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电刺激杏仁核点燃模型大鼠癫痫发作的次数和频率可诱导心肌重构和微小 RNA 表达的改变。

The number and periodicity of seizures induce cardiac remodeling and changes in micro-RNA expression in rats submitted to electric amygdala kindling model of epilepsy.

机构信息

Department of Physiological Sciences, Institute of Biological Sciences, Federal University of Goiás, Goiânia, Brazil.

Department of Neurology and Neurosurgery, Federal University of São Paulo, São Paulo, Brazil.

出版信息

Epilepsy Behav. 2021 Mar;116:107784. doi: 10.1016/j.yebeh.2021.107784. Epub 2021 Feb 3.

Abstract

Generalized tonic-clonic seizures (GTCS) are the main risk factor for sudden unexpected death in epilepsy (SUDEP). Also, among the several mechanisms underlying SUDEP there is the cardiac dysfunction. So, we aimed to evaluate the impact of the number of seizures on heart function and morphology in rats with epilepsy. Rats were randomized into three groups: Sham (without epilepsy), 5 S, and 10 S groups, referred as rats with epilepsy with a total of 5 or 10 GTCS, respectively. Epilepsy was induced by electrical amygdala kindling. The ventricular function was analyzed by the Langendorff technique and challenged by ischemia/reperfusion protocol. Cardiac fibrosis and hypertrophy were analyzed by histology. We also analyzed cardiac metalloproteinases (MMP2 and MMP9), ERK 1/2 and phosphorylated ERK1/2 (P-ERK) by western blot; microRNA-21 and -320 by RT-PCR; and oxidative stress (TBARS, catalase activity and nitrite) by biochemical analysis. Only the 5S group presented decreased values of ventricular function at before ischemia/reperfusion (baseline): intraventricular systolic pressure, developed intraventricular pressure, positive and negative dP/dt. During ischemia/reperfusion protocol, the variation of the ventricular function did not differ among groups. Both 5S and 10S groups had increased cardiomyocyte hypertrophy and fibrosis compared to Sham, but in the 5S group, these alterations were higher than in the 10S group. The 5S group increased in microRNA-21 and decreased in microRNA-320 expression compared to Sham and the 10S group. The 10S group increased in MMP9 and decreased in P-ERK/ERK expression, and increased in nitrite content compared to both Sham and the 5S group. Therefore, seizures impair cardiac function and morphology, probably through microRNA modulation. The continuation of seizures seems to exert a preconditioning-like stimulus that fails to compensate the cardiac tissue alteration.

摘要

全面性强直-阵挛发作(GTCS)是癫痫猝死(SUDEP)的主要危险因素。此外,SUDEP 的几个发病机制中包括心脏功能障碍。因此,我们旨在评估癫痫大鼠的发作次数对心脏功能和形态的影响。大鼠随机分为三组:假手术组(无癫痫)、5 S 组和 10 S 组,分别称为癫痫大鼠发作总数为 5 次或 10 次。癫痫由电刺激杏仁核诱导。通过 Langendorff 技术分析心室功能,并通过缺血/再灌注方案进行挑战。通过组织学分析心脏纤维化和肥大。我们还通过 Western blot 分析心脏金属基质蛋白酶(MMP2 和 MMP9)、ERK 1/2 和磷酸化 ERK1/2(P-ERK);通过 RT-PCR 分析 microRNA-21 和 -320;通过生化分析分析氧化应激(TBARS、过氧化氢酶活性和亚硝酸盐)。只有 5S 组在缺血/再灌注前(基线)时出现心室功能降低:心室收缩压、心室发展压、正性和负性 dP/dt。在缺血/再灌注方案期间,各组之间的心室功能变化没有差异。与假手术组相比,5S 组和 10S 组的心肌细胞肥大和纤维化均增加,但 5S 组的变化高于 10S 组。与假手术组和 10S 组相比,5S 组的 microRNA-21 增加,microRNA-320 减少。10S 组的 MMP9 增加,P-ERK/ERK 减少,亚硝酸盐含量增加,与假手术组和 5S 组相比。因此,癫痫会损害心脏功能和形态,可能通过 microRNA 调节。发作的持续时间似乎发挥了一种预处理样刺激,无法补偿心脏组织的改变。

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