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细胞间黏附的抑制会损害上皮细胞在微图案化表面上的定向迁移。

Inhibition of cell-cell adhesion impairs directional epithelial migration on micropatterned surfaces.

作者信息

Worley Kathryn E, Shieh David, Wan Leo Q

机构信息

Department of Biomedical Engineering, Laboratory for Tissue Engineering and Morphogenesis, 2147 Center for Biotechnology & Interdisciplinary Studies, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA.

出版信息

Integr Biol (Camb). 2015 May;7(5):580-90. doi: 10.1039/c5ib00073d. Epub 2015 Apr 29.

Abstract

The development of the vertebrate body plan with left-right (LR) asymmetry (also known as handedness and chirality) requires the emerging chiral morphogenesis of epithelial cells at specific embryonic stages. In this process, cell-cell adhesions coordinate cellular organization and collective cell migration, and are critical for the directional looping of developing embryonic organs. However, the underlying biophysical mechanism is not yet well understood. Here we modeled normal and delayed epithelial LR symmetry breaking with patterned epithelial chiral morphogenesis on microscale lines with various widths. The patterned cells exhibited biased migration wherein those on opposing boundaries migrated in different directions. Disrupting adherens junctions with ethylene glycol tetraacetic acid (EGTA) resulted in a decrease in velocity difference in opposing boundaries as well as the associated biased cell alignment, along with an increase in the overall random motion. Altering the distance between the opposing boundaries did not significantly alter alignment, but significantly disturbed the velocity profile of the cell migration field. Further examination of cell polarity indicated that disruption of adherens junctions did not affect cell polarization on the boundaries, but decreased the transmission of chiral bias into the interior region of the epithelial cell sheet. Overall, our results demonstrated the dependence of the scale of collective cell migration on the strength of cell-cell adhesion, and its effects on the chirality of a multicellular structure through mediating cell polarity in the vicinity of geometric boundaries. This study demonstrated that our 2D microscale system provides a simple yet effective tool for studying the influence of collective cell migration on LR symmetry breaking, and possibly for fetal drug screening to prevent birth defects related to alteration in cell-cell adhesion.

摘要

脊椎动物具有左右(LR)不对称性(也称为手性和螺旋性)的身体结构发育需要上皮细胞在特定胚胎阶段出现手性形态发生。在这个过程中,细胞间黏附协调细胞组织和集体细胞迁移,对发育中的胚胎器官的定向环化至关重要。然而,其潜在的生物物理机制尚未得到充分理解。在这里,我们在具有各种宽度的微尺度线上通过图案化上皮手性形态发生对正常和延迟的上皮LR对称性破缺进行建模。图案化的细胞表现出偏向性迁移,其中相对边界上的细胞向不同方向迁移。用乙二醇四乙酸(EGTA)破坏黏着连接会导致相对边界处的速度差异以及相关的偏向性细胞排列减少,同时整体随机运动增加。改变相对边界之间的距离不会显著改变排列,但会显著扰乱细胞迁移场的速度分布。对细胞极性的进一步研究表明,黏着连接的破坏不会影响边界处的细胞极化,但会减少手性偏向向上皮细胞片内部区域的传递。总体而言,我们的结果证明了集体细胞迁移的规模对细胞间黏附强度的依赖性,以及它通过在几何边界附近介导细胞极性对多细胞结构手性的影响。这项研究表明,我们的二维微尺度系统为研究集体细胞迁移对LR对称性破缺的影响提供了一个简单而有效的工具,并且可能用于胎儿药物筛选以预防与细胞间黏附改变相关的出生缺陷。

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