Saez Pablo, Shirke Pallavi U, Seth Jyoti R, Alegre-Cebollada Jorge, Majumder Abhijit
LaCàN, Universitat Politècnica de Catalunya-BarcelonaTech, 08034 Barcelona, Spain; Institute of Mathematics of UPC-BarcelonaTech.-IMTech, Barcelona, Spain.
Department of Chemical Engineering, Indian Institute of Technology Bombay (IITB), 400076 Mumbai, India.
Math Biosci. 2025 Feb;380:109362. doi: 10.1016/j.mbs.2024.109362. Epub 2024 Dec 17.
Cell migration regulates central life processes including embryonic development, tissue regeneration, and tumor invasion. To establish the direction of migration, cells follow exogenous cues. Durotaxis, the directed cell migration towards elastic stiffness gradients, is the classical example of mechanical taxis. However, whether gradients of the relaxation properties in the extracellular matrix may also induce tactic responses (viscotaxis) is not well understood. Moreover, whether and how durotaxis and viscotaxis interact with each other has never been investigated. Here, we integrate clutch models for cell adhesions with an active gel theory of cell migration to reveal the mechanisms that govern viscotaxis. We show that viscotaxis is enabled by an asymmetric expression of cell adhesions that further polarize the intracellular motility forces to establish the cell front, similar to durotaxis. More importantly, when both relaxation and elastic gradients coexist, durotaxis appears more efficient in controlling directed cell migration, which we confirm with experimental results. However, the presence of opposing relaxation gradients to an elastic one can arrest or shift the migration direction. Our model rationalizes for the first time the mechanisms that govern viscotaxis and its competition with durotaxis through a mathematical model.
细胞迁移调节着包括胚胎发育、组织再生和肿瘤侵袭在内的核心生命过程。为了确定迁移方向,细胞会遵循外部线索。趋硬性,即细胞朝着弹性刚度梯度的定向迁移,是机械趋化性的经典例子。然而,细胞外基质中松弛特性的梯度是否也能诱导趋化反应(黏弹性趋化),目前还不太清楚。此外,趋硬性和黏弹性趋化是否相互作用以及如何相互作用,从未被研究过。在这里,我们将细胞黏附的离合器模型与细胞迁移的活性凝胶理论相结合,以揭示控制黏弹性趋化的机制。我们表明,黏弹性趋化是由细胞黏附的不对称表达实现的,这种不对称表达进一步使细胞内运动力极化,从而建立细胞前端,这与趋硬性类似。更重要的是,当松弛梯度和弹性梯度同时存在时,趋硬性在控制细胞定向迁移方面似乎更有效,我们通过实验结果证实了这一点。然而,与弹性梯度相反的松弛梯度的存在会阻止或改变迁移方向。我们的模型首次通过数学模型阐明了控制黏弹性趋化的机制及其与趋硬性的竞争关系。