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人类体内生长激素分泌事件的时间结构

Temporal structure of in vivo growth hormone secretory events in humans.

作者信息

Hartman M L, Faria A C, Vance M L, Johnson M L, Thorner M O, Veldhuis J D

机构信息

Department of Medicine, University of Virginia Health Sciences Center, Charlottesville 22908.

出版信息

Am J Physiol. 1991 Jan;260(1 Pt 1):E101-10. doi: 10.1152/ajpendo.1991.260.1.E101.

Abstract

The time course of spontaneous growth hormone (GH) secretion was studied in 12 normal men by analyzing serum GH concentrations measured in blood collected at 5-min intervals over 24 h with a multiple-parameter deconvolution model to simultaneously resolve endogenous GH secretory and clearance rates. Twenty-four-hour profiles of serum GH concentrations were accounted for by an average of 12 +/- 1.2 (SE) discrete GH secretory bursts having a mean half-duration (duration at half-maximal amplitude) of 25 +/- 2.3 min, indicating that 95% of daily GH secretion occurred in 8.8 h. The majority (96%) of GH was secreted in volleys composed of multiple (4.0 +/- 0.4) discrete secretory bursts. Such volleys of GH secretion were separated by 171 +/- 19 min, whereas their constituent individual secretory events occurred every 36 +/- 1.7 min (P = 0.0001). Between secretory volleys, calculated GH secretory rates fell asymptotically to zero. Significant positive and negative autocorrelations were observed for the series consisting of successive GH secretory burst mass and interburst intervals, respectively. Linear regression analysis revealed significant negative correlations between the mass of GH secreted per burst and both the preceding and following interburst intervals. Estimates of the half-life of endogenous GH (17 +/- 1.7 min) and of the endogenous GH production rate (0.25 +/- 0.033 mg/m2 for an assumed distribution volume of 7.9% body wt) agreed well with earlier independent measurements. We conclude that the human pituitary gland secretes GH in volleys consisting of multiple secretory bursts, without measurable intervening tonic secretion. This pattern of in vivo GH release in normal humans is consistent with a model of high-frequency GH-releasing hormone secretory events superimposed on low-frequency episodes of somatostatin withdrawal.

摘要

通过使用多参数反卷积模型分析在24小时内每隔5分钟采集的血液中测得的血清生长激素(GH)浓度,以同时解析内源性GH分泌率和清除率,对12名正常男性的自发性GH分泌的时间进程进行了研究。血清GH浓度的24小时曲线由平均12±1.2(SE)个离散的GH分泌脉冲组成,其平均半衰期(最大振幅一半时的持续时间)为25±2.3分钟,这表明95%的每日GH分泌发生在8.8小时内。大多数(96%)的GH是以由多个(4.0±0.4)离散分泌脉冲组成的群峰形式分泌的。这种GH分泌群峰之间的间隔为171±19分钟,而其组成的单个分泌事件每隔36±1.7分钟发生一次(P = 0.0001)。在分泌群峰之间,计算出的GH分泌率渐近地降至零。分别对由连续的GH分泌脉冲质量和脉冲间隔组成的序列观察到显著的正自相关和负自相关。线性回归分析显示,每个脉冲分泌的GH质量与前一个和后一个脉冲间隔之间存在显著的负相关。内源性GH半衰期(17±1.7分钟)和内源性GH产生率(假设分布容积为体重的7.9%时为0.25±0.033 mg/m²)的估计值与早期独立测量结果非常吻合。我们得出结论,人类垂体以由多个分泌脉冲组成的群峰形式分泌GH,没有可测量的中间性持续性分泌。正常人体内这种体内GH释放模式与一种模型一致,即高频生长激素释放激素分泌事件叠加在低频的生长抑素撤减发作之上。

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