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α2δ亚基与失神癫痫:超越钙通道?

The α2δ Subunit and Absence Epilepsy: Beyond Calcium Channels?

作者信息

Celli Roberta, Santolini Ines, Guiducci Michela, van Luijtelaar Gilles, Parisi Pasquale, Striano Pasquale, Gradini Roberto, Battaglia Giuseppe, Ngomba Richard T, Nicoletti Ferdinando

机构信息

I.R.C.C.S. Neuromed, Neuropharmacology Unit, Pozzilli, (IS), Italy.

Departments of Neurosciences, Mental Health and Sensory Organs, Experimental Medicine, and Physiology and Pharmacology, University Sapienza, Rome, Italy.

出版信息

Curr Neuropharmacol. 2017;15(6):918-925. doi: 10.2174/1570159X15666170309105451.

Abstract

BACKGROUND

Spike-wave discharges, underlying absence seizures, are generated within a cortico-thalamo-cortical network that involves the somatosensory cortex, the reticular thalamic nucleus, and the ventrobasal thalamic nuclei. Activation of T-type voltage-sensitive calcium channels (VSCCs) contributes to the pathological oscillatory activity of this network, and some of the first-line drugs used in the treatment of absence epilepsy inhibit T-type calcium channels. The α2δ subunit is a component of high voltage-activated VSCCs (i.e., L-, N-, P/Q-, and R channels) and studies carried out in heterologous expression systems suggest that it may also associate with T channels. The α2δ subunit is also targeted by thrombospondins, which regulate synaptogenesis in the central nervous system.

OBJECTIVE

To discuss the potential role for the thrombospondin/α2δ axis in the pathophysiology of absence epilepsy.

METHODS

We searched PubMed articles for the terms "absence epilepsy", "T-type voltage-sensitive calcium channels", "α2δ subunit", "ducky mice", "pregabalin", "gabapentin", "thrombospondins", and included papers focusing this Review's scope.

RESULTS

We moved from the evidence that mice lacking the α2δ-2 subunit show absence seizures and α 2δ ligands (gabapentin and pregabalin) are detrimental in the treatment of absence epilepsy. This suggests that α2δ may be protective against absence epilepsy via a mechanism that does not involve T channels. We discuss the interaction between thrombospondins and α2δ and its potential relevance in the regulation of excitatory synaptic formation in the cortico-thalamo-cortical network.

CONCLUSION

We speculate on the possibility that the thrombospondin/α2 δ axis is critical for the correct functioning of the cortico-thalamo-cortical network, and that abnormalities in this axis may play a role in the pathophysiology of absence epilepsy.

摘要

背景

作为失神发作基础的棘波放电,产生于一个涉及躯体感觉皮层、丘脑网状核和丘脑腹侧基底核的皮质 - 丘脑 - 皮质网络。T型电压敏感性钙通道(VSCCs)的激活促成了该网络的病理性振荡活动,并且一些用于治疗失神癫痫的一线药物可抑制T型钙通道。α2δ亚基是高电压激活的VSCCs(即L型、N型、P/Q型和R型通道)的一个组成部分,在异源表达系统中进行的研究表明它也可能与T型通道相关联。α2δ亚基也是血小板反应蛋白的作用靶点,血小板反应蛋白可调节中枢神经系统中的突触形成。

目的

探讨血小板反应蛋白/α2δ轴在失神癫痫病理生理学中的潜在作用。

方法

我们在PubMed文章中搜索了“失神癫痫”“T型电压敏感性钙通道”“α2δ亚基”“鸭嘴兽小鼠”“普瑞巴林”“加巴喷丁”“血小板反应蛋白”等术语,并纳入了聚焦本综述范围的论文。

结果

我们从缺乏α2δ - 2亚基的小鼠出现失神发作以及α2δ配体(加巴喷丁和普瑞巴林)在治疗失神癫痫时有害这一证据出发。这表明α2δ可能通过一种不涉及T型通道的机制对失神癫痫起到保护作用。我们讨论了血小板反应蛋白与α2δ之间的相互作用及其在皮质 - 丘脑 - 皮质网络兴奋性突触形成调节中的潜在相关性。

结论

我们推测血小板反应蛋白/α2δ轴对于皮质 - 丘脑 - 皮质网络的正常功能至关重要,并且该轴的异常可能在失神癫痫的病理生理学中发挥作用。

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