The dual role of Nrf2 in melanoma: a systematic review.

IF 2.4 3区 生物学 Q4 CELL BIOLOGY BMC Molecular and Cell Biology Pub Date : 2023-02-06 DOI:10.1186/s12860-023-00466-5
Zahra Malakoutikhah, Zahra Mohajeri, Nasim Dana, Shaghayegh Haghjooy Javanmard
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Abstract

Melanoma is the most lethal type of skin cancer that originates from the malignant transformation of melanocytes. Although novel treatments have improved patient survival in melanoma, the overall prognosis remains poor. To improve current therapies and patients outcome, it is necessary to identify the influential elements in the development and progression of melanoma.Due to UV exposure and melanin synthesis, the melanocytic lineage seems to have a higher rate of ROS (reactive oxygen species) formation. Melanoma has been linked to an increased oxidative state, and all facets of melanoma pathophysiology rely on redox biology. Several redox-modulating pathways have arisen to resist oxidative stress. One of which, the Nrf2 (nuclear factor erythroid 2-related factor 2), has been recognized as a master regulator of cellular response to oxidative or electrophilic challenges. The activation of Nrf2 signaling causes a wide range of antioxidant and detoxification enzyme genes to be expressed. As a result, this transcription factor has lately received a lot of interest as a possible cancer treatment target.On the other hand, Nrf2 has been found to have a variety of activities in addition to its antioxidant abilities, constant Nrf2 activation in malignant cells may accelerate metastasis and chemoresistance. Hence, based on the cell type and context, Nrf2 has different roles in either preventing or promoting cancer. In this study, we aimed to systematically review all the studies discussing the function of Nrf2 in melanoma and the factors determining its alteration.

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Nrf2 在黑色素瘤中的双重作用:系统综述。
黑色素瘤是最致命的皮肤癌类型,它源于黑色素细胞的恶性转化。虽然新疗法提高了黑色素瘤患者的生存率,但总体预后仍然不佳。由于紫外线照射和黑色素的合成,黑色素细胞系的 ROS(活性氧)形成率似乎较高。黑色素瘤与氧化状态增加有关,黑色素瘤病理生理学的所有方面都依赖于氧化还原生物学。为了抵御氧化应激,出现了几种氧化还原调节途径。其中之一是 Nrf2(红细胞核因子 2 相关因子 2),它已被认为是细胞应对氧化或亲电挑战的主调节器。Nrf2 信号的激活会导致多种抗氧化和解毒酶基因的表达。另一方面,Nrf2 除了具有抗氧化能力外,还被发现具有多种活性,恶性细胞中 Nrf2 的持续激活可能会加速转移和化疗耐药性。因此,根据细胞类型和环境的不同,Nrf2 在预防或促进癌症方面发挥着不同的作用。在本研究中,我们旨在系统地回顾所有讨论 Nrf2 在黑色素瘤中的功能以及决定其改变的因素的研究。
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来源期刊
BMC Molecular and Cell Biology
BMC Molecular and Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.50
自引率
0.00%
发文量
46
审稿时长
27 weeks
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