Carnes M, Kalin N H, Lent S J, Barksdale C M, Brownfield M S
Geriatrics Section, William S. Middleton Veterans Hospital, Madison, WI 53705.
Peptides. 1988 Mar-Apr;9(2):325-31. doi: 10.1016/0196-9781(88)90268-9.
It has long been known that ACTH is secreted in an episodic fashion demonstrating circadian and ultradian rhythms. High intensity venous sampling has recently revealed that in addition to these larger ultradian fluctuations in hormone levels, plasma ACTH in rats demonstrates high frequency, low amplitude oscillations which have been called "micropulses." These micropulses were not detected in previous studies due to sampling intervals of greater than 5 minutes. To investigate the presence of these ACTH micropulses in a primate species, blood samples were drawn from six chair-restrained rhesus monkeys at one-minute intervals for up to 70 minutes and plasma was assayed for immunoreactive ACTH. To assess the variation in ACTH micropulse parameters with time of day and the relationship to cortisol secretion, four of the monkeys were sampled for three 70-minute periods beginning at 0530, 1100, and 1730 hours, and plasma was assayed for immunoreactive ACTH and cortisol. Analysis of the data revealed that ACTH and cortisol are secreted in micropulses in rhesus monkeys with marked individual variation in the pattern of secretion and a concurrence of approximately 75% of ACTH and cortisol micropulses. Difference in pulse amplitude but not frequency appeared to contribute to the circadian variation in mean ACTH levels and a sampling interval of two minutes appeared to be adequate for accurately identifying micropulses of ACTH.
长期以来,人们都知道促肾上腺皮质激素(ACTH)是以阵发性方式分泌的,呈现出昼夜节律和超日节律。最近,高强度静脉采样显示,除了这些较大的激素水平超日波动外,大鼠血浆中的ACTH还呈现出高频、低幅振荡,这种振荡被称为“微脉冲”。由于之前的采样间隔大于5分钟,所以在这些研究中未检测到这些微脉冲。为了研究灵长类动物中这些ACTH微脉冲的存在情况,对6只坐在椅子上受约束的恒河猴每隔1分钟采集一次血样,持续70分钟,并检测血浆中的免疫反应性ACTH。为了评估ACTH微脉冲参数随一天中时间的变化以及与皮质醇分泌的关系,对其中4只猴子在0530、1100和1730时开始的三个70分钟时间段进行采样,并检测血浆中的免疫反应性ACTH和皮质醇。数据分析显示,恒河猴的ACTH和皮质醇以微脉冲形式分泌,分泌模式存在明显的个体差异,且ACTH和皮质醇微脉冲的同步率约为75%。脉冲幅度的差异而非频率的差异似乎导致了平均ACTH水平的昼夜变化,两分钟的采样间隔似乎足以准确识别ACTH微脉冲。