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在原代角膜细胞群体迁移中,跟随细胞异质基底黏附性对先导细胞速度和张力分布的影响。

Effect of heterogeneous substrate adhesivity of follower cells on speed and tension profile of leader cells in primary keratocyte collective cell migration.

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, Nadia 741246, India.

Department of Physical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, Nadia 741246, India.

出版信息

Biol Open. 2022 Mar 15;11(3). doi: 10.1242/bio.058893. Epub 2022 Mar 8.

Abstract

In single keratocyte motility, membrane tension is reported to be high at cell-fronts and believed to establish front coherence. To understand role of membrane mechanics in collective cell migration, we study membrane height fluctuations in cell sheets from fish scales using interference reflection microscopy (IRM). We report the monolayer to have cells lacking substrate adhesion and show that such 'non-sticky' cells can form bridges between leader cells and far-away follower cells. Do such interactions alter motility and membrane mechanics in such leaders? We find non-significant, but reduced speed for leaders with 'non-sticky' followers in comparison to other leaders. Cells show high phenotypic variability in their membrane fluctuation tension profiles. On average, this tension is found to be lower at cell fronts than the mid-section. However, leaders with non-sticky followers are more prone to display higher tension at their front and have a negative correlation between cell speed and front-mid tension difference. Thus, we conclude that intracellular tension gradients are heterogeneous in cell sheets and substrate adhesivity of followers can control the coupling of the gradient to cell speed.

摘要

在单个角膜细胞运动中,据报道细胞膜张力在细胞前缘较高,并被认为可建立前缘连贯性。为了理解细胞膜力学在细胞集体迁移中的作用,我们使用干涉反射显微镜(IRM)研究了来自鱼鳞片的细胞层中的膜高度波动。我们报告说,单层细胞缺乏与基底的黏附,并表明这种“非粘性”细胞可以在先导细胞和远处的跟随细胞之间形成桥。这种相互作用会改变先导细胞的运动和细胞膜力学吗?我们发现,与其他先导细胞相比,带有“非粘性”跟随细胞的先导细胞速度没有显著变化,但有所降低。细胞在其膜波动张力分布上表现出高度的表型可变性。平均而言,这种张力在前部比中部低。然而,带有非粘性跟随细胞的先导细胞更倾向于在前部显示更高的张力,并且细胞速度与前缘-中部张力差之间存在负相关。因此,我们得出结论,细胞层中的细胞内张力梯度是不均匀的,并且跟随细胞的基底黏附性可以控制梯度与细胞速度的耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/974d/8918985/c41ad061caca/biolopen-11-058893-g1.jpg

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