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莫廷·琼斯纪念讲座。介导催产素对大鼠排乳反射中枢作用的边缘区域。

Mortyn Jones Memorial Lecture. Limbic regions mediating central actions of oxytocin on the milk-ejection reflex in the rat.

作者信息

Ingram C D, Adams T S, Jiang Q B, Terenzi M G, Lambert R C, Wakerley J B, Moos F

机构信息

Department of Anatomy, School of Medical Sciences, University of Bristol, UK.

出版信息

J Neuroendocrinol. 1995 Jan;7(1):1-13. doi: 10.1111/j.1365-2826.1995.tb00661.x.

Abstract

Central oxytocin administration has a profound facilitatory effect on the patterning of the milk-ejection reflex in the lactating rat. Lesion and microinjection studies indicate that this action is, in part, mediated via a population of limbic neurones in the bed nuclei of the stria terminalis and ventrolateral septum, which have been shown to possess oxytocin receptors and to be activated by selective oxytocin-receptor agonists in vitro. In vivo electrophysiological recordings reveal that some of these neurones display cyclical activity which is highly correlated to each milk ejection, and are rapidly activated following i.c.v. administration of oxytocin, coincident with the facilitation of milk ejection activity. A hypothetical model is proposed in which this population of limbic neurones serves to gate the activity of a pacemaker which, in turn, coordinates the bursting of hypothalamic magnocellular neurones. The oxytocin innervation of these neurones and their expression of oxytocin receptors increases in the postpartum period, and the resultant enhanced sensitivity leads to a greater facilitatory response during lactation. Inhibitory opioid and noradrenergic inputs which converge on these oxytocin-sensitive neurones may function to switch off the facilitatory circuit during periods of stress. Thus, this population of limbic neurones participates in the regulation of neuroendocrine activity during lactation by providing an appropriate degree of feedback to alter the patterning of the milk-ejection reflex.

摘要

向中枢注射催产素对泌乳大鼠的排乳反射模式有深远的促进作用。损伤和微量注射研究表明,这一作用部分是通过终纹床核和腹外侧隔中的一群边缘神经元介导的,这些神经元已被证明具有催产素受体,并在体外被选择性催产素受体激动剂激活。体内电生理记录显示,其中一些神经元表现出周期性活动,这种活动与每次排乳高度相关,并且在脑室内注射催产素后迅速被激活,这与排乳活动的促进同时发生。提出了一个假设模型,其中这群边缘神经元用于控制起搏器的活动,而起搏器又协调下丘脑大细胞神经元的爆发。这些神经元的催产素神经支配及其催产素受体的表达在产后时期增加,由此产生的敏感性增强导致泌乳期间更大的促进反应。汇聚在这些对催产素敏感的神经元上的抑制性阿片类和去甲肾上腺素能输入可能在应激期间起到关闭促进回路的作用。因此,这群边缘神经元通过提供适当程度的反馈来改变排乳反射模式,从而参与泌乳期间神经内分泌活动的调节。

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