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杏仁核点燃可提高血浆血管加压素水平。

Amygdala kindling elevates plasma vasopressin.

作者信息

Greenwood R S, Meeker R B, Hayward J N

机构信息

Department of Neurology and Curriculum of Neurobiology, School of Medicine, University of North Carolina, Chapel Hill 27599-7025.

出版信息

Brain Res. 1991 Jan 4;538(1):9-14. doi: 10.1016/0006-8993(91)90369-7.

Abstract

Acute and chronic effects of epilepsy on endocrine function are known to occur in humans with partial seizures of limbic origin and in animals with limbic kindled seizures. The amygdala, a component of the limbic system, has dense hypothalamic connections and amygdala stimulation in monkeys and cats result in vasopressin release. In the present study we sought to determine if amygdala stimulation in the rats results in an immediate acute release of vasopressin and to determine if acute or chronic changes occur in vasopressin release in the fully kindled animal. Plasma vasopressin, osmolality and hematocrit were measured in blood samples drawn from rats with implanted venous catheters before and after stimulation and at different stages of kindling. Low-frequency (15 Hz) electrical stimulation of the amygdala was followed by an immediate, 3-fold increase in plasma vasopressin concentration. Moreover, although the 60 Hz kindling stimulus did not result in a significant immediate rise in plasma vasopressin prior to kindling, after kindling to stage 5 seizures the 60 Hz kindling stimulus resulted in seizures and a significant immediate rise in plasma vasopressin. In addition, we found that kindling was followed by a significant, though modest, rise in the resting plasma vasopressin without an accompanying change in osmolality or hematocrit. We conclude that kindling results in a persistent alteration in the vasopressinergic neuroendocrine system.

摘要

已知癫痫对内分泌功能的急性和慢性影响发生在患有边缘系统起源的部分性癫痫发作的人类以及患有边缘系统点燃性癫痫发作的动物身上。杏仁核是边缘系统的一个组成部分,与下丘脑有密集的联系,对猴子和猫的杏仁核进行刺激会导致血管加压素释放。在本研究中,我们试图确定对大鼠杏仁核进行刺激是否会导致血管加压素立即急性释放,并确定在完全点燃的动物中血管加压素释放是否会发生急性或慢性变化。在刺激前后以及点燃的不同阶段,从植入静脉导管的大鼠采集血样,测量血浆血管加压素、渗透压和血细胞比容。对杏仁核进行低频(15赫兹)电刺激后,血浆血管加压素浓度立即增加了3倍。此外,虽然60赫兹的点燃刺激在点燃前没有导致血浆血管加压素显著立即升高,但在点燃至第5阶段癫痫发作后,60赫兹的点燃刺激引发了癫痫发作,并使血浆血管加压素显著立即升高。此外,我们发现点燃后静息血浆血管加压素显著升高,尽管升高幅度不大,且渗透压或血细胞比容没有相应变化。我们得出结论,点燃会导致血管加压素能神经内分泌系统发生持续性改变。

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