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Redox Regulation of Multidrug Resistance in Cancer Chemotherapy: Molecular Mechanisms and Therapeutic Opportunities

机译:癌症化疗中多药耐药性的氧化还原调节:分子机制和治疗机会

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摘要

The development of multidrug resistance to cancer chemotherapy is a major obstacle to the effective treatment of human malignancies. It has been established that membrane proteins, notably multidrug resistance (MDR), multidrug resistance protein (MRP), and breast cancer resistance protein (BCRP) of the ATP binding cassette (ABC) transporter family encoding efflux pumps, play important roles in the development of multidrug resistance. Overexpression of these transporters has been observed frequently in many types of human malignancies and correlated with poor responses to chemotherapeutic agents. Evidence has accumulated showing that redox signals are activated in response to drug treatments that affect the expression and activity of these transporters by multiple mechanisms, including (a) conformational changes in the transporters, (b) regulation of the biosynthesis cofactors required for the transporter's function, (c) regulation of the expression of transporters at transcriptional, posttranscriptional, and epigenetic levels, and (d) amplification of the copy number of genes encoding these transporters. This review describes various specific factors and their relevant signaling pathways that are involved in the regulation. Finally, the roles of redox signaling in the maintenance and evolution of cancer stem cells and their implications in the development of intrinsic and acquired multidrug resistance in cancer chemotherapy are discussed. Antioxid. Redox Signal. 11, 99–133.
机译:对癌症化学疗法的多药耐药性的发展是有效治疗人类恶性肿瘤的主要障碍。已经确定,膜蛋白,特别是编码外排泵的ATP结合盒(ABC)转运蛋白家族的多药抗性(MDR),多药抗性蛋白(MRP)和乳腺癌抗性蛋白(BCRP),在开发中起着重要作用。多药耐药性。在许多类型的人类恶性肿瘤中经常观察到这些转运蛋白的过度表达,并且与对化疗药物的不良反应有关。已有证据表明,氧化还原信号是通过多种机制影响这些转运蛋白表达和活性的药物处理而被激活的,这些机制包括(a)转运蛋白的构象变化,(b)调节转运蛋白功能所需的生物合成辅因子,(c)在转录,转录后和表观遗传水平上调节转运蛋白的表达,以及(d)扩增编码这些转运蛋白的基因的拷贝数。这篇综述描述了调控中涉及的各种特定因素及其相关的信号传导途径。最后,讨论了氧化还原信号在癌症干细胞的维持和进化中的作用及其在癌症化学疗法内源性和获得性多药耐药性发展中的意义。抗氧化。氧化还原信号。 11、99–133。

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    Kuo, Macus Tien;

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  • 年度 2009
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