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细胞衰老导致造血干细胞功能异质性:建模视角。

Cellular aging leads to functional heterogeneity of hematopoietic stem cells: a modeling perspective.

机构信息

Institute for Medical Informatics and Biometry, Faculty of Medicine Carl Gustav Carus, Dresden University of Technology, Germany.

出版信息

Aging Cell. 2011 Jun;10(3):457-65. doi: 10.1111/j.1474-9726.2011.00692.x. Epub 2011 Apr 5.

Abstract

Hematopoietic stem cells (HSCs) are the source for the life-long supply of functional cells in peripheral blood while they simultaneously maintain their own reserve pool. However, there is accumulating evidence that HSCs are themselves subject to quantitative and qualitative exhaustion. Although several processes linked to mitotic activity can potentially account for the observed aging phenomena (e.g., DNA damage, telomere shortening, epigenetic modification), a precise understanding of HSC exhaustion is still missing. It is particularly unclear how individual aging processes on the single-cell level translate on the phenotypic level of the overall tissue and whether there is a functional implication of an age-structured HSC population. We address these issues by applying a novel mathematical model of HSC organization in which division-specific, cumulative alterations of stem cell quality determine the phenotypic and functional appearance of the overall cell population. Adapting the model to a number of basic experimental findings, we quantify the level of additional heterogeneity that is introduced by a population of individually aging cells. Based on this model, we are able to conclude that division-dependent processes of cellular aging explain a wide range of phenomena on HSC exhaustion and that HSC aging needs to be considered as a highly heterogeneous process. We furthermore report that functional heterogeneity between young and old HSCs appears closely similar to the phenomena described for long- and short-term repopulating cells. We speculate whether differential, division-coupled stem cell aging introduces an intra-animal variability that also accounts for heterogeneity with respect to the repopulation ability of HSCs.

摘要

造血干细胞 (HSCs) 是外周血中功能性细胞长期供应的来源,同时维持自身储备池。然而,越来越多的证据表明 HSCs 本身也受到数量和质量的耗竭。尽管与有丝分裂活动相关的几个过程可能解释观察到的衰老现象(例如,DNA 损伤、端粒缩短、表观遗传修饰),但对 HSC 耗竭的确切理解仍然缺失。单个细胞水平上的个体衰老过程如何转化为整个组织的表型水平,以及具有年龄结构的 HSC 群体是否具有功能意义,这尤其不清楚。我们通过应用一个新的 HSC 组织数学模型来解决这些问题,该模型中,与分裂相关的、累积的干细胞质量变化决定了整个细胞群体的表型和功能表现。通过将该模型适用于许多基本的实验发现,我们量化了由个体衰老细胞组成的群体引入的额外异质性水平。基于该模型,我们可以得出结论,细胞衰老的分裂依赖性过程解释了 HSC 耗竭的广泛现象,并且 HSC 衰老需要被视为一个高度异质的过程。我们还报告说,年轻和年老 HSCs 之间的功能异质性与长期和短期重编程细胞描述的现象密切相似。我们推测,与分裂相关的、差异的干细胞衰老是否会引入一种动物内的变异性,这种变异性也与 HSCs 的重编程能力的异质性有关。

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