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Synergistic and inhibitory interactions in the in vitro control of murine megakaryocyte colony formation.

机译:在体外控制鼠巨核细胞集落形成的协同和抑制相互作用。

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The formation of megakaryocyte colonies in agar cultures of murine bone marrow or spleen cells can be stimulated by the addition of interleukin-3 (IL-3), erythropoietin (EPO), thrombopoietin (TPO), or IL-6. However, greater numbers of colonies developed if combinations of two or more of these stimuli were used, particularly combinations including stem cell factor, with maximal numbers of colonies developing with the combination of stem cell factor plus IL-3 plus EPO. The data indicate that most committed progenitor cells in the megakaryocyte lineage were unusual in that they required stimulation by two or more hematopoietic growth factors. In tests using a range of growth factors, G-CSF was exceptional in that it consistently specifically inhibited megakaryocyte colony formation stimulated by EPO, TPO, or IL-6 but not that stimulated by IL-3. The mechanisms involved in this inhibitory action of G-CSF are unknown, but the inhibitory action could be of relevance for the dose-dependent lowering of platelet levels observed in some subjects injected with G-CSF.
机译:鼠骨髓或脾细胞琼脂培养物中巨核细胞集落的形成可以通过添加白介素-3(IL-3),促红细胞生成素(EPO),血小板生成素(TPO)或IL-6来刺激。但是,如果使用两种或多种这些刺激物的组合,则会形成更多的菌落,特别是包括干细胞因子的组合,而干细胞因子加IL-3加EPO的组合会形成最大数量的菌落。数据表明,巨核细胞谱系中大多数定型祖细胞是不寻常的,因为它们需要两种或多种造血生长因子的刺激。在使用一系列生长因子的测试中,G-CSF的出色之处在于,它始终特异性地抑制EPO,TPO或IL-6刺激的巨核细胞集落形成,而不是IL-3刺激的巨核集落形成。 G-CSF的这种抑制作用涉及的机制尚不清楚,但这种抑制作用可能与某些注射G-CSF的受试者的剂量依赖性降低血小板水平有关。

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