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卷尾小鼠造血缺陷的细胞基础。III. 缺陷局限于体内能够短暂形成集落的红系祖细胞。

The cellular basis for the defect in haemopoiesis in flexed-tailed mice. III. Restriction of the defect to erythropoietic progenitors capable of transient colony formation in vivo.

作者信息

Gregory C J, McCulloch E A, Till J E

出版信息

Br J Haematol. 1975 Aug;30(4):401-10. doi: 10.1111/j.1365-2141.1975.tb01854.x.

Abstract

Three assays for erythropoietic progenitor cells have been applied to mice of genotype f/f and to nearly congenic +/+ controls. When f/f mice were tested for their ability to generate transient endogenous erythroid spleen colonies 4-6 days after 800 rads and 10 units of erythropoietin, the numbers of such colonies detected were greatly reduced, although normal numbers of spleen colonies appeared at later times (9-12 days) postirradiation. In contrast, cells capable of erythropoietic colony formation in culture (CFU-E) were present within the normal range in both f/f spleen and marrow and their sensitivity to erythropoietin in culture was the same as that found previously for CFU-E in the marrow and spleen of +/+ mice. Transfusion-induced plethora reduced the number of CFU-E in marrow to a similar extent in both f/f and +/+ mice; likewise, subsequent administration of 10 units of erythropoietin induced a rapid return in the number of marrow CFU-E in both genotypes. In the spleen, CFU-E numbers were approximately three-fold lower in f/f mice in each group. These results support the view that the 5 day assay for transient endogenous spleen colonies detects cells (TE-CFU) that are different from both CFU-E and pluripotent stem cells (CFU-S), although possibly overlapping to some extent with the immediate progenitors of CFU-E. The results also indicate that the generation or maturation of TE-CFU represents a primary site of expression of the f/f defect.

摘要

三种针对红细胞生成祖细胞的检测方法已应用于基因型为f/f的小鼠和几乎同基因的+/+对照小鼠。当对f/f小鼠进行检测,观察其在接受800拉德辐射和10单位促红细胞生成素后4 - 6天产生短暂内源性红细胞脾脏集落的能力时,检测到的此类集落数量大幅减少,尽管在照射后较晚时间(9 - 12天)出现了正常数量的脾脏集落。相比之下,在f/f小鼠的脾脏和骨髓中,能够在培养中形成红细胞集落的细胞(CFU - E)数量处于正常范围内,并且它们在培养中对促红细胞生成素的敏感性与之前在+/+小鼠的骨髓和脾脏中发现的CFU - E相同。输血诱导的多血症在f/f和+/+小鼠中使骨髓中的CFU - E数量减少到相似程度;同样,随后给予10单位促红细胞生成素会使两种基因型的骨髓CFU - E数量迅速恢复。在脾脏中,每组f/f小鼠的CFU - E数量大约低三倍。这些结果支持这样一种观点,即对短暂内源性脾脏集落的5天检测所检测到的细胞(TE - CFU)与CFU - E和多能干细胞(CFU - S)都不同,尽管可能在某种程度上与CFU - E的直接祖细胞重叠。结果还表明,TE - CFU的生成或成熟代表了f/f缺陷表达的主要部位。

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