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骨髓移植后遗传性贫血W/Wv小鼠红系和非红系祖细胞的不同再增殖情况。

Different repopulation profile between erythroid and nonerythroid progenitor cells in genetically anemic W/Wv mice after bone marrow transplantation.

作者信息

Nakano T, Waki N, Asai H, Kitamura Y

机构信息

Division of Cancer Pathology, Osaka University Medical School, Japan.

出版信息

Blood. 1989 Oct;74(5):1552-6.

PMID:2790184
Abstract

Repopulation kinetics of erythrocytes and neutrophils and replacement of hematopoietic progenitors were studied in genetically anemic (WB x C57BL/6)F1-W/Wv (WBB6F1-W/Wv) hosts after bone marrow transplantation from C57BL/6-bgJ/bgJ or C57BL/6-bgJ/bgJ;Pgk-1a/Y mice. Electrophoretic pattern of hemoglobin was used as a marker of donor-type erythrocytes, giant granules of bgJ/bgJ mice as a marker of donor-type neutrophils, and A-type phosphoglycerate kinase-1 (PGK-1) as a marker of hematopoietic colonies produced by donor-derived progenitor cells. Repopulation of donor-type erythrocytes was significantly faster than that of donor-type neutrophils. Moreover, the extent of replacement was greater for erythroid progenitor cells than for nonerythroid progenitor cells. When nonirradiated WBB6F1-W/Wv mice with B-type PGK-1 received 10(5) bone marrow cells from C57BL/6-bgJ/bgJ;Pgk-1a donors, only approximately 20% replacement of erythroid progenitor cells gave rise to total reconstitution of erythrocytes. The present result suggests that normal multipotential stem cells may preferentially differentiate into erythroid lineage cells in anemic WBB6F1-W/Wv hosts and that normal erythroid progenitor cells may suppress the differentiation of erythroid progenitors of WBB6F1-W/Wv hosts.

摘要

在从C57BL/6-bgJ/bgJ或C57BL/6-bgJ/bgJ;Pgk-1a/Y小鼠进行骨髓移植后,研究了遗传性贫血(WB×C57BL/6)F1-W/Wv(WBB6F1-W/Wv)宿主中红细胞和中性粒细胞的再填充动力学以及造血祖细胞的替代情况。血红蛋白的电泳图谱用作供体型红细胞的标志物,bgJ/bgJ小鼠的巨大颗粒用作供体型中性粒细胞的标志物,A型磷酸甘油酸激酶-1(PGK-1)用作供体来源的祖细胞产生的造血集落的标志物。供体型红细胞的再填充明显快于供体型中性粒细胞。此外,红系祖细胞的替代程度大于非红系祖细胞。当具有B型PGK-1的未受照射的WBB6F1-W/Wv小鼠接受来自C57BL/6-bgJ/bgJ;Pgk-1a供体的10(5)个骨髓细胞时,仅约20%的红系祖细胞替代就导致了红细胞的完全重建。目前的结果表明,正常的多能干细胞可能在贫血的WBB6F1-W/Wv宿主中优先分化为红系谱系细胞,并且正常的红系祖细胞可能抑制WBB6F1-W/Wv宿主红系祖细胞的分化。

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