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首页> 外文期刊>Neurochemical journal >The Concentration of Serotonin and its Metabolite 5-Hydroxyindolacetic Acid in Brain Structures of Wistar and WAG/Rij Rats and the Influence of Imipramine on Spike-Wave Discharges
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The Concentration of Serotonin and its Metabolite 5-Hydroxyindolacetic Acid in Brain Structures of Wistar and WAG/Rij Rats and the Influence of Imipramine on Spike-Wave Discharges

机译:Wistar和WAG / Rij大鼠脑结构中5-羟色胺及其代谢物5-羟吲哚乙酸的浓度以及咪帕明对穗波放电的影响

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摘要

The concentrations of serotonin and its metabolite 5-hydroxyindoleacetic acid were investigated in various brain structures of WAG/Rij rats, which are a genetic model of human absence epilepsy, and control Wistar rats; as well, the influence of the intraventricular and intraperitoneal injection of imipramine on spike-wave discharges was determined. The animals were first tested for susceptibility to audiogenic seizures. Concentrations of serotonin and its metabolite were investigated in three groups of animals: those that are susceptible to audiogenic seizures, resistant to audiogenic seizures, and a combined group (susceptible and resistant). The influence of imipramine was studied in resistant rats. It was shown that absence epilepsy is associated with a higher activity of the serotoninergic system in the thalamus, where the pacemaker of absence epilepsy discharges is located, and in the medulla oblongata, which is the location of the somas of serotonergic neurons. Selective enhancement of serotonergic system activity by imipramine substantially increased the duration of spike-wave discharges. The mixed form of epilepsy (audiogenic and absence) was accompanied by a reduction of serotonergic system activity in the amygdala. The mixed form of epilepsy was associated with a higher activity of the serotonergic system in the medulla oblongata and cerebellum.
机译:研究了WAG / Rij大鼠的多种大脑结构中5-羟色胺及其代谢物5-羟基吲哚乙酸的浓度,该模型是人类失神癫痫的遗传模型,而对照组为Wistar大鼠。还确定了脑室内和腹腔注射丙咪嗪对尖峰波放电的影响。首先测试动物对音源性癫痫发作的敏感性。在三组动物中研究了5-羟色胺及其代谢产物的浓度:三类动物对易听见的癫痫发作敏感,对可听见的癫痫发作有抵抗力,以及另一组动物(易感和抗药性)。研究了丙咪嗪对抵抗力大鼠的影响。结果表明,在癫痫发作起搏器所在的丘脑中以及在延髓(即血清素能神经元的体位)的丘脑中,失神癫痫症与5-羟色胺能系统的更高活性有关。丙咪嗪选择性增强血清素能系统的活性,大大增加了尖峰波放电的持续时间。癫痫的混合形式(听觉和不存在)伴随着杏仁核中血清素能系统活性的降低。混合性癫痫与延髓和小脑的血清素能系统的较高活性有关。

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