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Size-dependent patterns of cell proliferation and migration in freely-expanding epithelia

机译:在自由膨胀上皮内的细胞增殖和迁移的大小依赖性模式

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摘要

The coordination of cell proliferation and migration in growing tissues is crucial in development and regeneration but remains poorly understood. Here, we find that, while expanding with an edge speed independent of initial conditions, millimeter-scale epithelial monolayers exhibit internal patterns of proliferation and migration that depend not on the current but on the initial tissue size, indicating memory effects. Specifically, the core of large tissues becomes very dense, almost quiescent, and ceases cell-cycle progression. In contrast, initially-smaller tissues develop a local minimum of cell density and a tissue-spanning vortex. To explain vortex formation, we propose an active polar fluid model with a feedback between cell polarization and tissue flow. Taken together, our findings suggest that expanding epithelia decouple their internal and edge regions, which enables robust expansion dynamics despite the presence of size- and history-dependent patterns in the tissue interior.
机译:在生长组织中的细胞增殖和迁移的协调对于开发和再生至关重要,但仍然明白很差。在这里,我们发现,在以独立于初始条件的边缘速度扩展的同时,毫米刻度上皮单层表现出扩散和迁移的内部图案,这不取决于当前的初始组织大小,表明记忆效应。具体地,大组织的核心变得非常致密,几乎静止,并停止缓慢的细胞周期进展。相反,初始较小的组织产生局部最小细胞密度和组织跨越涡流。为了解释涡旋形成,我们提出了一种活性极性流体模型,具有细胞偏振和组织流程之间的反馈。我们的研究结果表明,尽管存在组织内部中的尺寸和历史依赖性图案,但扩展上皮内的膨胀性膨胀动态消除了鲁棒扩张动态。

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