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星形胶质细胞作为癫痫治疗策略的靶点:当前见解

Astrocytes as a target for therapeutic strategies in epilepsy: current insights.

作者信息

Çarçak Nihan, Onat Filiz, Sitnikova Evgenia

机构信息

Department of Pharmacology, Faculty of Pharmacy, Istanbul University, Istanbul, Turkey.

Institute of Health Sciences, Department of Neuroscience, Acibadem Mehmet Ali Aydinlar University, Istanbul, Turkey.

出版信息

Front Mol Neurosci. 2023 Jul 31;16:1183775. doi: 10.3389/fnmol.2023.1183775. eCollection 2023.

Abstract

Astrocytes are specialized non-neuronal glial cells of the central nervous system, contributing to neuronal excitability and synaptic transmission (gliotransmission). Astrocytes play a key roles in epileptogenesis and seizure generation. Epilepsy, as a chronic disorder characterized by neuronal hyperexcitation and hypersynchronization, is accompanied by substantial disturbances of glial cells and impairment of astrocytic functions and neuronal signaling. Anti-seizure drugs that provide symptomatic control of seizures primarily target neural activity. In epileptic patients with inadequate control of seizures with available anti-seizure drugs, novel therapeutic candidates are needed. These candidates should treat epilepsy with anti-epileptogenic and disease-modifying effects. Evidence from human and animal studies shows that astrocytes have value for developing new anti-seizure and anti-epileptogenic drugs. In this review, we present the key functions of astrocytes contributing to neuronal hyperexcitability and synaptic activity following an etiology-based approach. We analyze the role of astrocytes in both development (epileptogenesis) and generation of seizures (ictogenesis). Several promising new strategies that attempted to modify astroglial functions for treating epilepsy are being developed: (1) selective targeting of glia-related molecular mechanisms of glutamate transport; (2) modulation of tonic GABA release from astrocytes; (3) gliotransmission; (4) targeting the astrocytic Kir4.1-BDNF system; (5) astrocytic Na/K/ATPase activity; (6) targeting DNA hypo- or hypermethylation of candidate genes in astrocytes; (7) targeting astrocytic gap junction regulators; (8) targeting astrocytic adenosine kinase (the major adenosine-metabolizing enzyme); and (9) targeting microglia-astrocyte communication and inflammatory pathways. Novel disease-modifying therapeutic strategies have now been developed, such as astroglia-targeted gene therapy with a broad spectrum of genetic constructs to target astroglial cells.

摘要

星形胶质细胞是中枢神经系统中特化的非神经元胶质细胞,对神经元兴奋性和突触传递(胶质传递)有贡献。星形胶质细胞在癫痫发生和发作产生中起关键作用。癫痫作为一种以神经元过度兴奋和超同步化为特征的慢性疾病,伴有胶质细胞的严重紊乱以及星形胶质细胞功能和神经元信号传导的损害。主要提供癫痫发作症状控制的抗癫痫药物主要针对神经活动。在使用现有抗癫痫药物仍无法充分控制癫痫发作的癫痫患者中,需要新的治疗候选药物。这些候选药物应具有抗癫痫发生和疾病修饰作用来治疗癫痫。来自人类和动物研究的证据表明,星形胶质细胞对于开发新的抗癫痫和抗癫痫发生药物具有价值。在本综述中,我们基于病因学方法介绍了星形胶质细胞在导致神经元过度兴奋和突触活动方面的关键功能。我们分析了星形胶质细胞在癫痫发展(癫痫发生)和发作产生(发作形成)中的作用。目前正在开发几种有前景的旨在改变星形胶质细胞功能以治疗癫痫的新策略:(1)选择性靶向与胶质细胞相关的谷氨酸转运分子机制;(2)调节星形胶质细胞的持续性γ-氨基丁酸释放;(3)胶质传递;(4)靶向星形胶质细胞的Kir4.1-脑源性神经营养因子系统;(5)星形胶质细胞的钠/钾/ATP酶活性;(6)靶向星形胶质细胞中候选基因的DNA低甲基化或高甲基化;(7)靶向星形胶质细胞间隙连接调节剂;(8)靶向星形胶质细胞腺苷激酶(主要的腺苷代谢酶);以及(9)靶向小胶质细胞-星形胶质细胞通讯和炎症途径。现在已经开发出了新的疾病修饰治疗策略,例如使用多种基因构建体靶向星形胶质细胞的星形胶质细胞靶向基因疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9480/10423940/be8d4b6fb964/fnmol-16-1183775-g001.jpg

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