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红细胞生成素敏感性作为造血系统中的分化标志物:对培养中三种红细胞生成集落反应的研究

Erythropoietin sensitivity as a differentiation marker in the hemopoietic system: studies of three erythropoietic colony responses in culture.

作者信息

Gregory C J

出版信息

J Cell Physiol. 1976 Oct;89(2):289-301. doi: 10.1002/jcp.1040890212.

DOI:10.1002/jcp.1040890212
PMID:987043
Abstract

A time course study of the sequential appearance of erythropoietin-dependent colonies and bursts (derived from CFU-E and BFU-E, respectively) was performed on mouse hemopoietic cells cultured in methyl cellulose containing 2-mercaptoethanol. A new type of small, short-lived burst was found to be apparent by the third day in culture. By the sixth day most of these bursts had lysed. At the same time, differentiating erythroblasts began to be detectable in the large, late appearing bursts described previously. These two types of burst, differing from each other and from CFU-E derived colonies both in their ultimate size and morphology, as well as in their time course of appearance and lysis, were compared in other ways. It was found that early burst formation required about 100 times more erythropoietin than that needed to stimulate CFU-E. On the other hand, early burst formation required less than one-quarter of the amount of erythropoietin needed to obtain the large, late appearing bursts. Comparison of the distribution of early burst progenitors relative to pluripotent stem cells (CFU-S) in individual spleen colonies gave a correlation coefficient that was also intermediate between that obtained comparing CFU-S with CFU-E and that obtained comparing CFU-S with the progenitors of late bursts. These results suggest that decreasing proliferative capacity is associated with progressively increasing erythropoietin responsiveness as primitive erythropoietic progenitors move from a position close to pluripotent stem cells through several differentiation steps to reach a stage just prior to the onset of detectable hemoglobin synthesis.

摘要

在含有2-巯基乙醇的甲基纤维素中培养的小鼠造血细胞上,对促红细胞生成素依赖性集落和爆式集落(分别源自CFU-E和BFU-E)的相继出现进行了时间进程研究。发现一种新型的小的、寿命短的爆式集落在培养的第三天就很明显。到第六天,这些爆式集落大多已经溶解。与此同时,在先前描述的大的、出现较晚的爆式集落中开始可检测到正在分化的成红细胞。比较了这两种爆式集落,它们在最终大小和形态上,以及在出现和溶解的时间进程上,彼此不同且与CFU-E衍生的集落也不同。结果发现,早期爆式集落的形成所需的促红细胞生成素比刺激CFU-E所需的促红细胞生成素多约100倍。另一方面,早期爆式集落的形成所需的促红细胞生成素不到获得大的、出现较晚的爆式集落所需促红细胞生成素量的四分之一。比较单个脾集落中早期爆式集落祖细胞相对于多能干细胞(CFU-S)的分布,得到的相关系数也介于比较CFU-S与CFU-E以及比较CFU-S与晚期爆式集落祖细胞所得到的相关系数之间。这些结果表明,随着原始红细胞生成祖细胞从接近多能干细胞的位置经过几个分化步骤移动到可检测到血红蛋白合成开始之前的阶段,增殖能力的下降与促红细胞生成素反应性的逐渐增加相关。

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