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KEAP1 抑制具有神经保护作用,并抑制癫痫的发展。

KEAP1 inhibition is neuroprotective and suppresses the development of epilepsy.

机构信息

UCL Institute of Neurology, University College London, Queen Square, London WC1N, UK.

Jacqui Wood Cancer Centre, Division of Cancer Research, School of Medicine, University of Dundee, Dundee, Scotland, UK.

出版信息

Brain. 2018 May 1;141(5):1390-1403. doi: 10.1093/brain/awy071.

Abstract

Hippocampal sclerosis is a common acquired disease that is a major cause of drug-resistant epilepsy. A mechanism that has been proposed to lead from brain insult to hippocampal sclerosis is the excessive generation of reactive oxygen species, and consequent mitochondrial failure. Here we use a novel strategy to increase endogenous antioxidant defences using RTA 408, which we show activates nuclear factor erythroid 2-related factor 2 (Nrf2, encoded by NFE2L2) through inhibition of kelch like ECH associated protein 1 (KEAP1) through its primary sensor C151. Activation of Nrf2 with RTA 408 inhibited reactive oxygen species production, mitochondrial depolarization and cell death in an in vitro model of seizure-like activity. RTA 408 given after status epilepticus in vivo increased ATP, prevented neuronal death, and dramatically reduced (by 94%) the frequency of late spontaneous seizures for at least 4 months following status epilepticus. Thus, acute KEAP1 inhibition following status epilepticus exerts a neuroprotective and disease-modifying effect, supporting the hypothesis that reactive oxygen species generation is a key event in the development of epilepsy.

摘要

海马硬化是一种常见的获得性疾病,是耐药性癫痫的主要原因。据认为,导致大脑损伤进而导致海马硬化的机制是活性氧的过度产生,以及随后的线粒体衰竭。在这里,我们使用一种新的策略来通过抑制 kelch 样 ECH 相关蛋白 1 (KEAP1) 来增加内源性抗氧化防御,从而激活核因子红细胞 2 相关因子 2 (Nrf2,由 NFE2L2 编码) ,通过其主要传感器 C151。用 RTA 408 激活 Nrf2 可抑制体外癫痫样活动模型中的活性氧产生、线粒体去极化和细胞死亡。体内癫痫持续状态后给予 RTA 408 可增加 ATP,防止神经元死亡,并显著减少(减少 94%)癫痫持续状态后至少 4 个月的晚期自发性癫痫发作频率。因此,癫痫持续状态后急性 KEAP1 抑制具有神经保护和疾病修饰作用,支持活性氧产生是癫痫发生的关键事件的假说。

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