Petrikonis Kestutis, Bernatoniene Jurga, Kopustinskiene Dalia M, Casale Roberto, Davinelli Sergio, Saso Luciano
Department of Neurology, Lithuanian University of Health Sciences, Eivenių Str. 2, LT-50009 Kaunas, Lithuania.
Department of Drug Technology and Social Pharmacy, Faculty of Pharmacy, Medical Academy, Lithuanian University of Health Sciences, Sukileliu pr. 13, LT-50161 Kaunas, Lithuania.
Pharmaceutics. 2024 Aug 15;16(8):1068. doi: 10.3390/pharmaceutics16081068.
Neuropathic pain, a chronic condition resulting from nerve injury or dysfunction, presents significant therapeutic challenges and is closely associated with oxidative stress and inflammation, both of which can lead to mitochondrial dysfunction. The nuclear factor erythroid 2-related factor 2 (Nrf2) pathway, a critical cellular defense mechanism against oxidative stress, has emerged as a promising target for neuropathic pain management. Nrf2 modulators enhance the expression of antioxidant and cytoprotective genes, thereby reducing oxidative damage, inflammation, and mitochondrial impairment. This review explores the antinociceptive effects of Nrf2, highlighting how pharmacological agents and natural compounds may be used as potential therapeutic strategies against neuropathic pain. Although preclinical studies demonstrate significant pain reduction and improved nerve function through Nrf2 activation, several clinical challenges need to be addressed. However, emerging clinical evidence suggests potential benefits of Nrf2 modulators in several conditions, such as diabetic neuropathy and multiple sclerosis. Future research should focus on further elucidating the molecular role of Nrf2 in neuropathic pain to optimize its modulation efficacy and maximize clinical utility.
神经性疼痛是一种由神经损伤或功能障碍引起的慢性疾病,带来了重大的治疗挑战,且与氧化应激和炎症密切相关,这两者均可导致线粒体功能障碍。核因子红细胞2相关因子2(Nrf2)通路是一种对抗氧化应激的关键细胞防御机制,已成为神经性疼痛管理的一个有前景的靶点。Nrf2调节剂可增强抗氧化和细胞保护基因的表达,从而减少氧化损伤、炎症和线粒体损伤。本综述探讨了Nrf2的镇痛作用,强调了药物制剂和天然化合物如何可作为对抗神经性疼痛的潜在治疗策略。尽管临床前研究表明通过激活Nrf2可显著减轻疼痛并改善神经功能,但仍有几个临床挑战需要解决。然而,新出现的临床证据表明Nrf2调节剂在多种病症(如糖尿病性神经病变和多发性硬化症)中具有潜在益处。未来的研究应专注于进一步阐明Nrf2在神经性疼痛中的分子作用,以优化其调节效果并最大化临床应用价值。