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Active Fingering Instability in Tissue Spreading

机译:组织传播中的主动指法不稳定性

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摘要

During the spreading of epithelial tissues, the advancing tissue front often develops fingerlike protrusions. Their resemblance to traditional viscous fingering patterns in driven fluids suggests that epithelial fingers could arise from an interfacial instability. However, the existence and physical mechanism of such a putative instability remain unclear. Here, based on an active polar fluid model for epithelial spreading, we analytically predict a generic instability of the tissue front. On the one hand, active cellular traction forces impose a velocity gradient that leads to an accelerated front, which is, thus, unstable to long wavelength perturbations. On the other hand, contractile intercellular stresses typically dominate over surface tension in stabilizing short-wavelength perturbations. Finally, the finite range of hydrodynamic interactions in the tissue selects a wavelength for the fingering pattern, which is, thus, given by the smallest between the tissue size and the hydrodynamic screening length. Overall, we show that spreading epithelia experience an active fingering instability based on a simple kinematic mechanism. Moreover, our results underscore the crucial role of long-range hydrodynamic interactions in the dynamics of tissue morphology.
机译:在上皮组织扩散期间,行进的组织前部经常形成手指状的突起。它们与驱动流体中的传统粘性指法相似,表明上皮手指可能来自界面不稳定。但是,这种假定的不稳定性的存在和物理机制仍不清楚。在这里,基于上皮扩散的活跃极性流体模型,我们分析性地预测了组织前沿的一般性不稳定性。一方面,主动的细胞牵引力施加了一个速度梯度,该速度梯度导致了加速的前沿,因此对于长波长扰动是不稳定的。另一方面,可收缩的细胞间应力通常在稳定短波长扰动方面胜过表面张力。最后,组织中流体动力相互作用的有限范围选择了指状图样的波长,因此,该波长由组织尺寸和流体动力筛选长度之间的最小值给出。总的来说,我们显示,基于简单的运动学机制,上皮扩散会经历主动指法不稳定。此外,我们的结果强调了远程水动力相互作用在组织形态动力学中的关键作用。

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  • 来源
    《Physical review letters》 |2019年第8期|088104.1-088104.7|共7页
  • 作者单位

    Univ Barcelona Dept Fis Mat Condensada Avinguda Diagonal 647 E-08028 Barcelona Spain|Univ Barcelona Inst Complex Syst E-08028 Barcelona Spain;

    PSL Res Univ CNRS Lab Phys Chim Curie Inst Curie 26 Rue Ulm F-75005 Paris France|Univ Geneva Fac Sci Dept Biochem 30 Quai Ernest Ansermet CH-1205 Geneva Switzerland;

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