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重组人c-Mpl配体(血小板生成素)不仅在体外作用于巨核细胞祖细胞,还作用于红系祖细胞和多能祖细胞。

Recombinant human c-Mpl ligand (thrombopoietin) not only acts on megakaryocyte progenitors, but also on erythroid and multipotential progenitors in vitro.

作者信息

Tanimukai S, Kimura T, Sakabe H, Ohmizono Y, Kato T, Miyazaki H, Yamagishi H, Sonoda Y

机构信息

Second Department of Surgery, Kyoto Prefectural University of Medicine, Kamigyoku, Japan.

出版信息

Exp Hematol. 1997 Sep;25(10):1025-33.

PMID:9293899
Abstract

To determine the hematopoietic actions of recombinant human c-Mpl ligand (thrombopoietin [TPO]), we studied its effects on the proliferation and differentiation of highly purified CD34+ blood progenitors in plasma-containing and serum-free culture. TPO alone promoted the growth of small megakaryocyte colonies (CFU-Meg) in numbers two to three times greater than those produced by interleukin (IL)-3. The combination of TPO and stem cell factor (SCF) exerted a significant synergistic effect on CFU-Meg formation. In the presence of TPO and IL-3 or granulocyte/macrophage-colony stimulating factor (GM-CSF), a significant number of mixed colonies (CFU-Mix) were observed. The combination of TPO and Epo did not increase the number of CFU-Meg, but did support erythroid-burst (BFU-E) and CFU-Mix colony formation. Interestingly, the combination of TPO with cytokines known to have burst-promoting activity (BPA), including IL-3, GM-CSF, IL-9, and SCF, increased the number of BFU-E and CFU-Mix in the presence of Epo. The BPA of TPO was further investigated by delayed addition of Epo on day 6 after incubation with TPO from day 0. None of the BFU-E or CFU-Mix survived, indicating that TPO acted as a costimulant exclusively for Epo. Moreover, a neutralizing anti-human Mpl receptor polyclonal antibody completely abrogated the BPA of TPO, demonstrating that this effect was mediated through the Mpl receptor. Finally, experiments in single-cell clone sorting and serum-free culture clearly demonstrated that a combination of TPO and Epo directly supported BFU-E and CFU-Mix. These results suggest that TPO acts not only in megakaryocytopoiesis but also in the early stage of hematopoiesis.

摘要

为了确定重组人c-Mpl配体(血小板生成素[TPO])的造血作用,我们研究了其在含血浆和无血清培养中对高度纯化的CD34+血液祖细胞增殖和分化的影响。单独使用TPO可促进小巨核细胞集落(CFU-Meg)的生长,其数量比白细胞介素(IL)-3产生的集落多两到三倍。TPO与干细胞因子(SCF)联合对CFU-Meg的形成具有显著的协同作用。在TPO和IL-3或粒细胞/巨噬细胞集落刺激因子(GM-CSF)存在的情况下,观察到大量混合集落(CFU-Mix)。TPO与促红细胞生成素(Epo)联合使用并没有增加CFU-Meg的数量,但确实支持红系爆式集落(BFU-E)和CFU-Mix集落的形成。有趣的是,TPO与已知具有爆式促进活性(BPA)的细胞因子(包括IL-3、GM-CSF、IL-9和SCF)联合使用时,在Epo存在的情况下增加了BFU-E和CFU-Mix的数量。通过在第0天与TPO孵育后第6天延迟添加Epo,进一步研究了TPO的BPA。没有一个BFU-E或CFU-Mix存活,这表明TPO仅作为Epo的共刺激因子起作用。此外,一种中和抗人Mpl受体多克隆抗体完全消除了TPO的BPA,表明这种作用是通过Mpl受体介导的。最后,单细胞克隆分选和无血清培养实验清楚地表明,TPO和Epo联合直接支持BFU-E和CFU-Mix。这些结果表明,TPO不仅在巨核细胞生成中起作用,而且在造血的早期阶段也起作用。

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