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Inhibition of NADPH Oxidases Activity by Diphenyleneiodonium Chloride as a Mechanism of Senescence Induction in Human Cancer Cells

机译:氯化二苯基碘碘氯化物作为人癌细胞衰老诱导机制的抑制NADPH氧化酶活性

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摘要

NADPH oxidases (NOX) are commonly expressed ROS-producing enzymes that participate in the regulation of many signaling pathways, which influence cell metabolism, survival, and proliferation. Due to their high expression in several different types of cancer it was postulated that NOX promote tumor progression, growth, and survival. Thus, the inhibition of NOX activity was considered to have therapeutic potential. One of the possible outcomes of anticancer therapy, which has recently gained much interest, is cancer cell senescence. The induction of senescence leads to prolonged inhibition of proliferation and contributes to tumor growth restriction. The aim of our studies was to investigate the influence of low, non-toxic doses of diphenyleneiodonium chloride (DPI), a potent inhibitor of flavoenzymes including NADPH oxidases, on p53-proficient and p53-deficient HCT116 human colon cancer cells and MCF-7 breast cancer cells. We demonstrated that the temporal treatment of HCT116 and MCF-7 cancer cells (both p53 wild-type) with DPI caused induction of senescence, that was correlated with decreased level of ROS and upregulation of p53/p21 proteins. On the contrary, in the case of p53−/− HCT116 cells, apoptosis was shown to be the prevailing effect of DPI treatment. Thus, our studies provided a proof that inhibiting ROS production, and by this means influencing ROS sensitive pathways, remains an alternative strategy to facilitate so called therapy-induced senescence in cancers.
机译:NADPH氧化酶(NOx)通常表达了参与许多信号通路调节的ROS的酶,其影响细胞代谢,存活和增殖。由于它们在几种不同类型的癌症中表达了高表达,因此假设NOx促进肿瘤进展,生长和生存。因此,认为NOx活性的抑制具有治疗潜力。最近获得了很多兴趣的抗癌治疗的可能结果之一是癌细胞衰老。衰老诱导导致长期抑制增殖,有助于肿瘤生长限制。我们的研究目的是探讨低,无毒剂量的二苯内碘鎓氯化氢(DPI),一种有效抑制剂,包括NADPH氧化酶,包括NADPH氧化酶的效率抑制剂,对P53-精通和P53缺陷的HCT116人结肠癌细胞和MCF-7乳腺癌细胞。我们证明,HCT116和MCF-7癌细胞(P53野生型P53野生型)与DPI的诱导引起的衰老,与ROS降低和P53 / P21蛋白的上调相关的诱导。相反,在P53 - / - HCT116细胞的情况下,凋亡被证明是DPI治疗的普遍效应。因此,我们的研究提供了一种抑制ROS生产的证据,并且通过这种影响影响ROS敏感途径,仍然是促进癌症中所谓治疗衰老的替代策略。

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