首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Lineage commitment of hemopoietic progenitor cells in developing blast cell colonies: influence of colony-stimulating factors.
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Lineage commitment of hemopoietic progenitor cells in developing blast cell colonies: influence of colony-stimulating factors.

机译:发育中的原始细胞集落中造血祖细胞的血统承诺:集落刺激因子的影响。

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摘要

In clonal cultures of normal mouse marrow cells, combination of granulocyte, granulocyte-macrophage, or multipotential colony-stimulating factor (G-CSF, GM-CSF, or multi-CSF, respectively) with stem cell factor (SCF) did not alter the number of blast colonies stimulated to develop compared with SCF alone but induced an up to 25-fold increase in their mean cell content and an up to 6-fold increase in their mean progenitor cell content. Costimulation of blast colony formation by SCF plus G-CSF did not change the relative frequency of progenitor cells of different types within the colonies compared with colonies stimulated by SCF alone. However, combination of GM-CSF or multi-CSF with SCF significantly increased the relative frequency of granulocytic progenitors and, for multi-CSF, also of eosinophil progenitor cells. These changes in the relative frequencies of progenitor cells committed to the various lineages support the hypothesis that hemopoietic regulators have some ability to induce selective lineage commitment in the progeny of multipotential cells.
机译:在正常小鼠骨髓细胞的克隆培养中,粒细胞,粒细胞巨噬细胞或多能集落刺激因子(分别为G-CSF,GM-CSF或多CSF)与干细胞因子(SCF)的组合不会改变与单独的SCF相比,受激发育的原始菌落的数量增加,但诱导它们的平均细胞含量增加了25倍,而其祖细胞平均含量增加了6倍。与仅由SCF刺激的菌落相比,通过SCF加G-CSF对胚集落形成的共刺激不会改变菌落内不同类型祖细胞的相对频率。但是,GM-CSF或多CSF与SCF的组合显着增加了粒细胞祖细胞的相对频率,对于多CSF,也增加了嗜酸性粒细胞祖细胞的相对频率。定位于各​​种谱系的祖细胞的相对频率的这些变化支持以下假设:造血调节剂具有一定能力,可以诱导多潜能细胞后代中的选择性谱系。

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