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首页> 外文期刊>The Journal of Physiology >Cortical inhibition, pH and cell excitability in epilepsy: what are optimal targets for antiepileptic interventions?
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Cortical inhibition, pH and cell excitability in epilepsy: what are optimal targets for antiepileptic interventions?

机译:癫痫中的皮质抑制,pH和细胞兴奋性:抗癫痫干预的最佳目标是什么?

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摘要

Epilepsy is characterised by the propensity of the brain to generate spontaneous recurrent bursts of excessive neuronal activity, seizures. GABA-mediated inhibition is critical for restraining neuronal excitation in the brain, and therefore potentiation of GABAergic neurotransmission is commonly used to prevent seizures. However, data obtained in animal models of epilepsy and from human epileptic tissue suggest that GABA-mediated signalling contributes to interictal and ictal activity. Prolonged activation of GABAA receptors during epileptiform bursts may even initiate a shift in GABAergic neurotransmission from inhibitory to excitatory and so have a proconvulsant action. Direct targeting of the membrane mechanisms that reduce spiking in glutamatergic neurons may better control neuronal excitability in epileptic tissue. Manipulation of brain pH may be a promising approach and recent advances in gene therapy and optogenetics seem likely to provide further routes to effective therapeutic intervention.
机译:癫痫表征了大脑的倾向,以产生过量的神经元活动,癫痫发作的自发性复发性爆发。 GABA介导的抑制对于抑制大脑中的神经元激发至关重要,因此常用于Gabaergic神经递血的增强来防止癫痫发作。然而,在癫痫癫痫和人癫痫组织的动物模型中获得的数据表明GABA介导的信号传导有助于嵌入和ICTAL活性。在癫痫脉冲串期间长期激活GABAA受体可能甚至可以从抑制作用兴奋​​性抑制肠道血管血管血管血管血液血管血管血液中的转变,因此具有ProconVeultant作用。直接靶向减少谷氨酸神经元尖峰的膜机制可以更好地控制癫痫组织中的神经元兴奋性。脑pH的操纵可能是一个有希望的方法,最近基因治疗和视神经学的进步似乎可能提供有效的治疗干预的进一步途径。

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