Mechanobiology Institute, National University Singapore, queenstown, 100190, Singapore.
Laboratoire Physico Chimie Curie, Institut Curie, Paris Science et Lettres Research University, CNRS UMR168, Paris, 75005, France.
Biomech Model Mechanobiol. 2022 Oct;21(5):1511-1530. doi: 10.1007/s10237-022-01603-3. Epub 2022 Sep 3.
Tissue layers can generally slide at the interface, accompanied by the dissipation due to friction. Nevertheless, it remains elusive how force could propagate in a tissue with such interfacial friction. Here, we elaborate the force dynamics in a prototypical multilayer system in which an epithelial monolayer was cultivated upon an elastic substrate in contact with a hard surface, and discover a novel mechanism of pronounced force propagation over a long distance due to interfacial dynamics between substrate layers. We derived an analytical model for the dynamics of the elastic substrate under the shear stress provided by the cell layer at the surface boundary and the friction at bottom. The model reveals that sliding between substrate layers leads to an expanding stretch regime from a shear regime of substrate deformation in time and space. The regime boundary propagating diffusively with a speed depending on the stiffness, thickness, and slipperiness of the substrate, is a robust nature of a deformed elastic sheet with interfacial friction. These results shed new light on force propagation in tissues and our model could serve as a basis for studies of such propagation in a more complex tissue environment.
组织层通常可以在界面处滑动,同时伴随着由于摩擦而产生的耗散。然而,在具有这种界面摩擦的组织中,力如何传播仍然难以捉摸。在这里,我们详细阐述了在一个典型的多层系统中的力动力学,其中上皮单层在弹性基底上培养,基底与硬表面接触,并且由于基底层之间的界面动力学,发现了一种在长距离上显著传播力的新机制。我们推导了一个弹性基底在表面边界处的细胞层提供的剪切应力和底部的摩擦力作用下的动力学的分析模型。该模型表明,基底层之间的滑动导致了一个扩展的拉伸区,从基底变形的剪切区在时间和空间上展开。以取决于基底的刚度、厚度和滑度的速度扩散的区界是具有界面摩擦的变形弹性片的一种稳健性质。这些结果为组织中的力传播提供了新的认识,我们的模型可以作为更复杂的组织环境中这种传播研究的基础。