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Enhancement of Cytosine Arabinoside Cytotoxicity by Granulocyte/Macrophage Colony‐stimulating Factor and Granulocyte Colony‐stimulating Factor in a Human Myeloblastic Leukemia Cell Line

机译:粒细胞/巨噬细胞集落刺激因子和粒细胞集落刺激因子在人粒细胞白血病细胞系中增强胞嘧啶核苷的细胞毒性

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摘要

Enhancement of the cytotoxicity of cytosine arabinoside (ara‐C) by granulocyte/macrophage colony‐stimulating factor (GM‐CSF) and granulocyte colony‐stimulating factor (G‐CSF), and the mechanisms involved, were studied in the AML‐193 human leukemia cell line. AML‐193 cells require GM‐CSF and G‐CSF(CSFs) for optimum growth, and 24 h deprivation of CSFs decreased DNA synthesis measured in terms of 3H‐thymidine incorporation. The DNA synthesis gradually recovered upon addition of CSFs. To examine the sensitivity to ara‐C under different growth conditions, two groups of cell suspensions, one pretreated with CSFs after 24 h deprivation (CSFs(+) cells), and the other held continuously under CSFs‐free conditions (CSFs(‐) cells), were exposed to 1.0 μg/ml of ara‐C for 16 h. In clonogenic assays, CSFs(+) cells showed higher sensitivity to ara‐C than CSFs(‐) cells. These cell groups showed no significant difference in ara‐C triphosphate accumulation or retention, though the amount of ara‐C incorporated into the acid‐insoluble fraction was two times greater in CSFs(+) cells than CSFs(‐) cells, and that difference became even clearer in the retention pools. These data suggest that the enhancement of cytotoxicity by CSFs was due to the promotion of ara‐C incorporation into DNA as a result of an increase of the cell fraction in the S phase.
机译:在AML-193人中研究了粒细胞/巨噬细胞集落刺激因子(GM-CSF)和粒细胞集落刺激因子(G-CSF)增强胞嘧啶阿拉伯糖苷(ara-C)的细胞毒性及其作用机理。白血病细胞系。 AML-193细胞需要GM-CSF和G-CSF(CSFs)才能达到最佳生长,剥夺CSFs 24小时会降低DNA的合成,以 3 H-胸腺嘧啶核苷的掺入量来衡量。加入CSF后,DNA合成逐渐恢复。为了检查在不同生长条件下对ara‐C的敏感性,两组细胞悬液,一组在剥夺24小时后用CSFs预处理(CSFs(+)细胞),另一组在无CSFs的条件下连续保持(CSFs(‐)细胞)暴露于1.0μg/ ml ara‐C 16小时。在克隆形成测定中,CSFs(+)细胞对ara-C的敏感性高于CSFs(-)细胞。尽管CSFs(+)细胞中掺入酸不溶级分的ara-C量是CSFs(-)细胞的两倍,但这些细胞组在ara-C三磷酸的积累或保留方面没有显着差异。在保留池中变得更加清晰。这些数据表明,由于S期细胞分数的增加,CSFs的细胞毒性增强是由于ara-C掺入DNA的促进。

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