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Growth homeostatic regulation and stem cell dynamics in tissues

机译:组织中的生长体内稳态调节和干细胞动力学

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摘要

The regulation of cell growth in animal tissues is a question of critical importance: most tissues contain different types of cells in interconversion and the fraction of each type has to be controlled in a precise way, by mechanisms that remain unclear. Here, we provide a theoretical framework for the homeostasis of stem-cell-containing epithelial tissues using mechanical equations, which describe the size of the tissue and kinetic equations, which describe the interconversions of the cell populations. We show that several features, such as the evolution of stem cell fractions during intestinal development, the shape of a developing intestinal wall, as well as the increase in the proliferative compartment in cancer initiation, can be studied and understood from generic modelling which does not rely on a particular regulatory mechanism. Finally, inspired by recent experiments, we propose a model where cell division rates are regulated by the mechanical stresses in the epithelial sheet. We show that pressure-controlled growth can, in addition to the previous features, also explain with few parameters the formation of stem cell compartments as well as the morphologies observed when a colonic crypt becomes cancerous. We also discuss optimal strategies of wound healing, in connection with experiments on the cornea.
机译:在动物组织中调节细胞生长是至关重要的问题:大多数组织在相互转化中包含不同类型的细胞,并且每种类型的比例必须通过尚不清楚的机制以精确的方式进行控制。在这里,我们使用机械方程式(描述组织的大小)和动力学方程式(描述细胞群体的相互转化)为含干细胞的上皮组织的稳态提供了理论框架。我们表明,可以从通用模型中研究和了解几个特征,例如在肠道发育过程中干细胞组分的进化,肠壁发育的形状以及在癌症发作中增殖室的增加。依靠特定的监管机制。最后,受近期实验的启发,我们提出了一种模型,其中细胞分裂速率受上皮片中的机械应力调节。我们显示,除了以前的功能外,压力控制的生长还可以用很少的参数解释干细胞区室的形成以及结肠隐窝癌变时观察到的形态。我们还将讨论与角膜实验相关的伤口愈合的最佳策略。

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