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神经递质传递:抗癫痫药物开发的新靶点。

Gliotransmission: A Novel Target for the Development of Antiseizure Drugs.

机构信息

Escuela de Medicina, Facultad de Medicina, Universidad de Valparaíso, Valparaíso, Chile.

Servicio de Neurología, Hospital Carlos Van Buren, Valparaíso, Chile.

出版信息

Neuroscientist. 2020 Aug;26(4):293-309. doi: 10.1177/1073858420901474. Epub 2020 Jan 24.

Abstract

For more than a century, epilepsy has remained an incapacitating neurological disorder with a high incidence worldwide. Mesial temporal lobe epilepsy (TLE) is a common type of epilepsy without an effective pharmacological treatment. An increase in excitability and hypersynchrony of electrical neuronal activity during development are typically associated with an excitatory/inhibitory imbalance in the neuronal network. Astrocytes release gliotransmitters, which can regulate neuronal excitability and synaptic transmission; therefore, the classical neurocentric vision of the cellular basis of epileptogenesis has begun to change. Growing evidence suggests that the key contribution of astrocyte-to-neuron signaling in the mechanisms underlies the initiation, propagation, and recurrence of seizure activity. The aim of this review was to summarize current evidence obtained from experimental models that suggest how alterations in astroglial modulation of synaptic transmission and neuronal activity contribute to the development of this brain disease. In this article, we will summarize the main pharmacological, Ca-imaging, and electrophysiological findings in the gliotransmitter-mediated modulation of neuronal activity and their possible regulation as a novel cellular target for the development of pharmacological strategies for treating refractory epilepsies.

摘要

一个多世纪以来,癫痫仍然是一种使人丧失能力的神经系统疾病,在全球范围内发病率很高。内侧颞叶癫痫(TLE)是一种常见的癫痫类型,目前尚无有效的药物治疗方法。在发育过程中,兴奋性增加和电神经元活动的过度同步通常与神经元网络中的兴奋/抑制失衡有关。星形胶质细胞释放神经胶质递质,可调节神经元兴奋性和突触传递;因此,癫痫发生的细胞基础的经典神经中心观点开始发生变化。越来越多的证据表明,星形胶质细胞-神经元信号在启动、传播和复发癫痫活动的机制中起着关键作用。本综述的目的是总结从实验模型中获得的当前证据,这些证据表明星形胶质细胞对突触传递和神经元活动的调节改变如何导致这种脑部疾病的发展。在本文中,我们将总结神经胶质递质介导的神经元活动调制的主要药理学、Ca 成像和电生理学发现,及其作为开发治疗难治性癫痫的药理学策略的新型细胞靶标的可能调节。

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