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内嗅皮层对低镁诱导癫痫海马脑片模型发作放电的影响。

Effect of the entorhinal cortex on ictal discharges in low-Mg²⁺-induced epileptic hippocampal slice models.

机构信息

Department of Neurology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University, 1630 Dong-Fang Road, Shanghai 200127, China.

School of Biomedical Engineering, Shanghai Jiao Tong University, 800 Dong-Chuan Road, Shanghai 200240, China.

出版信息

Neural Plast. 2014;2014:205912. doi: 10.1155/2014/205912. Epub 2014 Mar 3.

Abstract

The hippocampus plays an important role in the genesis of mesial temporal lobe epilepsy, and the entorhinal cortex (EC) may affect the hippocampal network activity because of the heavy interconnection between them. However, the mechanism by which the EC affects the discharge patterns and the transmission mode of epileptiform discharges within the hippocampus needs further study. Here, multielectrode recording techniques were used to study the spatiotemporal characteristics of epileptiform discharges in adult mouse hippocampal slices and combined EC-hippocampal slices and determine whether and how the EC affects the hippocampal neuron discharge patterns. The results showed that low-Mg²⁺ artificial cerebrospinal fluid induced interictal discharges in hippocampal slices, whereas, in combined EC-hippocampal slices the discharge pattern was alternated between interictal and ictal discharges, and ictal discharges initiated in the EC and propagated to the hippocampus. The pharmacological effect of the antiepileptic drug valproate (VPA) was tested. VPA reversibly suppressed the frequency of interictal discharges but did not change the initiation site and propagation speed, and it completely blocked ictal discharges. Our results suggested that EC was necessary for the hippocampal ictal discharges, and ictal discharges were more sensitive than interictal discharges in response to VPA.

摘要

海马体在颞叶内侧癫痫的发生中起着重要作用,而内嗅皮层(entorhinal cortex,EC)可能由于它们之间的大量相互连接而影响海马网络活动。然而,EC 影响海马内放电模式和癫痫样放电传递模式的机制仍需要进一步研究。在这里,我们使用多电极记录技术研究了成年小鼠海马脑片和联合 EC-海马脑片中癫痫样放电的时空特征,并确定 EC 是否以及如何影响海马神经元的放电模式。结果表明,低镁人工脑脊液诱导海马脑片出现发作间期放电,而在联合 EC-海马脑片中,放电模式在发作间期和发作期之间交替出现,发作期放电起始于 EC 并传播至海马。我们还测试了抗癫痫药物丙戊酸钠(valproate,VPA)的药理作用。VPA 可可逆地抑制发作间期放电的频率,但不改变起始部位和传播速度,并且完全阻断发作期放电。我们的结果表明,EC 对于海马的发作期放电是必需的,并且发作期放电对 VPA 的反应比发作间期放电更敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f45/3960561/9c95359c4042/NP2014-205912.001.jpg

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