首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Role of NADPH oxidase in arsenic-induced reactive. oxygen species formation and cytotoxicity in myeloid leukemia cells
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Role of NADPH oxidase in arsenic-induced reactive. oxygen species formation and cytotoxicity in myeloid leukemia cells

机译:NADPH氧化酶在砷诱导的反应性中的作用。髓样白血病细胞中氧的形成和细胞毒性

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Arsenic has played a key medicinal role against a variety of ailments for several millennia, but during the past century its prominence has been displaced by modern therapeutics. Recently, attention has been drawn to arsenic by its dramatic clinical efficacy against acute promyelocytic leukemia. Although toxic reactive oxygen species (ROS) induced in cancer cells exposed to arsenic could mediate cancer cell death, how arsenic induces ROS remains undefined. Through the use of gene expression profiling, interference RNA, and genetically engineered cells, we report here that NADPH oxidase, an enzyme complex required for the normal antibacterial function of white blood cells, is the main target of arsenic-induced ROS production. Because NADPH oxidase enzyme activity can also be stimulated by phorbol myristate acetate, a synergism between arsenic and the clinically used phorbol myristate acetate analog, bryostatin 1, through enhanced ROS production can be expected. We show that this synergism exists, and that the use of very low doses of both arsenic and bryostatin 1 can effectively kill leukemic cells. Our findings pinpoint the arsenic target of ROS production and provide a conceptual basis for an anticancer regimen. [References: 38]
机译:几千年来,砷对多种疾病起着关键的医学作用,但在过去的一个世纪中,砷已被现代治疗方法所取代。近来,砷通过其对急性早幼粒细胞白血病的惊人临床疗效已引起人们的关注。尽管在暴露于砷的癌细胞中诱导产生的有毒活性氧(ROS)可以介导癌细胞的死亡,但砷如何诱导ROS仍然不确定。通过使用基因表达谱,干扰RNA和基因工程细胞,我们在此报告NADPH氧化酶是白细胞正常抗菌功能所需的酶复合物,是砷诱导的ROS产生的主要目标。由于乙酸佛豆蔻肉豆蔻酸酯也可以刺激NADPH氧化酶酶的活性,因此可以预期砷和临床使用的佛波肉豆蔻酸酯乙酸酯类似物bryostatin 1之间的协同作用,可以提高ROS的产生。我们表明存在这种协同作用,并且使用非常低剂量的砷和溴代他汀1均可有效杀死白血病细胞。我们的发现查明了ROS产生的砷靶标,并为抗癌方案提供了概念基础。 [参考:38]

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