Bhalla K, Tourkina E, Huang Y, Tang C, Mahoney M E, Ibrado A M
Department of Medicine, Medical University of South Carolina, Charleston 29425-2225.
Leuk Lymphoma. 1993;10 Suppl:123-31. doi: 10.3109/10428199309149124.
Recently, high dose Ara-C (HIDAC) has been shown to induce leukemic cell death in vitro by the alternative process of programmed cell death (PCD) or apoptosis which correlates with the inhibition of their clonogenic survival. Since co-treatment with hemopoietic growth facts (HGFs) GM-CSF and IL-3 have been demonstrated to enhance the metabolism and cytotoxic effects of HIDAC against leukemic progenitor cells, we examined the effect of HGFs pIXY 321 (a GM-CSF/IL3 fusion protein) and G-CSF on HIDAC induced PCD and related gene expressions as well as HIDAC mediated colony growth inhibition of human myeloid leukemia cells. Treatment with G-CSF or pIXY 321 alone for up to 24 hours neither suppressed nor induced PCD in HL-60 or KG-1 cells. However, exposure to either of the HGFs for 20 hours followed by a combined treatment for 4 hours with HIDAC plus either of the HGFs versus HIDAC alone significantly enhanced the intracellular Ara-CTP accumulation and the oligonucleosomal DNA fragmentation characteristic of PCD. This was temporally associated with a marked induction of C-jun expression but a significant repression in BCL-2 and c-myc expressions. In addition, the treatment with either of the HGFs plus HIDAC versus HIDAC alone produced a significantly greater inhibition of the clonogenic survival of the myeloid leukemia cells. These findings underscore an additional mechanism of leukemic cell death induced by HIDAC which can be modulated by the HGFs to improve the antileukemic activity of HIDAC.
最近研究表明,高剂量阿糖胞苷(HIDAC)可通过程序性细胞死亡(PCD)或凋亡这一替代过程在体外诱导白血病细胞死亡,这与抑制白血病细胞的克隆存活相关。由于已证实造血生长因子(HGFs)GM-CSF和IL-3联合治疗可增强HIDAC对白血病祖细胞的代谢及细胞毒性作用,我们研究了HGFs pIXY 321(一种GM-CSF/IL3融合蛋白)和G-CSF对HIDAC诱导的PCD、相关基因表达以及HIDAC介导的人髓系白血病细胞集落生长抑制的影响。单独用G-CSF或pIXY 321处理HL-60或KG-1细胞长达24小时,既未抑制也未诱导PCD。然而,用任何一种HGFs处理20小时,随后HIDAC与任何一种HGFs联合处理4小时,相较于单独使用HIDAC,均显著增强了PCD特有的细胞内阿糖胞苷三磷酸(Ara-CTP)积累和寡核小体DNA片段化。这在时间上与C-jun表达的显著诱导相关,但与BCL-2和c-myc表达的显著抑制相关。此外,与单独使用HIDAC相比,任何一种HGFs加HIDAC的处理对髓系白血病细胞的克隆存活产生了显著更强的抑制作用。这些发现强调了HIDAC诱导白血病细胞死亡的另一种机制,该机制可受HGFs调节,以提高HIDAC的抗白血病活性。