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大鼠血浆促肾上腺皮质激素在24小时内呈现出三种不同的节律。

Plasma adrenocorticotropic hormone in the rat demonstrates three different rhythms within 24 h.

作者信息

Carnes M, Lent S, Feyzi J, Hazel D

机构信息

Geriatrics Section, William S. Middleton Memorial Veterans Administration Hospital, Madison, Wisc.

出版信息

Neuroendocrinology. 1989 Jul;50(1):17-25. doi: 10.1159/000125197.

Abstract

Secretion of adrenocorticotropic hormone (ACTH) by the anterior pituitary is rhythmic and episodic, as reflected by fluctuations in plasma concentrations of ACTH. The present work was designed to further characterize the patterns of ACTH secretion that occur simultaneously within a 24-hour period in the rat. To accomplish this, blood collection protocols with sampling intervals of 2 min, 15 min, and 4 h were used in awake, chronically cannulated rats. Plasma samples were assayed for immunoreactive ACTH, and resultant data were analyzed for significant pulsatile secretory episodes. We observed three different patterns of ACTH secretion within a 24-hour period. Circadian variation occurred with peak plasma ACTH levels in the early evening. In addition, plasma ACTH exhibited two types of episodic variation: (1) episodic bursts with variable amplitudes that occurred approximately three times per hour which have been referred to as 'micropulses', and (2) prolonged elevations of plasma ACTH that occurred approximately 14 times in 24 h which have been referred to as 'larger ultradian' secretory episodes. These latter episodes appeared to consist of groups of relatively high amplitude micropulses. The physiological significance, functional interactions, and location of the controlling oscillator(s) of these different rhythms remain to be determined.

摘要

垂体前叶分泌促肾上腺皮质激素(ACTH)具有节律性和间歇性,这在血浆ACTH浓度波动中得以体现。本研究旨在进一步描述大鼠在24小时内同时出现的ACTH分泌模式。为实现这一目的,对清醒的、长期插管的大鼠采用了采样间隔为2分钟、15分钟和4小时的采血方案。对血浆样本进行免疫反应性ACTH检测,并对所得数据进行分析,以确定显著的脉冲分泌事件。我们观察到在24小时内ACTH分泌有三种不同模式。昼夜节律变化表现为傍晚血浆ACTH水平达到峰值。此外,血浆ACTH呈现出两种类型的间歇性变化:(1)每小时约出现三次、幅度可变的间歇性脉冲,被称为“微脉冲”;(2)24小时内约出现14次的血浆ACTH长时间升高,被称为“较大的超日节律”分泌事件。后一种事件似乎由一组相对高幅度的微脉冲组成。这些不同节律的生理意义、功能相互作用以及控制振荡器的位置仍有待确定。

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