Ikebuchi K, Clark S C, Ihle J N, Souza L M, Ogawa M
Department of Medicine, Medical University of South Carolina, Charleston.
Proc Natl Acad Sci U S A. 1988 May;85(10):3445-9. doi: 10.1073/pnas.85.10.3445.
In cultures of spleen cells from normal mice, recombinant human granulocyte colony-stimulating factor (G-CSF) supported the formation of multipotential blast cell colonies. Serial replating of the blast cell colonies in the presence of G-CSF, however, failed to demonstrate any direct effect of G-CSF on murine multipotential progenitors. We therefore examined the effects of G-CSF in combination with murine interleukin 3 on proliferation of murine blast cell colony-forming cells. The time course of total colony formation and multilineage colony formation by spleen cells harvested from mice 4 days after injection of 5-fluorouracil at 150 mg/kg was significantly shortened in cultures containing both factors in contrast with cultures supported by either factor alone. Serial observations of individual multipotential blast cell colonies (mapping) revealed that blast cell colonies emerged at random time intervals in the presence of interleukin 3 or G-CSF. The appearance of blast cell colonies, however, was significantly hastened in cultures containing both factors relative to cultures grown with either factor. In cultures of day-2 post-5-fluorouracil bone marrow cells, G-CSF in concentrations as low as 1 unit/ml revealed synergism with interleukin 3 in supporting the proliferation of multipotential progenitors. This synergistic activity may explain the previous in vivo studies suggesting the effects of G-CSF on apparent multipotential stem cells.
在正常小鼠脾细胞培养物中,重组人粒细胞集落刺激因子(G-CSF)支持多能母细胞集落的形成。然而,在G-CSF存在的情况下对母细胞集落进行连续传代培养,未能证明G-CSF对小鼠多能祖细胞有任何直接作用。因此,我们研究了G-CSF与小鼠白细胞介素3联合使用对小鼠母细胞集落形成细胞增殖的影响。与单独使用任一因子支持的培养物相比,在含有两种因子的培养物中,注射150mg/kg 5-氟尿嘧啶4天后从小鼠收获的脾细胞形成总集落和多谱系集落的时间进程显著缩短。对单个多能母细胞集落的连续观察(绘图)显示,在白细胞介素3或G-CSF存在下,母细胞集落以随机的时间间隔出现。然而,与用任一因子培养的培养物相比,在含有两种因子的培养物中母细胞集落的出现明显加快。在5-氟尿嘧啶处理后第2天的骨髓细胞培养物中,低至1单位/ml的G-CSF在支持多能祖细胞增殖方面显示出与白细胞介素3的协同作用。这种协同活性可能解释了先前的体内研究表明G-CSF对明显的多能干细胞有作用。