首页> 美国卫生研究院文献>The Journal of Experimental Medicine >The FLT3 ligand potently and directly stimulates the growth and expansion of primitive murine bone marrow progenitor cells in vitro: synergistic interactions with interleukin (IL) 11 IL-12 and other hematopoietic growth factors
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The FLT3 ligand potently and directly stimulates the growth and expansion of primitive murine bone marrow progenitor cells in vitro: synergistic interactions with interleukin (IL) 11 IL-12 and other hematopoietic growth factors

机译:FLT3配体有效并直接刺激体外原始小鼠骨髓祖细胞的生长和扩展:与白介素(IL)11IL-12和其他造血生长因子的协同相互作用

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摘要

The recently cloned murine flt3 ligand (FL) was studied for its ability to stimulate the growth of primitive (Lin-Sca-1+) and more committed (Lin-Sca-1-) murine bone marrow progenitor cells, alone and in combination with other hematopoietic growth factors (HGFs). Whereas FL was a weak proliferative stimulator alone, it potently synergized with a number of other HGFs, including all four colony-stimulating factor (CSF), interleukin (IL) 6, IL-11, IL-12, and stem cell factor (SCF), to promote the colony formation of Lin-Sca-1+, but not Lin-Sca-1- or erythroid progenitor cells. The synergistic activity of FL was concentration dependent, with maximum stimulation occurring at 250 ng/ml, and was observed when cells were plated at a concentration of one cell per culture, suggesting that its effects are directly mediated. 2 wk of treatment with FL in combination with IL-3 or SCF resulted in the production of a high proportion of mature myeloid cells (granulocytes and macrophages), whereas the combination of FL with G- CSF, IL-11, or IL-12 resulted predominantly in the formation of cells with an immature blast cell appearance. Accordingly, FL in combination with G-CSF or IL-11 expanded the number of progenitors more than 40- fold after 2 wk incubation. Thus, FL emerges as a potent synergistic HGF, that in combination with numerous other HGFs, can directly stimulate the proliferation, myeloid differentiation, and expansion of primitive hematopoietic progenitor cells.
机译:研究了最近克隆的鼠flt3配体(FL)刺激原始(Lin-Sca-1 +)和更定型(Lin-Sca-1-)鼠骨髓祖细胞生长的能力,可单独使用或与其他造血生长因子(HGF)。 FL本身仅是一种弱的增殖刺激物,但它可以与许多其他HGF协同作用,包括所有四个集落刺激因子(CSF),白介素(IL)6,IL-11,IL-12和干细胞因子(SCF) ),以促进Lin-Sca-1 +的集落形成,但不促进Lin-Sca-1或红系祖细胞的集落形成。 FL的协同活性是浓度依赖性的,最大刺激发生在250 ng / ml,并且当以每种培养物一个细胞的浓度接种细胞时观察到,表明其作用是直接介导的。 FL与IL-3或SCF联合治疗2周导致产生高比例的成熟髓样细胞(粒细胞和巨噬细胞),而FL与G-CSF,IL-11或IL-12组合导致主要形成具有不成熟胚细胞外观的细胞。因此,在2周温育后,FL与G-CSF或IL-11的结合使祖细胞的数量增加了40倍以上。因此,FL以有效的协同HGF的形式出现,与许多其他HGF结合可以直接刺激原始造血祖细胞的增殖,骨髓分化和扩增。

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