UCL Institute of Neurology, University College London, Queen Square, WC1N 3BG London, UK.
Neuropharmacology. 2013 Jun;69:96-104. doi: 10.1016/j.neuropharm.2012.05.012. Epub 2012 May 30.
Seizure activity can lead to energy failure and neuronal injury, resulting in neurological and cognitive sequelae. Moreover, mutations affecting genes encoding for proteins that maintain energy homeostasis within the cell often result in an epileptic phenotype, implying that energy failure can contribute to epileptogenesis. Indeed, there is evidence to indicate that the efficacy of the ketogenic diet, a treatment for refractory epilepsy, can be partly explained by its effect on increasing energetic substrates. The ATP level, reflecting the energy level of a cell, is maintained by the potential gradient across the mitochondrial membrane. This potential gradient is maintained by NADH/H(+) equivalents, produced by reactions within the tricarboxylic acid cycle (TCA-cycle). Anaplerosis, the replenishment of TCA-cycle substrates, therefore represents an appealing strategy to address energy failure such as occurs in seizures. There is accumulating evidence that pyruvate, a classical anaplerotic substrate, has seizure suppressive effects and protects against seizure induced cell death. This review summarizes the evidence for the contribution of TCA cycle deficits in generating seizures. We highlight the role for TCA substrate supplementation in protecting against seizures and seizure induced cell death, and propose that these are important targets for future translational research addressing energy depletion in seizures. This article is part of the Special Issue entitled 'New Targets and Approaches to the Treatment of Epilepsy'.
癫痫发作活动可导致能量衰竭和神经元损伤,进而引起神经和认知后遗症。此外,影响细胞内能量平衡相关蛋白编码基因的突变常导致癫痫表型,这表明能量衰竭可能导致癫痫发生。事实上,有证据表明,生酮饮食治疗耐药性癫痫的疗效部分可通过增加能量底物的作用来解释。细胞的能量水平由跨线粒体膜的势能梯度来维持,该势能梯度由三羧酸循环(TCA 循环)中的反应产生的 NADH/H(+) 等效物来维持。因此,三羧酸循环底物的补充(回补作用)是解决癫痫发作等能量衰竭的一种有吸引力的策略。越来越多的证据表明,丙酮酸作为一种经典的回补底物,具有抑制癫痫发作的作用,并可防止癫痫诱导的细胞死亡。这篇综述总结了 TCA 循环缺陷在引发癫痫发作中的作用。我们强调了 TCA 底物补充在防止癫痫发作和癫痫诱导的细胞死亡中的作用,并提出这些是针对癫痫发作中能量耗竭进行未来转化研究的重要靶点。本文是主题为“癫痫治疗的新靶点和新方法”的特刊的一部分。