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Stem cell plasticity revisited: the continuum marrow model and phenotypic changes mediated by microvesicles.

机译:重新研究干细胞可塑性:连续性骨髓模型和微泡介导的表型变化。

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The phenotype of marrow hematopoietic stem cells is determined by cell-cycle state and microvesicle entry into the stem cells. The stem cell population is continually changing based on cell-cycle transit and can only be defined on a population basis. Purification of marrow stem cells only addresses the heterogeneity of these populations. When whole marrow is studied, the long-term repopulating stem cells are in active cell cycle. However, with some variability, when highly purified stem cells are studied, the cells appear to be dormant. Thus, the study of purified stem cells is intrinsically misleading. Tissue-derived microvesicles enhanced by injury effect the phenotype of different cell classes. We propose that previously described stem cell plasticity is due to microvesicle modulation. We further propose a stem cell population model in which the individual cell phenotypes continually change, but the population phenotype is relatively stable. This, in turn, is modulated by microvesicle and microenvironmental influences.
机译:骨髓造血干细胞的表型由细胞周期状态和微泡进入干细胞决定。干细胞种群会根据细胞周期迁移而不断变化,并且只能在种群基础上进行定义。骨髓干细胞的纯化仅解决了这些群体的异质性。当研究整个骨髓时,长期繁殖的干细胞处于活跃的细胞周期。但是,在研究高纯度干细胞时,存在一定的可变性,这些细胞似乎处于休眠状态。因此,对纯化的干细胞的研究本质上具有误导性。损伤增强的源自组织的微囊泡影响不同细胞类型的表型。我们提出,先前描述的干细胞可塑性是由于微泡调节。我们进一步提出了一种干细胞种群模型,其中单个细胞表型不断变化,但种群表型相对稳定。反过来,这受到微泡和微环境影响的调节。

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