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氧化还原调节NRF2:癌症干细胞抗性的潜在介质

Redox Modulating NRF2: A Potential Mediator of Cancer Stem Cell Resistance.

作者信息

Ryoo In-geun, Lee Sang-hwan, Kwak Mi-Kyoung

机构信息

College of Pharmacy, The Catholic University of Korea, Bucheon, Gyeonggi-do 420-743, Republic of Korea.

出版信息

Oxid Med Cell Longev. 2016;2016:2428153. doi: 10.1155/2016/2428153. Epub 2015 Nov 22.

Abstract

Tumors contain a distinct small subpopulation of cells that possess stem cell-like characteristics. These cells have been called cancer stem cells (CSCs) and are thought to be responsible for anticancer drug resistance and tumor relapse after therapy. Emerging evidence indicates that CSCs share many properties, such as self-renewal and quiescence, with normal stem cells. In particular, CSCs and normal stem cells retain low levels of reactive oxygen species (ROS), which can contribute to stem cell maintenance and resistance to stressful tumor environments. Current literatures demonstrate that the activation of ataxia telangiectasia mutated (ATM) and forkhead box O3 (FoxO3) is associated with the maintenance of low ROS levels in normal stem cells such as hematopoietic stem cells. However, the importance of ROS signaling in CSC biology remains poorly understood. Recent studies demonstrate that nuclear factor-erythroid 2-related factor 2 (NRF2), a master regulator of the cellular antioxidant defense system, is involved in the maintenance of quiescence, survival, and stress resistance of CSCs. Here, we review the recent findings on the roles of NRF2 in maintenance of the redox state and multidrug resistance in CSCs, focusing on how NRF2-mediated ROS modulation influences the growth and resistance of CSCs.

摘要

肿瘤包含一小群具有干细胞样特征的独特细胞。这些细胞被称为癌症干细胞(CSCs),被认为是抗癌药物耐药性和治疗后肿瘤复发的原因。新出现的证据表明,CSCs与正常干细胞具有许多共同特性,如自我更新和静止。特别是,CSCs和正常干细胞保持低水平的活性氧(ROS),这有助于干细胞维持和抵抗应激性肿瘤环境。目前的文献表明,共济失调毛细血管扩张症突变(ATM)和叉头框O3(FoxO3)的激活与造血干细胞等正常干细胞中低ROS水平的维持有关。然而,ROS信号在CSC生物学中的重要性仍知之甚少。最近的研究表明,核因子红系2相关因子2(NRF2)是细胞抗氧化防御系统的主要调节因子,参与CSCs的静止、存活和应激抵抗的维持。在此,我们综述了NRF2在维持CSCs氧化还原状态和多药耐药性方面的最新研究结果,重点关注NRF2介导的ROS调节如何影响CSCs的生长和耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c350/4670665/d36795cd9483/OMCL2016-2428153.001.jpg

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