Catanzaro Elena, Calcabrini Cinzia, Turrini Eleonora, Sestili Piero, Fimognari Carmela
a Department for Life Quality Studies , Alma Mater Studiorum-University of Bologna , Rimini , Italy.
b Department of Biomolecular Sciences , University of Urbino Carlo Bo , Urbino , Italy.
Expert Opin Ther Targets. 2017 Aug;21(8):781-793. doi: 10.1080/14728222.2017.1351549. Epub 2017 Jul 10.
Nuclear factor (erythroid-derived-2)-like 2 is one of the most efficient cytoprotective rheostats against exogenous or endogenous oxidative insults. At present, the modulation of the Nrf2 pathway represents an interesting and highly explored strategy in the oncological area. Area covered: In this review, we present and discuss the different modulation of the Nrf2 pathway by some natural compounds with a well demonstrated anticancer activity, and critically analyze the challenges associated with the development of an Nrf2-based anticancer strategy. Expert opinion: Many natural compounds with a well-defined anticancer activity are able to modulate this pathway. Both Nrf2 inducers and inhibitors can be useful as anticancer strategy. However, since Nrf2 modulates many networks potentially involved in the detoxification process of anticancer drugs, its activation in cancer cells could lead to chemoresistance. The switch between a beneficial or detrimental role of Nrf2 in cancer cells essentially depends on the tight control of its activity, the specific conditions of tumor microenvironment, and cell type. In line with the paucity of clear data related to the mechanisms underpinning the role of Nrf2 in cancer development and chemoresistance, discovery and development of Nrf2-based strategies is one of the most critical and challenging assignments for fighting cancers.
核因子(红系衍生-2)样2是对外源性或内源性氧化损伤最有效的细胞保护变阻器之一。目前,Nrf2通路的调节是肿瘤学领域一个有趣且备受探索的策略。涵盖领域:在本综述中,我们展示并讨论了一些具有明确抗癌活性的天然化合物对Nrf2通路的不同调节作用,并批判性地分析了基于Nrf2的抗癌策略开发所面临的挑战。专家观点:许多具有明确抗癌活性的天然化合物能够调节该通路。Nrf2诱导剂和抑制剂都可作为抗癌策略。然而,由于Nrf2调节许多可能参与抗癌药物解毒过程的网络,其在癌细胞中的激活可能导致化疗耐药性。Nrf2在癌细胞中有益或有害作用的转变本质上取决于对其活性的严格控制、肿瘤微环境的特定条件以及细胞类型。鉴于与Nrf2在癌症发展和化疗耐药性中作用的潜在机制相关的明确数据匮乏,基于Nrf2的策略的发现和开发是对抗癌症最关键和最具挑战性的任务之一。