论文标题

通过微观数据的定量分析,非侵入性测量核相对刚度

Non-invasive measurement of nuclear relative stiffness from quantitative analysis of microscopy data

论文作者

Villa, Stefano, Palamidessi, Andrea, Frittoli, Emanuela, Scita, Giorgio, Cerbino, Roberto, Giavazzi, Fabio

论文摘要

细胞组织的性质与单个成分细胞的性质之间的联系尚待阐明。在纯机械水平上,不同细胞成分(例如细胞核和细胞质)的刚性程度可调节细胞内部过程与外部环境之间的相互作用,同时介导相邻细胞之间的机械相互作用。能够量化单细胞和组织特性之间的相关性将改善我们对细胞组织的机械生物学理解。在这里,我们开发了一种方法来定量提取一组结构和运动参数,从分析属于堵塞和植入细胞单层的核的延时电影。然后,我们详细研究组织的动力状态与核的变形之间的相关性。我们观察到核变形速率与速度场的局部差异线性相关,这导致了对细胞质之一的核模量的非侵入性估计值。我们还发现,经过较大的机械扰动,属于羊群单层的细胞核比属于动态停滞的单层的核约两倍,与原子力显微镜结果一致。我们的结果表明,单层中细胞的核相对刚度的确定是非侵入性的。

The connection between the properties of cell tissue and those of the single constituent cells remains to be elucidated. At the purely mechanical level, the degree of rigidity of different cellular components, such as the nucleus and the cytoplasm, modulates the interplay between the cell inner processes and the external environment, while simultaneously mediating the mechanical interactions between neighboring cells. Being able to quantify the correlation between single-cell and tissue properties would improve our mechanobiological understanding of cell tissues. Here we develop a methodology to quantitatively extract a set of structural and motility parameters from the analysis of time-lapse movies of nuclei belonging to jammed and flocking cell monolayers. We then study in detail the correlation between the dynamical state of the tissue and the deformation of the nuclei. We observe that the nuclear deformation rate linearly correlates with the local divergence of the velocity field, which leads to a non-invasive estimate of the elastic modulus of the nucleus relative to the one of the cytoplasm. We also find that nuclei belonging to flocking monolayers, subjected to larger mechanical perturbations, are about two times stiffer than nuclei belonging to dynamically arrested monolayers, in agreement with atomic force microscopy results. Our results demonstrate a non-invasive route to the determination of nuclear relative stiffness for cells in a monolayer.

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