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The universal properties of stem cells as pinpointed by a simple discrete model

机译:简单离散模型确定的干细胞的通用特性

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The ability of a few stem-cells to repopulate a severely damaged bone marrow (BM) guarantees the stability of our physical existence, and facilitates successful BM transplantations. What are the basic properties of stem cells that enable the maintenance of the system's homeostasis? In the present work we attempt to answer this question by investigating a discrete (in time and phase-space) dynamical system. The model we present is shown to retrieve the essential properties of homeostasis. as reflected in BM functioning, namely, (a) to produce a constant amount of mature cells, and (b) to be capable of returning to this production after very large perturbations. The mechanism guaranteeing the fulfillment of these properties is extrinsic - negative feedback control in the micro-environment - and does not need additional stochastic assumptions. Nevertheless, the existence of a simple intrinsic control mechanism, a clock which determines the switch to differentiation, ascertains that the system does not admit non-trivial extinction states. This result may help clarifying some of the controversy about extrinsic versus intrinsic control over stem cell fate. It should be stressed that all conclusions are valid for any system containing progenitor and maturing cells. [References: 13]
机译:少数干细胞重新填充严重受损的骨髓(BM)的能力保证了我们身体生存的稳定性,并促进了成功的BM移植。干细胞能维持系统稳态的基本特性是什么?在当前的工作中,我们试图通过研究离散的(时间和相空间)动力学系统来回答这个问题。我们展示的模型显示出可以恢复稳态的基本特性。如BM功能所反映的那样,即(a)产生恒定量的成熟细胞,和(b)在非常大的扰动后能够返回该产生。保证实现这些特性的机制是外部的-在微环境中控制负反馈-不需要其他随机假设。然而,存在一种简单的内在控制机制,即确定向微分转换的时钟,可以确定该系统不接受非平凡的灭绝状态。这一结果可能有助于澄清一些关于干细胞命运外在与内在控制的争论。应该强调的是,所有结论对于任何包含祖细胞和成熟细胞的系统都是有效的。 [参考:13]

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