首页> 美国卫生研究院文献>Frontiers in Oncology >Marrow Hematopoietic Stem Cells Revisited: They Exist in a Continuum and are Not Defined by Standard Purification Approaches; Then There are the Microvesicles
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Marrow Hematopoietic Stem Cells Revisited: They Exist in a Continuum and are Not Defined by Standard Purification Approaches; Then There are the Microvesicles

机译:骨髓造血干细胞的再研究:它们存在于一个连续体中并没有通过标准的纯化方法来定义;然后有微泡

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摘要

Current concepts of hematopoiesis are encompassed in a hierarchical stem cell model. This developed initially from studies of colony-forming unit spleen and in vitro progenitors for different cell lineages, but then evolved into a comprehensive model of cells with different in vivo differentiative and proliferative potential. These cells were characterized and purified based largely on expression of a variety of lineage-specific and stem cell-specific surface epitopes. Monoclonal antibodies were bound to these epitopes and then used to physically and fluorescently separate different classes of these cells. The gold standard for the most primitive marrow stem cells was long-term multilineage repopulation and renewal in lethally irradiated mice. Progressive work seemed to have clonally defined a Lineage negative (Lin−), Sca-1+, c-kit+, CD150+ stem cell with great proliferative, differentiative, and renewal potential. This cell was stable and in the G0 phase of cell cycle. However, continued work in our laboratory indicated that the engraftment, differentiation, homing, and gene expression phenotype of the murine marrow stem cells continuously and reversibly changes with passage through cell cycle. Most recently, using cycle-defining supravital dyes and fluorescent-activated cell sorting and S-phase-specific tritiated thymidine suicide, we have established that the long-term repopulating hematopoietic stem cell is a rapidly proliferating, and thus a continually changing cell; as a corollary it cannot be purified or defined on a clonal single cell basis. Further in vivo studies employing injected and ingested 5-Bromodeoxyuridine (BrdU), showed that the G0 Lin-Sca-1, c-kit+ Flt3− cell was rapidly passing through cell cycle. These data are explained by considering the separative process: the proliferating stem cells are eliminated through the selective separations leaving non-representative dormant G0 stem cells. In other words, they throw out the real stem cells with the purification. This system, where the marrow stem cell continuously and reversibly changes with obligate cell cycle transit, is further complicated by the consideration of the impact of tissue microvesicles on the cell phenotypes. Tissue microvesicles have been found to alter the phenotype of marrow cells, possibly explaining the observations of “stem cell plasticity.” These alterations, short-term, are due to transfer of originator cell mRNA and as yet undefined transcription factors. Long-term phenotype change is due to transcriptional modulation; a stable epigenetic change. Thus, the stem cell system is characterized by continuous cycle and microvesicle-related change. The challenge of the future is to define the stem cell population.
机译:造血的当前概念包含在分级干细胞模型中。这最初是从针对不同细胞谱系的集落形成单位脾脏和体外祖细胞的研究发展而来的,但后来演变为具有不同体内分化和增殖潜能的细胞的综合模型。这些细胞的表征和纯化主要基于多种谱系特异性和干细胞特异性表面表位的表达。单克隆抗体与这些表位结合,然后用于物理和荧光分离这些细胞的不同类别。最原始的骨髓干细胞的金标准是在致命照射的小鼠中进行长期多谱系更新和更新。进步的工作似乎已经克隆定义了具有极大增殖,分化和更新潜能的谱系阴性(Lin −),Sca-1 +,c-kit +,CD150 +干细胞。该细胞稳定并且处于细胞周期的G0期。然而,在我们实验室的持续工作表明,小鼠骨髓干细胞的移入,分化,归巢和基因表达表型随着细胞周期的传递而连续可逆地变化。最近,我们使用周期决定性的上染染料和荧光激活的细胞分选方法,以及S期特异性ti化胸苷自杀剂,我们已经确定长期繁殖的造血干细胞正在迅速增殖,因此是一个不断变化的细胞。作为推论,它不能在克隆的单细胞基础上纯化或定义。使用注射和摄入的5-溴脱氧尿苷(BrdU)进行的进一步体内研究表明,G0 Lin-Sca-1,c-kit + Flt3-细胞迅速通过细胞周期。通过考虑分离过程来解释这些数据:通过选择性分离消除增殖的干细胞,留下非代表性的休眠G0干细胞。换句话说,他们通过纯化去除了真正的干细胞。通过考虑组织微泡对细胞表型的影响,使骨髓干细胞随着专一性的细胞周期传递而连续可逆地变化的系统变得更加复杂。已经发现组织微泡改变了骨髓细胞的表型,可能解释了“干细胞可塑性”的发现。短期而言,这些改变是由于原始细胞mRNA的转移以及尚未确定的转录因子引起的。长期的表型改变是由于转录调节。稳定的表观遗传变化。因此,干细胞系统的特征是连续循环和微囊泡相关变化。未来的挑战是定义干细胞种群。

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