Fabisiak Timothy, Patel Manisha
Department of Pharmaceutical Sciences, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of Colorado Anschutz Medical Center, Aurora, CO, United States.
Front Cell Dev Biol. 2022 Aug 10;10:976953. doi: 10.3389/fcell.2022.976953. eCollection 2022.
The roles of both neuroinflammation and oxidative stress in the pathophysiology of epilepsy have begun to receive considerable attention in recent years. However, these concepts are predominantly studied as separate entities despite the evidence that neuroinflammatory and redox-based signaling cascades have significant crosstalk. Oxidative post-translational modifications have been demonstrated to directly influence the function of key neuroinflammatory mediators. Neuroinflammation can further be controlled on the transcriptional level as the transcriptional regulators NF-KB and nrf2 are activated by reactive oxygen species. Further, neuroinflammation can induce the increased expression and activity of NADPH oxidase, leading to a highly oxidative environment. These factors additionally influence mitochondria function and the metabolic status of neurons and glia, which are already metabolically stressed in epilepsy. Given the implication of this relationship to disease pathology, this review explores the numerous mechanisms by which neuroinflammation and oxidative stress influence one another in the context of epilepsy. We further examine the efficacy of treatments targeting oxidative stress and redox regulation in animal and human epilepsies in the literature that warrant further investigation. Treatment approaches aimed at rectifying oxidative stress and aberrant redox signaling may enable control of neuroinflammation and improve patient outcomes.
近年来,神经炎症和氧化应激在癫痫病理生理学中的作用开始受到广泛关注。然而,尽管有证据表明神经炎症和基于氧化还原的信号级联存在显著的相互作用,但这些概念主要是作为独立的实体进行研究的。氧化翻译后修饰已被证明可直接影响关键神经炎症介质的功能。由于转录调节因子NF-κB和nrf2可被活性氧激活,神经炎症在转录水平上可进一步得到控制。此外,神经炎症可诱导NADPH氧化酶的表达和活性增加,导致高度氧化的环境。这些因素还会影响线粒体功能以及神经元和神经胶质细胞的代谢状态,而在癫痫中这些细胞已经处于代谢应激状态。鉴于这种关系对疾病病理的影响,本综述探讨了神经炎症和氧化应激在癫痫背景下相互影响的众多机制。我们还进一步研究了文献中针对动物和人类癫痫中氧化应激和氧化还原调节的治疗方法的疗效,这些方法值得进一步研究。旨在纠正氧化应激和异常氧化还原信号的治疗方法可能有助于控制神经炎症并改善患者预后。