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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Autocrine inhibition of cell motility can drive epithelial branching morphogenesis in the absence of growth
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Autocrine inhibition of cell motility can drive epithelial branching morphogenesis in the absence of growth

机译:细胞挥发性的自分泌抑制可以在没有生长的情况下促进上皮分支形态发生

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摘要

Epithelial branching morphogenesis drives the development of organs such as the lung, salivary gland, kidney and the mammary gland. It involves cell proliferation, cell differentiation and cell migration. An elaborate network of chemical and mechanical signals between the epithelium and the surrounding mesenchymal tissues regulates the formation and growth of branching organs. Surprisingly, when cultured in isolation from mesenchymal tissues, many epithelial tissues retain the ability to exhibit branching morphogenesis even in the absence of proliferation. In this work, we propose a simple, experimentally plausible mechanism that can drive branching morphogenesis in the absence of proliferation and cross-talk with the surrounding mesenchymal tissue. The assumptions of our mathematical model derive fromin vitroobservations of the behaviour of mammary epithelial cells. These data show that autocrine secretion of the growth factor TGF beta 1 inhibits the formation of cell protrusions, leading to curvature-dependent inhibition of sprouting. Our hybrid cellular Potts and partial-differential equation model correctly reproduces the experimentally observed tissue-geometry-dependent determination of the sites of branching, and it suffices for the formation of self-avoiding branching structures in the absence and also in the presence of cell proliferation. This article is part of the theme issue 'Multi-scale analysis and modelling of collective migration in biological systems'.
机译:上皮分枝形态发生驱动肺,唾液腺,肾和乳腺等器官的发育。它涉及细胞增殖,细胞分化和细胞迁移。上皮和周围间充质组织之间的化学和机械信号的精细网络调节分支器官的形成和生长。令人惊讶的是,当以间充质组织分离培养时,许多上皮组织即使在没有增殖的情况下也要能够表现出分支形态发生的能力。在这项工作中,我们提出了一种简单,实验似合理的机制,可以在没有增殖和与周围的间充质组织的情况下促进支化的形态发生。我们的数学模型的假设来自乳房上皮细胞的行为的vitroObseration。这些数据表明,生长因子TGFβ1的自分泌分泌抑制细胞突起的形成,导致曲率依赖性抑制萌芽。我们的杂交蜂窝Potts和部分微分方程模型正确地再现了实验观察到的组织 - 几何形状依赖性测定的分支部位,并且它足以形成在缺失中的自避免分支结构,并且在细胞增殖存在下。本文是主题问题“生物系统中集体迁移的多规模分析和建模”的一部分。

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