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高频刺激对低镁诱导的大鼠海马脑片 CA3 区癫痫样放电节律波复杂性的影响。

Effect of high-frequency stimulation on the complexity of low-Mg-induced epileptiform discharge rhythm waves in the CA3 region of rat hippocampal slices.

机构信息

School of Life Sciences, Tiangong University, Tianjin, 300387, China; State Key Laboratory of Precision Measurement Technology and Instruments, Tianjin University, Tianjin, 300072, China.

School of Life Sciences, Tiangong University, Tianjin, 300387, China.

出版信息

Biochem Biophys Res Commun. 2023 Sep 17;673:59-66. doi: 10.1016/j.bbrc.2023.06.048. Epub 2023 Jun 19.

Abstract

High-frequency stimulation (HFS) is a crucial therapeutic approach for neurodegenerative conditions, such as epilepsy. However, its underlying mechanism of inhibition remains unclear. In this study, a rat model of epileptiform discharges (EDs) was constructed by perfusing brain slices with magnesium-free artificial cerebrospinal fluid (aCSF), where after HFS was used to stimulate the CA3 area of the hippocampus. The EDs signals of each sub-region of hippocampal slices before and after HFS were recorded based on a multi-electrode Array (MEA). Secondly, the changes of approximate entropy (ApEn) complexity of rhythms in different regions of hippocampal slices before and after HFS were deeply analyzed The results showed that different rhythm characteristics of EDs signals exhibited significant differences before and after HFS. Here HFS significantly inhibited the delta rhythm of field potential and enhanced the beta rhythm. Finally, the changing rhythm of the EDs signal in the propagation path before and after HFS was analyzed, and it was found that the inhibitory target of HFS on EDs signal was in the CA3b sub-region. The rhythm would gradually decline with the propagation of EDs signal in the hippocampal neural pathway. This study shows that HFS can modulate the local field potential, thus inhibiting the pathological rhythm caused by epilepsy, which provides a novel research incentive for HFS to inhibit EDs.

摘要

高频刺激(HFS)是治疗神经退行性疾病(如癫痫)的重要方法。然而,其抑制的潜在机制尚不清楚。在这项研究中,通过用无镁人工脑脊液(aCSF)灌流脑片构建了癫痫样放电(EDs)大鼠模型,之后用 HFS 刺激海马 CA3 区。基于多电极阵列(MEA)记录 HFS 前后海马脑片各亚区的 EDs 信号。其次,深入分析了 HFS 前后海马不同区域节律的近似熵(ApEn)复杂度变化。结果表明,EDs 信号的不同节律特征在 HFS 前后表现出显著差异。HFS 显著抑制了场电位的 delta 节律,增强了 beta 节律。最后,分析了 HFS 前后 EDs 信号在传播路径上的变化节律,发现 HFS 对 EDs 信号的抑制靶点在 CA3b 亚区。节律会随着 EDs 信号在海马神经通路上的传播而逐渐下降。这项研究表明,HFS 可以调节局部场电位,从而抑制癫痫引起的病理性节律,为 HFS 抑制 EDs 提供了新的研究动力。

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