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The Role of Nrf2 signaling in cancer stem cells: From stemness and self-renewal to tumorigenesis and chemoresistance

机译:NRF2信号传导在癌症干细胞中的作用:从茎秆和自我更新到肿瘤引发和化学性

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Cancer stem cells (CSCs) are subpopulation of tumor mass with exclusive abilities in self-renewing, stemness maintaining, and differentiation into the various non-stem cancer cells to provoke tumorigenesis, metastasis dissemination, drug-resistant, and cancer recurrence. Reactive oxygen species (ROS) impair cellular function by oxidizing cell components containing proteins, lipids, and DNA. Tumor oxidant status is elevated due to high metabolic activity under influence of abnormal growth factors, cytokines and function ROS-producing enzymes, including nitric oxide synthases, cyclooxygenases, and lipoxygenases. Nuclear factor-erythroid 2-related factor 2 (NRF2) is a transcriptional master regulator element which is believed to recognize cellular oxidative stress followed by binding to promoter of cyto-protective and anti-oxidative genes to maintain cellular redox status through promoting antioxidant response participants (glutathione peroxidase, glutathione reductase, thioredoxin reductase, ferritin, NADPH: quinone oxidoreductase 1). However, Nrf2 signaling protects malignant cells from ROS damage against tumor growth and chemoresistance. In addition, Nrf2 is able to participate in differentiation of certain stem cells by modulating autophagy procedure, also NRF2 provokes DNA damage response and facilitates drug metabolism and drug resistance by controlling of downstream enzyme and transporter members. In this review, we discuss the role of NRF2 in stemness, self-renewal ability, tumorigenesis and chemoresistance of CSCs.
机译:癌症干细胞(CSCs)是肿瘤质量的亚群,具有自我更新,茎保持和分化为各种非茎癌细胞的分化,以引发肿瘤瘤,转移传播,抗药性和癌症复发。反应性氧物种(ROS)通过氧化含有蛋白质,脂质和DNA的细胞组分损害细胞功能。由于异常生长因子,细胞因子和功能ROS的酶的影响,肿瘤氧化剂状态升高,包括一氧化氮合成酶,环氧化酶和脂氧合酶。核因子 - 红细胞2相关系数2(NRF2)是一种转录母稳压器元件,其被认为识别细胞氧化应激,然后通过促进抗氧化反应参与者来维持细胞氧化还原状态。通过促进抗氧化反应参与者来维持细胞氧化还原状态(谷胱甘肽过氧化物酶,谷胱甘肽还原酶,硫氧吡啶还原酶,铁蛋白,NADPH:醌氧化还原酶1)。然而,NRF2信号传导保护来自ROS损伤的恶性细胞免受肿瘤生长和化学性的影响。另外,NRF2能够通过调节自噬程序参与某些干细胞的分化,并且NRF2引起DNA损伤反应,并通过控制下游酶和转运蛋白来促进药物代谢和耐药性。在本综述中,我们讨论了NRF2在CSCs的茎秆,自我更新能力,肿瘤瘤和化学血管内的作用。

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