首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Targeting multiple kinase pathways in leukemic progenitors and stem cells is essential for improved treatment of Ph+ leukemia in mice
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Targeting multiple kinase pathways in leukemic progenitors and stem cells is essential for improved treatment of Ph+ leukemia in mice

机译:靶向白血病祖细胞和干细胞中的多种激酶途径对于改善小鼠Ph +白血病的治疗至关重要

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It is generally believed that shutting down the kinase activity of BCR-ABL by imatinib will completely inhibit its functions, leading to inactivation of its downstream signaling pathways and cure of the disease. Imatinib is highly effective at treating human Philadelphia chromosome-positive (Ph+) chronic myeloid leukemia (CIVIL) in chronic phase but not Ph+ B cell acute lymphoblastic leukemia (B-ALL) and CIVIL blast crisis. We find that SRC kinases activated by BCR-ABL remain fully active in imatinib-treated mouse leukemic cells, suggesting that imatinib does not inactivate all BCR-ABL-activated signaling pathways. This SRC pathway is essential for leukemic cells to survive imatinib treatment and for CIVIL transition to lymphoid blast crisis. Inhibition of both SRC and BCR-ABL kinase activities by dasatinib affords complete B-ALL remission. However, curing B-ALL and CIVIL mice requires killing leukemic stem cells insensitive to both imatinib and dasatinib. Besides BCR-ABL and SRC kinases, stem cell pathways must be targeted for curative therapy of Ph+ leukemia.
机译:一般认为,伊马替尼关闭BCR-ABL的激酶活性将完全抑制其功能,从而导致其下游信号通路失活并治愈该疾病。伊马替尼在治疗慢性阶段的人类费城染色体阳性(Ph +)慢性骨髓性白血病(CIVIL)方面非常有效,但对Ph + B细胞急性淋巴细胞白血病(B-ALL)和CIVIL blast危机无效。我们发现,由BCR-ABL激活的SRC激酶在依马替尼治疗的小鼠白血病细胞中仍然完全活跃,这表明依马替尼不会使所有BCR-ABL激活的信号通路失活。此SRC通路对于白血病细胞在伊马替尼治疗中生存以及CIVIL向淋巴母细胞危机的转化至关重要。达沙替尼同时抑制SRC和BCR-ABL激酶活性可提供完全的B-ALL缓解。但是,治愈B-ALL和CIVIL小鼠需要杀死对伊马替尼和达沙替尼均不敏感的白血病干细胞。除了BCR-ABL和SRC激酶,干细胞途径还必须靶向治疗Ph +白血病。

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