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首页> 外文期刊>Acta Biochimica Polonica >Reactive oxygen species in BCR-ABL1-expressing cells - relevance to chronic myeloid leukemia
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Reactive oxygen species in BCR-ABL1-expressing cells - relevance to chronic myeloid leukemia

机译:BCR-ABL1表达细胞中的活性氧法 - 与慢性髓性白血病的相关性

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摘要

Chronic myeloid leukemia (CML) results from the t(9; 22) reciprocal chromosomal translocation producing the BCR-ABL1 gene, conferring growth and proliferation advantages in the CML cells. CML progresses from chronic, often syndrome-free, to blast phase, fatal if not treated. Although the involvement of BCR-ABL1 in some signaling pathways is considered as the cause of CML, the mechanisms resulting in its progression are not completely known. However, BCR-ABL1 stimulates the production of reactive oxygen species (ROS), which levels increase with CML progression and induce BCR-ABL1 self-mutagenesis. Introducing imatinib and other tyrosine kinase inhibitors (TKIs) to CML therapy radically improved its outcome, but TKIs-resistance became an emerging problem. TKI resistance can be associated with even higher ROS production than in TKI-sensitive cells. Therefore, ROS-induced self-mutagenesis of BCR-ABL1 can be crucial for CML progression and TKI resistance and in this way should be taken into account in therapeutic strategies. As a continuous production of ROS by BCR-ABL1 would lead to its self-destruction and death of CML cells, there must be mechanisms controlling this phenomenon. These can be dependent on DNA repair, which is modulated by BCR-ABL1 and can be different in CML stem and progenitor cells. Altogether, the mechanisms of the involvement of BCR-ABL1 in ROS signaling can be engaged in CML progression and TKI-resistance and warrant further study.
机译:慢性骨髓白血病(CML)来自T(9; 22)的往复染色体易位产生BCR-ABL1基因,赋予CML细胞中的生长和增殖优势。 CML从慢性,通常无综合征,致命,如果未治疗,致命的慢性,致命。尽管BCR-ABL1在一些信号通路中的参与被认为是CML的原因,但是导致其进展的机制并不完全已知。然而,BCR-ABL1刺激反应性氧物质(ROS)的产生,其水平随CML进展的增加并诱导BCR-ABL1自诱变。将伊马替尼和其他酪氨酸激酶抑制剂(TKIS)引入CML疗法,从根本上改善其结果,但TKIS抵抗成为新兴问题。 TKI电阻可以与甚至更高的ROS生产相关,而不是TKI敏感细胞。因此,ROS诱导的BCR-ABL1的自诱变对于CML进程和TKI抗性至关重要,并且在这种方式中应考虑治疗策略。由于BCR-ABL1的连续生产ROS将导致CML细胞的自毁和死亡,必须有控制这种现象的机制。这些可以依赖于DNA修复,其由BCR-ABL1调节,并且可以在CML茎和祖细胞中不同。完全,BCR-ABL1在ROS信号中的参与的机制可以参与CML进展和TKI抵抗并提供进一步的研究。

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