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Cellular volume regulation and substrate stiffness modulate the detachment dynamics of adherent cells

机译:细胞体积调节和底物硬度调节贴壁细胞的分离动力学

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Quantitative characterizations of cell detachment are vital for understanding the fundamental mechanisms of cell adhesion. Experiments have found that cell detachment shows strong rate dependence, which is mostly attributed to the binding-unbinding kinetics of receptor-ligand bond. However, our recent study showed that the cellular volume regulation can significantly regulate the dynamics of adherent cell and cell detachment. How this cellular volume regulation contributes to the rate dependence of cell detachment remains elusive. Here, we systematically study the role of cellular volume regulation in the rate dependence of cell detachment by investigating the cell detachments of nonspecific adhesion and specific adhesion. We find that the cellular volume regulation and the bond kinetics dominate the rate dependence of cell detachment at different time scales. We further test the validity of the traditional Johnson–Kendall–Roberts (JKR) contact model and the detachment model developed by Wyart and Gennes et al (W–G model). When the cell volume is changeable, the JKR model is not appropriate for both the detachments of convex cells and concave cells. The W–G model is valid for the detachment of convex cells but is no longer applicable for the detachment of concave cells. Finally, we show that the rupture force of adherent cells is also highly sensitive to substrate stiffness, since an increase in substrate stiffness will lead to more associated bonds. These findings can provide insight into the critical role of cell volume in cell detachment and might have profound implications for other adhesion-related physiological processes.
机译:细胞脱离的定量表征对于理解细胞粘附的基本机制至关重要。实验发现,细胞脱离表现出强烈的速率依赖性,这主要归因于受体-配体键的结合-脱结合动力学。然而,我们最近的研究表明,细胞体积调节可以显着调节粘附细胞和细胞脱离的动力学。这种细胞体积调节如何促进细胞脱离的速率依赖性仍然不清楚。在这里,我们通过研究非特异性粘附和特异性粘附的细胞脱离,系统地研究细胞体积调节在细胞脱离速率依赖性中的作用。我们发现,细胞体积调节和键动力学在不同时间尺度上主导着细胞脱离的速率依赖性。我们进一步测试了传统的Johnson-Kendall-Roberts(JKR)接触模型以及Wyart和Gennes等人开发的分离模型(WG模型)的有效性。当晶胞体积可变时,JKR模型不适用于凸胞和凹胞的分离。 W–G模型对于凸细胞的分离有效,但不再适用于凹细胞的分离。最后,我们表明贴壁细胞的破裂力对底物刚度也高度敏感,因为底物刚度的增加将导致更多的缔合键。这些发现可以深入了解细胞体积在细胞脱离中的关键作用,并且可能对其他与粘附相关的生理过程具有深远的影响。

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