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Redox-Related Neuronal Death and Crosstalk as Drug Targets: Focus on Epilepsy

机译:氧化还原相关的神经元死亡和串扰作为药物的目标:集中在癫痫症。

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Cell death has a vital role in embryonic development and organismal homeostasis. Biochemical, pharmacological, behavioral and electrophysiological evidences support the idea that dysregulation of cell death programs are involved in neuropathological conditions like epilepsy. The brain is particularly vulnerable to oxidative damage due to higher oxygen consumption and lower endogenous antioxidant defense than other bodily organ. Thus, in this review, we focused on the comprehensive summarization of evidence for redox-associated cell death pathways including apoptosis, autophagy, necroptosis and pyroptosis in epilepsy and the oxidative stress-related signaling in this process. We specially proposed that the molecular crosstalk of various redox-linked neuronal cell death modalities might occur in seizure onset and/or epileptic conditions according to the published data. Additionally, abundance of polyunsaturated fatty acids in neuronal membrane makes the brain susceptible to lipid peroxidation. This presumption was then formalized in the proposal that ferroptosis, a novel type of lipid reactive oxygen species (ROS)-dependent regulatory cell death, is likely to be a critical mechanism for the emergence of epileptic phenotype. Targeting ferroptosis process or combination treatment with multiple cell death pathway inhibitors may shed new light on the therapy of epilepsy.
机译:细胞死亡在胚胎发育和生物体内平衡中起着至关重要的作用。生化,药理,行为和电生理学证据支持这样的观点,即细胞死亡程序失调与癫痫等神经病理疾病有关。由于比其他身体器官消耗更多的氧气和更低的内源性抗氧化剂防御能力,大脑尤其容易受到氧化损伤。因此,在这篇综述中,我们集中于氧化还原相关的细胞死亡途径的证据的综合总结,包括在该过程中癫痫中的凋亡,自噬,坏死性坏死和发烧以及与氧化应激相关的信号传导。我们特别提出,根据已公布的数据,在癫痫发作和/或癫痫病发作中可能发生各种氧化还原相关的神经元细胞死亡方式的分子串扰。另外,神经元膜中丰富的多不饱和脂肪酸会使大脑容易发生脂质过氧化。然后,这一假设在提议中正式化了,即铁线虫病是一种新型的脂质反应性氧(ROS)依赖性调节性细胞死亡,可能是癫痫表型出现的关键机制。靶向肥大病的过程或与多种细胞死亡途径抑制剂的联合治疗可能为癫痫的治疗提供新的思路。

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