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血管加压素可调节大鼠下丘脑大细胞血管加压素神经元的节律性放电模式。

Vasopressin regularizes the phasic firing pattern of rat hypothalamic magnocellular vasopressin neurons.

作者信息

Gouzènes L, Desarménien M G, Hussy N, Richard P, Moos F C

机构信息

Centre National de la Recherche Scientifique-Unité Propre de Recherche 9055, Biologie des Neurones Endocrines, Centre de Pharmacologie Endocrinologie, 34094 Montpellier cedex 05, France.

出版信息

J Neurosci. 1998 Mar 1;18(5):1879-85. doi: 10.1523/JNEUROSCI.18-05-01879.1998.

Abstract

Vasopressin (AVP) magnocellular neurons of hypothalamic nuclei express specific phasic firing (successive periods of activity and silence), which conditions the mode of neurohypophyseal vasopression release. In situations favoring plasmatic secretion of AVP, the hormone is also released at the somatodendritic level, at which it is believed to modulate the activity of AVP neurons. We investigated the nature of this autocontrol by testing the effects of juxtamembrane applications of AVP on the extracellular activity of presumed AVP neurons in paraventricular and supraoptic nuclei of anesthetized rats. AVP had three effects depending on the initial firing pattern: (1) excitation of faintly active neurons (periods of activity of <10 sec), which acquired or reinforced their phasic pattern; (2) inhibition of quasi-continuously active neurons (periods of silences of <10 sec), which became clearly phasic; and (3) no effect on neurons already showing an intermediate phasic pattern (active and silent periods of 10-30 sec). Consequently, AVP application resulted in a narrower range of activity patterns of the population of AVP neurons, with a Gaussian distribution centered around a mode of 57% of time in activity, indicating a homogenization of the firing pattern. The resulting phasic pattern had characteristics close to those established previously for optimal release of AVP from neurohypophyseal endings. These results suggest a new role for AVP as an optimizing factor that would foster the population of AVP neurons to discharge with a phasic pattern known to be most efficient for hormone release.

摘要

下丘脑核团的血管加压素(AVP)大细胞神经元表现出特定的相位性放电(连续的活动期和静息期),这决定了神经垂体血管加压素的释放模式。在有利于AVP血浆分泌的情况下,该激素也在树突-胞体水平释放,据信它在该水平调节AVP神经元的活动。我们通过测试在麻醉大鼠的室旁核和视上核中对假定的AVP神经元进行近膜应用AVP对其细胞外活动的影响,来研究这种自身调节的性质。根据初始放电模式,AVP有三种作用:(1)兴奋轻度活跃的神经元(活动期<10秒),这些神经元获得或增强了它们的相位模式;(2)抑制准连续活跃的神经元(静息期<10秒),这些神经元变得明显呈相位性;(3)对已经表现出中间相位模式(活动期和静息期为10 - 30秒)的神经元没有影响。因此,应用AVP导致AVP神经元群体的活动模式范围变窄,高斯分布集中在活动时间占57%的模式周围,表明放电模式趋于同质化。产生的相位模式具有与先前确定的神经垂体末梢AVP最佳释放模式相近的特征。这些结果表明AVP作为一种优化因子具有新的作用,它将促使AVP神经元群体以已知对激素释放最有效的相位模式放电。

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