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压力小,成效高?手术诱导氧化应激的肿瘤学意义。

Less stress, more success? Oncological implications of surgery-induced oxidative stress.

机构信息

Department of Academic Surgery, Cork University Hospital, Cork, Ireland.

出版信息

Gut. 2013 Mar;62(3):461-70. doi: 10.1136/gutjnl-2011-300948. Epub 2011 Dec 6.

Abstract

Reactive oxygen species (ROS) possess important cell signalling properties. This contradicts traditional thought which associated ROS activity with cell death. Emerging evidence clearly demonstrates that ROS signalling acts as a key regulator in tumour cell survival and in the cellular processes required for tumour cells to successfully metastasise and proliferate. The discovery of the nicotinamide adenine dinucleotide phosphate (NADPH) oxidase (Nox) family of enzymes in the last decade has unravelled much of the mystery surrounding how ROS are generated. Tumour cells are now known to express Nox enzymes which produce ROS required for cellular signalling. Activation of Nox enzymes occurs via interaction with proinflammatory cytokines and growth factors, all of which are released following surgical trauma. As our understanding of the signalling capabilities of ROS grows, the oncological implications of ROS activity are gradually being revealed. Nox-derived ROS are known to play a central role in each step of the metastatic cascade including invasion, adhesion, angiogenesis and proliferation. This article describes how surgery creates a ROS-rich environment, which facilitates redox signalling, and also examines the role played by Nox enzymes in this process. The authors then explore current knowledge of the oncological implications of surgery-induced redox signalling, and discuss current and future therapeutic strategies targeted at ROS and Nox enzymes in cancer patients.

摘要

活性氧(ROS)具有重要的细胞信号特性。这与将 ROS 活性与细胞死亡相关联的传统观念相矛盾。新出现的证据清楚地表明,ROS 信号作为肿瘤细胞存活的关键调节剂,并在肿瘤细胞成功转移和增殖所需的细胞过程中起作用。在过去十年中,烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶(Nox)酶家族的发现揭示了许多关于 ROS 如何产生的奥秘。现在已知肿瘤细胞表达 Nox 酶,这些酶产生细胞信号所需的 ROS。Nox 酶的激活是通过与促炎细胞因子和生长因子相互作用发生的,所有这些细胞因子在手术创伤后都会释放。随着我们对 ROS 信号能力的理解不断加深,ROS 活性的肿瘤学意义逐渐显现出来。众所周知,Nox 衍生的 ROS 在转移级联的每一步中都起着核心作用,包括侵袭、黏附、血管生成和增殖。本文描述了手术如何创造富含 ROS 的环境,从而促进氧化还原信号,还研究了 Nox 酶在这一过程中所起的作用。然后,作者探讨了手术诱导的氧化还原信号对肿瘤学的影响的现有知识,并讨论了针对癌症患者的 ROS 和 Nox 酶的当前和未来治疗策略。

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