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Teaching the basics of reactive oxygen species and their relevance to cancer biology: Mitochondrial reactive oxygen species detection redox signaling and targeted therapies

机译:教授活性氧种类的基础知识及其与癌症生物学的关系:线粒体活性氧种类检测氧化还原信号传导和靶向疗法

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摘要

Reactive oxygen species (ROS) have been implicated in tumorigenesis (tumor initiation, tumor progression, and metastasis). Of the many cellular sources of ROS generation, the mitochondria and the NADPH oxidase family of enzymes are possibly the most prevalent intracellular sources. In this article, we discuss the methodologies to detect mitochondria-derived superoxide and hydrogen peroxide using conventional probes as well as newly developed assays and probes, and the necessity of characterizing the diagnostic marker products with HPLC and LC-MS in order to rigorously identify the oxidizing species. The redox signaling roles of mitochondrial ROS, mitochondrial thiol peroxidases, and transcription factors in response to mitochondria-targeted drugs are highlighted. ROS generation and ROS detoxification in drug-resistant cancer cells and the relationship to metabolic reprogramming are discussed. Understanding the subtle role of ROS in redox signaling and in tumor proliferation, progression, and metastasis as well as the molecular and cellular mechanisms (e.g., autophagy) could help in the development of combination therapies. The paradoxical aspects of antioxidants in cancer treatment are highlighted in relation to the ROS mechanisms in normal and cancer cells. Finally, the potential uses of newly synthesized exomarker probes for in vivo superoxide and hydrogen peroxide detection and the low-temperature electron paramagnetic resonance technique for monitoring oxidant production in tumor tissues are discussed.
机译:活性氧(ROS)与肿瘤发生有关(肿瘤发生,肿瘤进展和转移)。在许多ROS产生的细胞来源中,线粒体和NADPH氧化酶家族的酶可能是最普遍的细胞内来源。在本文中,我们将讨论使用常规探针以及新开发的测定法和探针检测线粒体来源的超氧化物和过氧化氢的方法,以及使用HPLC和LC-MS表征诊断标记产品的必要性,以便严格鉴定氧化物质。强调了线粒体ROS,线粒体硫醇过氧化物酶和转录因子对线粒体靶向药物的氧化还原信号作用。讨论了耐药癌细胞中ROS的产生和ROS解毒以及与代谢重编程的关系。了解ROS在氧化还原信号传导,肿瘤增殖,进展和转移以及分子和细胞机制(例如自噬)中的微妙作用可能有助于联合疗法的发展。与正常细胞和癌细胞中的ROS机理相关,突出了抗氧化剂在癌症治疗中的矛盾之处。最后,讨论了新合成的exomarker探针在体内超氧化物和过氧化氢检测中的潜在用途以及用于监测肿瘤组织中氧化剂产生的低温电子顺磁共振技术。

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