energy difference, and the global stress of the monolayer after stretch releases more rapidly in this case. Moreover, the long-axis division can result in more random cell orientations and more isotropic cell shapes within the monolayer, comparing with other two cases. This study helps understand the division orientation of cells within a monolayer under mechanical stimuli, and may shed light on linking individual cell's behaviors to the global mechanics and patterns of tissues.

摘要

细胞分裂在组织形态发生和内环境稳态中起着至关重要的作用,而分裂平面对于细胞命运至关重要。对于孤立细胞,大量研究表明,分裂方向对细胞形状和外在机械力的方向敏感。然而,对于细胞在单层细胞内如何分裂以及由于分裂导致的局部应力变化如何影响上皮单层细胞的整体应力,人们了解甚少。在这里,我们使用顶点动力学模型来研究分裂方向对拉伸状态下细胞单层的构型和力学的影响。我们研究了三种分裂情况:沿拉伸轴分裂、沿细胞的几何长轴分裂以及以随机角度分裂。研究发现,沿细胞长轴分裂可诱导最小的能量差异,并且在这种情况下,拉伸后单层细胞的整体应力释放得更快。此外,与其他两种情况相比,长轴分裂可导致单层细胞内更随机的细胞取向和更各向同性的细胞形状。这项研究有助于理解机械刺激下单层细胞内的细胞分裂方向,并可能为将单个细胞的行为与组织的整体力学和模式联系起来提供线索。

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