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血小板生成素而非促红细胞生成素,与早期作用的细胞因子协同作用,直接刺激原始小鼠骨髓祖细胞的多谱系生长:与c-kit和FLT3配体的不同相互作用。

Thrombopoietin, but not erythropoietin, directly stimulates multilineage growth of primitive murine bone marrow progenitor cells in synergy with early acting cytokines: distinct interactions with the ligands for c-kit and FLT3.

作者信息

Ramsfjell V, Borge O J, Veiby O P, Cardier J, Murphy M J, Lyman S D, Lok S, Jacobsen S E

机构信息

Hipple Cancer Research Center, Dayton, OH, USA.

出版信息

Blood. 1996 Dec 15;88(12):4481-92.

PMID:8977240
Abstract

Thrombopoietin (Tpo), the ligand for c-mpl, has been shown to be the principal regulator of megakaryocytopoiesis and platelet production. The ability of Tpo to potently stimulate the growth of committed megakaryocyte (Mk) progenitor cells has been studied in detail. Murine fetal liver cells, highly enriched in primitive progenitors, have been shown to express c-mpl, but little is known about the ability of Tpo to stimulate the growth and differentiation of primitive multipotent bone marrow (BM) progenitor cells. Here, we show that Tpo alone and in combination with early acting cytokines can stimulate the growth and multilineage differentiation of Lin- Sca-1+ BM progenitor cells. In particular, Tpo potently synergized with the ligands for c-kit (stem cell factor [SCF]) and flt3 (FL) to stimulate an increase in the number and size of clones formed from Lin- Sca-1+ progenitors. When cells were plated at 1 cell per well, the synergistic effect of Tpo was observed both in fetal calf serum-supplemented and serum-depleted medium and was decreased if the addition of Tpo to cultures was delayed for as little as 24 hours, suggesting that Tpo is acting directly on the primitive progenitors. Tpo added to SCF + erythropoietin (Epo)-supplemented methylcellulose cultures potently enhanced the formation of multilineage colonies containing granulocytes, macrophages, erythrocytes, and Mks. SCF potently enhanced Tpo-stimulated production of high-ploidy Mks from Lin- Sca-1+ progenitors, whereas the increased growth response obtained when combining Tpo with FL did not translate into increased Mk production. The ability of Tpo and SCF to synergistically enhance the growth of Lin- Sca-1+ progenitors was predominantly observed in the more primitive rhodamine 123(lo) fraction. Tpo also enhanced growth of Lin- Sca-1+ progenitors when combined with interleukin-3 (IL-3) and IL-11 but not with IL-12, granulocyte colony-stimulating factor, granulocyte-macrophage colony-stimulating factor, or Epo. Epo, which has high homology to Tpo, was unable to stimulate the growth of Lin- Sca-1+ progenitors alone or in combination with SCF or FL, suggesting that c-mpl is expressed on more primitive stages of progenitors than the Epo receptor. Thus, the present studies show the potent ability of Tpo to enhance the growth of primitive multipotent murine BM progenitors in combination with multiple early acting cytokines and documents its unique ability to synergize with SCF to enhance Mk production from such progenitors.

摘要

血小板生成素(Tpo)是c-mpl的配体,已被证明是巨核细胞生成和血小板产生的主要调节因子。Tpo有效刺激定向巨核细胞(Mk)祖细胞生长的能力已得到详细研究。富含原始祖细胞的小鼠胎肝细胞已被证明表达c-mpl,但关于Tpo刺激原始多能骨髓(BM)祖细胞生长和分化的能力知之甚少。在这里,我们表明,单独的Tpo以及与早期作用细胞因子联合使用时,可以刺激Lin-Sca-1+ BM祖细胞的生长和多谱系分化。特别是,Tpo与c-kit的配体(干细胞因子[SCF])和flt3(FL)有效协同作用,刺激Lin-Sca-1+祖细胞形成的克隆数量增加和大小增大。当细胞以每孔1个细胞接种时,在补充胎牛血清和无血清的培养基中均观察到Tpo的协同作用,如果将Tpo添加到培养物中的时间延迟至仅24小时,协同作用就会减弱,这表明Tpo直接作用于原始祖细胞。添加到补充有SCF+促红细胞生成素(Epo)的甲基纤维素培养物中的Tpo有效增强了包含粒细胞、巨噬细胞、红细胞和Mk的多谱系集落的形成。SCF有效增强了Tpo刺激Lin-Sca-1+祖细胞产生高倍体Mk的能力,而将Tpo与FL联合使用时获得的生长反应增加并未转化为Mk产量的增加。Tpo和SCF协同增强Lin-Sca-1+祖细胞生长的能力主要在更原始的罗丹明123(lo)组分中观察到。当与白细胞介素-3(IL-3)和IL-11联合使用时Tpo也增强了Lin-Sca-1+祖细胞的生长,但与IL-12、粒细胞集落刺激因子、粒细胞-巨噬细胞集落刺激因子或Epo联合使用时则没有。与Tpo具有高度同源性的Epo,单独或与SCF或FL联合使用时均无法刺激Lin-Sca-1+祖细胞的生长,这表明c-mpl在祖细胞的比Epo受体更原始的阶段表达。因此,本研究表明Tpo与多种早期作用细胞因子联合使用时具有增强原始多能小鼠BM祖细胞生长的强大能力,并证明了其与SCF协同增强此类祖细胞产生Mk的独特能力。

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