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EL小鼠(一种癫痫的遗传模型)中的阵发性放电。

Paroxysmal discharges in the EL mouse, a genetic model of epilepsy.

作者信息

Wang H, Burdette L J, Frankel W N, Masukawa L M

机构信息

Department of Neurology, The Graduate Hospital Research Center, Philadelphia, PA 19146, USA.

出版信息

Brain Res. 1997 Jun 20;760(1-2):266-71. doi: 10.1016/s0006-8993(97)00396-x.

Abstract

The EL/Suz (EL) mouse is a strain that is highly susceptible to convulsive seizures after repeated sensory stimulation. Its control strain, DDY/Jc1 (DDY), is less susceptible under similar conditions. The seizure prone phenotype is the result of differences at several genetic loci. In vivo electrical recordings from the seizure prone EL mouse brain have shown that the appearance of abnormal discharges in the hippocampus are critical to the onset of generalized seizures, indicating that the hippocampus plays an important role in EL mouse seizure activity. In the present study, electrophysiological differences between EL and DDY mice (9-15 weeks of age) were examined by comparing field potentials recorded from the dentate granule cell layer of hippocampal brain slices from mice that had not been stimulated to induce seizures. In control physiological solution, no significant differences were observed in characteristics of perforant path evoked field potentials or in paired pulse depression of evoked field potentials using 20 to 300 ms interstimulus intervals. After 60 min of disinhibition following bicuculline (10 microM) exposure, however, prolonged large amplitude potentials, paroxysmal discharges, were evoked by perforant path stimulation in the dentate gyrus of EL mice but were absent in the DDY strain. Paroxysmal discharges were curtailed by APV and were similar to responses recorded from the dentate gyrus in hippocampal brain slices from temporal lobe epileptic patients. The field response to hilar stimulation was identical in both strains and was composed of a single population spike before and after bicuculline exposure. Mossy fiber terminals were not present in the molecular layer of either strain. We propose that the mechanisms leading to a greater likelihood of paroxysmal discharge generation in EL mouse may be important in the development and/or generation of epileptic seizures in this mouse strain and may be a significant phenotypic difference between the EL mouse and its parent strain.

摘要

EL/Suz(EL)小鼠是一种在反复感觉刺激后极易发生惊厥性癫痫发作的品系。其对照品系DDY/Jc1(DDY)在类似条件下不易感。癫痫发作易感性表型是多个基因位点差异的结果。对易患癫痫的EL小鼠大脑进行的体内电记录表明,海马体中异常放电的出现对全身性癫痫发作的起始至关重要,这表明海马体在EL小鼠的癫痫活动中起重要作用。在本研究中,通过比较未受刺激诱发癫痫发作的小鼠海马脑片齿状颗粒细胞层记录的场电位,研究了EL和DDY小鼠(9至15周龄)之间的电生理差异。在对照生理溶液中,使用20至300毫秒的刺激间隔时,在穿通通路诱发场电位的特征或诱发场电位的双脉冲抑制方面未观察到显著差异。然而,在暴露于荷包牡丹碱(10微摩尔)60分钟解除抑制后,穿通通路刺激在EL小鼠的齿状回中诱发了延长的大幅度电位,即阵发性放电,但在DDY品系中未出现。阵发性放电被APV抑制,并且与颞叶癫痫患者海马脑片齿状回中记录的反应相似。两种品系对海马门刺激的场反应相同,并且在荷包牡丹碱暴露前后均由单个群体峰电位组成。两种品系的分子层中均不存在苔藓纤维终末。我们提出,导致EL小鼠更易发生阵发性放电的机制可能在该小鼠品系癫痫发作的发展和/或发生中起重要作用,并且可能是EL小鼠与其亲本品系之间的一个显著表型差异。

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