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首页> 外文期刊>BioMed research international >Doxorubicin Differentially Induces Apoptosis, Expression of Mitochondrial Apoptosis-Related Genes, and Mitochondrial Potential in BCR-ABL1-Expressing Cells Sensitive and Resistant to Imatinib
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Doxorubicin Differentially Induces Apoptosis, Expression of Mitochondrial Apoptosis-Related Genes, and Mitochondrial Potential in BCR-ABL1-Expressing Cells Sensitive and Resistant to Imatinib

机译:多柔比星差异地诱导细胞凋亡,线粒体凋亡相关基因的表达,BCR-ABL1表达细胞中的线粒体电位敏感和耐用于伊马替尼

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Imatinib resistance is an emerging problem in the therapy of chronic myeloid leukemia (CML). Because imatinib induces apoptosis, which may be coupled with mitochondria and DNA damage is a prototype apoptosis-inducing factor, we hypothesized that imatinib-sensitive and -resistant CML cells might differentially express apoptosis-related mitochondrially encoded genes in response to genotoxic stress. We investigated the effect of doxorubicin (DOX), a DNA-damaging anticancer drug, on apoptosis and the expression of the mitochondrial NADH dehydrogenase 3 (MT-ND3) and cytochrome b (MT-CYB) in model CML cells showing imatinib resistance caused by Y253H mutation in the BCR-ABL1 gene (253) or culturing imatinib-sensitive (S) cells in increasing concentrations of imatinib (AR). The imatinib-resistant 253 cells displayed higher sensitivity to apoptosis induced by 1 μM DOX and this was confirmed by an increased activity of executioner caspases 3 and 7 in those cells. Native mitochondrial potential was lower in imatinib-resistant cells than in their sensitive counterparts and DOX lowered it. MT-CYB mRNA expression in 253 cells was lower than that in S cells and 0.1 μM DOX kept this relationship. In conclusion, imatinib resistance may be associated with altered mitochondrial response to genotoxic stress, which may be further exploited in CML therapy in patients with imatinib resistance.
机译:伊马替尼抗性是慢性骨髓白血病治疗中的新出现问题(CML)。因为伊马替尼诱导细胞凋亡,其可以与线粒体和DNA损伤偶联是一种原型凋亡诱导因子,我们假设伊马替尼敏感和 - 鉴定的CML细胞可能鉴于遗传毒性应激差异表达凋亡相关的线粒体编码基因。我们研究了多柔比星(DOX),DNA损伤的抗癌药物对细胞凋亡和模型CML细胞中的细胞瘤细胞凋亡和细胞色素B(MT-ND3)的表达的影响,显示出伊替尼耐药性在BCR-ABL1基因(253)中的Y253H突变或培养伊马替尼敏感细胞的含量增加的伊马替尼(Ar)。伊马替尼抗性253个细胞对1μmdox诱导的细胞凋亡的敏感性较高,并且通过这些细胞中的刽子手胱天膜酶3和7的活性增加了这一点。伊马替尼抗性细胞的本地线粒体电位比其敏感的对应物,DOX降低。 253细胞中的MT-Cyb mRNA表达低于S细胞中的,并且0.1μmdox保持这种关系。总之,伊马替尼电阻可能与改变对基因毒性应激的改变的线粒体反应相关,这可以进一步利用伊马替尼抗性患者的CML治疗。

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