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神经疾病中NRF2的非亲电激活:非药物策略的治疗前景

Non-Electrophilic Activation of NRF2 in Neurological Disorders: Therapeutic Promise of Non-Pharmacological Strategies.

作者信息

Li Chunyan, Powell Keren, Giliberto Luca, LeDoux Christopher, d'Abramo Cristina, Sciubba Daniel, Al Abed Yousef

机构信息

Translational Brain Research Laboratory, Feinstein Institutes for Medical Research, Manhasset, NY 11030, USA.

Institute of Bioelectronic Medicine, Feinstein Institutes for Medical Research, Manhasset, NY 11030, USA.

出版信息

Antioxidants (Basel). 2025 Aug 25;14(9):1047. doi: 10.3390/antiox14091047.

Abstract

Nuclear factor erythroid 2-related factor 2 (NRF2) serves as a master transcriptional regulator of cellular antioxidant responses through orchestration of cytoprotective gene expression, establishing its significance as a therapeutic target in cerebral pathophysiology. Classical electrophilic NRF2 activators, despite potent activation potential, exhibit paradoxically reduced therapeutic efficacy relative to single antioxidants, attributable to concurrent oxidative stress generation, glutathione depletion, mitochondrial impairment, and systemic toxicity. Although emerging non-electrophilic pharmacological activators offer therapeutic potential, their utility remains limited by bioavailability and suboptimal potency, underscoring the imperative for innovative therapeutic strategies to harness this cytoprotective pathway. Non-pharmacological interventions, including neuromodulation, physical exercise, and lifestyle modifications, activate NRF2 through non-canonical, non-electrophilic pathways involving protein-protein interaction inhibition, KEAP1 degradation, post-translational and transcriptional modulation, and protein stabilization, though mechanistic characterization remains incomplete. Such interventions utilize multi-mechanistic approaches that synergistically integrate multiple non-electrophilic NRF2 pathways or judiciously combine electrophilic and non-electrophilic mechanisms while mitigating electrophile-induced toxicity. This strategy confers neuroprotective effects without the contraindications characteristic of classical electrophilic activators. This review comprehensively examines the mechanistic underpinnings of non-pharmacological NRF2 modulation, highlighting non-electrophilic activation pathways that bypass the limitations inherent to electrophilic activators. The evidence presented herein positions non-pharmacological interventions as viable therapeutic approaches for achieving non-electrophilic NRF2 activation in the treatment of cerebrovascular and neurodegenerative pathologies.

摘要

核因子红细胞2相关因子2(NRF2)通过协调细胞保护基因的表达,作为细胞抗氧化反应的主要转录调节因子,确立了其在脑病理生理学中作为治疗靶点的重要性。经典的亲电NRF2激活剂尽管具有强大的激活潜力,但相对于单一抗氧化剂,其治疗效果却反常地降低,这归因于同时产生的氧化应激、谷胱甘肽耗竭、线粒体损伤和全身毒性。尽管新兴的非亲电药理学激活剂具有治疗潜力,但其效用仍受生物利用度和效力欠佳的限制,这凸显了采用创新治疗策略来利用这一细胞保护途径的紧迫性。非药物干预,包括神经调节、体育锻炼和生活方式改变,通过涉及蛋白质 - 蛋白质相互作用抑制、KEAP1降解、翻译后和转录调节以及蛋白质稳定化的非经典、非亲电途径激活NRF2,尽管其机制表征仍不完整。此类干预采用多机制方法,协同整合多种非亲电NRF2途径,或明智地结合亲电与非亲电机制,同时减轻亲电试剂诱导的毒性。这种策略赋予神经保护作用,而无经典亲电激活剂的禁忌特征。本综述全面研究了非药物NRF2调节的机制基础,突出了绕过亲电激活剂固有局限性的非亲电激活途径。本文提供的证据表明,非药物干预是在治疗脑血管和神经退行性疾病中实现非亲电NRF2激活的可行治疗方法。

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