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癌症治疗中的氧化还原态势靶向治疗

Targeting the Redox Landscape in Cancer Therapy.

作者信息

Narayanan Dilip, Ma Sana, Özcelik Dennis

机构信息

Department of Drug Design and Pharmacology, University of Copenhagen, Universitetsparken 2, 2100 Copenhagen, Denmark.

current address: Chemistry | Biology | Pharmacy Information Center, ETH Zürich, Vladimir-Prelog-Weg 10, 8093 Zürich, Switzerland.

出版信息

Cancers (Basel). 2020 Jun 27;12(7):1706. doi: 10.3390/cancers12071706.

Abstract

Reactive oxygen species (ROS) are produced predominantly by the mitochondrial electron transport chain and by NADPH oxidases in peroxisomes and in the endoplasmic reticulum. The antioxidative defense counters overproduction of ROS with detoxifying enzymes and molecular scavengers, for instance, superoxide dismutase and glutathione, in order to restore redox homeostasis. Mutations in the redox landscape can induce carcinogenesis, whereas increased ROS production can perpetuate cancer development. Moreover, cancer cells can increase production of antioxidants, leading to resistance against chemo- or radiotherapy. Research has been developing pharmaceuticals to target the redox landscape in cancer. For instance, inhibition of key players in the redox landscape aims to modulate ROS production in order to prevent tumor development or to sensitize cancer cells in radiotherapy. Besides the redox landscape of a single cell, alternative strategies take aim at the multi-cellular level. Extracellular vesicles, such as exosomes, are crucial for the development of the hypoxic tumor microenvironment, and hence are explored as target and as drug delivery systems in cancer therapy. This review summarizes the current pharmaceutical and experimental interventions of the cancer redox landscape.

摘要

活性氧(ROS)主要由线粒体电子传递链以及过氧化物酶体和内质网中的NADPH氧化酶产生。抗氧化防御通过解毒酶和分子清除剂(例如超氧化物歧化酶和谷胱甘肽)来对抗ROS的过量产生,以恢复氧化还原稳态。氧化还原格局中的突变可诱发癌变,而ROS产生增加可使癌症发展持续下去。此外,癌细胞可增加抗氧化剂的产生,从而导致对化学疗法或放射疗法产生抗性。研究一直在开发针对癌症氧化还原格局的药物。例如,抑制氧化还原格局中的关键参与者旨在调节ROS的产生,以预防肿瘤发展或使癌细胞对放射治疗敏感。除了单细胞的氧化还原格局外,替代策略还针对多细胞水平。细胞外囊泡,如外泌体,对缺氧肿瘤微环境的发展至关重要,因此被探索作为癌症治疗的靶点和药物递送系统。本综述总结了目前针对癌症氧化还原格局的药物和实验干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c88e/7407119/2a4cead8ad4a/cancers-12-01706-g001.jpg

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