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A model of stem cell population dynamics: in silico analysis and in vivo validation.

机译:干细胞种群动态模型:计算机分析和体内验证。

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The proper renewal and maintenance of tissues by stem cell populations is simultaneously influenced by anatomical constraints, cell proliferation dynamics and cell fate specification. However, their relative influence is difficult to examine in vivo. To address this difficulty we built, as a test case, a cell-centered state-based computational model of key behaviors that govern germline development in C. elegans, and used it to drive simulations of cell population dynamics under a variety of perturbations. Our analysis provided unexpected possible explanations for laboratory observations, including certain 'all-or-none' phenotypes and complex differentiation patterns. The simulations also offered insights into niche-association dynamics and the interplay between cell cycle and cell fate. Subsequent experiments validated several predictions generated by the simulations. Notably, we found that early cell cycle defects influence later maintenance of the progenitor cell population. This general modeling approach is potentially applicable to other stem cell systems.
机译:干细胞群体对组织的正确更新和维护同时受到解剖学限制,细胞增殖动力学和细胞命运规范的影响。但是,它们的相对影响很难在体内进行检查。为了解决这一难题,我们建立了一个以细胞为中心的基于状态的关键行为计算模型作为测试用例,该模型控制线虫的种系发育,并用它来模拟各种扰动下的细胞种群动态。我们的分析为实验室观察提供了意料之外的可能解释,包括某些“全有或全无”表型和复杂的分化模式。这些模拟还提供了有关小生境关联动力学以及细胞周期与细胞命运之间相互作用的见解。随后的实验验证了模拟产生的几个预测。值得注意的是,我们发现早期细胞周期缺陷会影响祖细胞群体的后期维护。这种通用的建模方法可能适用于其他干细胞系统。

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