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星形胶质细胞光遗传学激活对遗传性失神癫痫大鼠棘波-慢波放电的影响

The Effects of Optogenetic Activation of Astrocytes on Spike-and-Wave Discharges in Genetic Absence Epileptic Rats.

作者信息

Ozgur Merve, Özyurt Mustafa Görkem, Arkan Sertan, Cavdar Safiye

机构信息

Graduate School of Health Sciences, Division of Neuroscience, Koc University, Istanbul Turkey.

Department of Anatomy, Faculty of Medicine, Izmir University of Economics, Izmir, Turkey.

出版信息

Ann Neurosci. 2022 Jan;29(1):53-61. doi: 10.1177/09727531211072423. Epub 2022 Mar 14.

Abstract

BACKGROUND

Absence seizures (petit mal seizures) are characterized by a brief loss of consciousness without loss of postural tone. The disease is diagnosed by an electroencephalogram (EEG) showing spike-wave discharges (SWD) caused by hypersynchronous thalamocortical (TC) oscillations. There has been an explosion of research highlighting the role of astrocytes in supporting and modulating neuronal activity. Despite established in vitro evidence, astrocytes' influence on the TC network remains to be elucidated in vivo in the absence epilepsy (AE).

PURPOSE

In this study, we investigated the role of astrocytes in the generation and modulation of SWDs. We hypothesize that disturbances in astrocytes' function may affect the pathomechanism of AE.

METHODS

To direct the expression of channelrhodopsin-2 (ChR2) rAAV8-GFAP-ChR2(H134R)-EYFP or to control the effect of surgical intervention, AAV-CaMKIIa-EYFP was injected into the ventrobasal nucleus (VB) of the thalamus of 18 animals. After four weeks following the injection, rats were stimulated using blue light (~473 nm) and, simultaneously, the electrophysiological activity of the frontal cortical neurons was recorded for three consecutive days. The animals were then perfused, and the brain tissue was analyzed by confocal microscopy.

RESULTS

A significant increase in the duration of SWD without affecting the number of SWD in genetic absence epileptic rats from Strasbourg (GAERS) compared to control injections was observed. The duration of the SWD was increased from 12.50 ± 4.41 s to 17.44 ± 6.07 following optogenetic stimulation in GAERS. The excitation of the astrocytes in Wistar Albino Glaxo Rijswijk (WAG-Rij) did not change the duration of SWD; however, stimulation resulted in a significant increase in the number of SWD from 18.52 ± 11.46 bursts/30 min to 30.17 ± 18.43 bursts/30 min. Whereas in control injection, the duration and the number of SWDs were similar at pre- and poststimulus. Both the background and poststimulus average firing rates of the SWD in WAG-Rij were significantly higher than the firing recorded in GAERS.

CONCLUSION

These findings suggest that VB astrocytes play a role in modulating the SWD generation in both rat models with distinct mechanisms and can present an essential target for the possible therapeutic approach for AE.

摘要

背景

失神发作(小发作)的特征是短暂意识丧失且不伴有姿势张力丧失。该疾病通过脑电图(EEG)诊断,其显示由丘脑皮质(TC)超同步振荡引起的棘波 - 慢波放电(SWD)。大量研究突显了星形胶质细胞在支持和调节神经元活动中的作用。尽管有已确立的体外证据,但在失神癫痫(AE)的体内环境中,星形胶质细胞对TC网络的影响仍有待阐明。

目的

在本研究中,我们调查了星形胶质细胞在SWD产生和调节中的作用。我们假设星形胶质细胞功能的紊乱可能影响AE的发病机制。

方法

为了定向表达通道视紫红质 - 2(ChR2)rAAV8 - GFAP - ChR2(H134R) - EYFP或控制手术干预的效果,将AAV - CaMKIIa - EYFP注射到18只动物丘脑腹侧基底核(VB)中。注射四周后,用蓝光(~473 nm)刺激大鼠,同时连续三天记录额叶皮质神经元的电生理活动。然后对动物进行灌注,并通过共聚焦显微镜分析脑组织。

结果

与对照注射相比,观察到来自斯特拉斯堡的遗传性失神癫痫大鼠(GAERS)的SWD持续时间显著增加,而SWD数量未受影响。在GAERS中,光遗传学刺激后SWD的持续时间从12.50±4.41秒增加到17.44±6.07秒。在威斯塔白化大鼠(WAG - Rij)中,星形胶质细胞的兴奋并未改变SWD的持续时间;然而,刺激导致SWD数量从18.52±11.46次爆发/30分钟显著增加到30.17±18.43次爆发/30分钟。而在对照注射中,刺激前后SWD的持续时间和数量相似。WAG - Rij中SWD的背景和刺激后平均放电频率均显著高于GAERS中记录的放电频率。

结论

这些发现表明,VB星形胶质细胞在以不同机制调节两种大鼠模型中的SWD产生中发挥作用,并且可能成为AE潜在治疗方法的重要靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2605/9305907/b687a76064ba/10.1177_09727531211072423-fig1.jpg

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