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生长激素释放因子和生长抑素在成年雄性大鼠生长激素分泌动态中的生理作用

Physiological role of growth hormone (GH)-releasing factor and somatostatin in the dynamics of GH secretion in adult male rat.

作者信息

Sato M, Takahara J, Fujioka Y, Niimi M, Irino S

机构信息

First Department of Internal Medicine, Kagawa Medical School, Japan.

出版信息

Endocrinology. 1988 Oct;123(4):1928-33. doi: 10.1210/endo-123-4-1928.

Abstract

To investigate the physiological role of GRF and somatostatin (SRIF) in GH secretion in adult male rats, we prepared in vitro models using the perifusion system of cultured rat anterior pituitary cells exposed to various combinations of human GRF-(1-44)NH2 (hGRF) and SRIF. We studied the following three models on GRF secretion: 1) pulsatile GRF secreted at 1-h intervals, 2) pulsatile GRF secreted at 3-h intervals, and 3) GRF continuously secreted. When 5-min pulses of 20 nM GRF were delivered at 1-h intervals, the responses to GRF gradually declined. The addition of continuous 20 nM SRIF with short pauses prevented this attenuated response and produced high peaks of GH at 3-h intervals. When 5-min pulses of 20 nM GRF were delivered at 3-h intervals, three high peaks of GH were observed regardless of the addition of SRIF. Pretreatment with GRF pulses enhanced the peaks of GH during SRIF pauses. When 20 nM GRF was continuously delivered, a rapid attenuated response to GRF was observed. Although the addition of continuous 20 nM SRIF with short pauses produced three small peaks of GH, these results were caused by the post-SRIF rebound release. These observations suggest that preexposure to prolonged SRIF can prevent an attenuated response to repeated GRF pulses, and that pretreatment with GRF pulses enhances post-SRIF rebound release.

摘要

为研究生长激素释放因子(GRF)和生长抑素(SRIF)在成年雄性大鼠生长激素(GH)分泌中的生理作用,我们使用培养的大鼠垂体前叶细胞的灌流系统,制备了体外模型,使其暴露于人类GRF-(1-44)NH2(hGRF)和SRIF的各种组合中。我们研究了以下三种GRF分泌模型:1)以1小时间隔脉冲式分泌GRF;2)以3小时间隔脉冲式分泌GRF;3)持续分泌GRF。当以1小时间隔给予20 nM GRF的5分钟脉冲时,对GRF的反应逐渐下降。添加持续20 nM SRIF并伴有短暂间歇可防止这种反应减弱,并在3小时间隔时产生GH的高峰值。当以3小时间隔给予20 nM GRF的5分钟脉冲时,无论是否添加SRIF,均观察到三个GH高峰值。GRF脉冲预处理可增强SRIF间歇期间的GH峰值。当持续给予20 nM GRF时,观察到对GRF的快速反应减弱。尽管添加持续20 nM SRIF并伴有短暂间歇产生了三个小的GH峰值,但这些结果是由SRIF后的反弹释放引起的。这些观察结果表明,预先长时间暴露于SRIF可防止对重复GRF脉冲的反应减弱,并且GRF脉冲预处理可增强SRIF后的反弹释放。

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