Katakami H, Arimura A, Frohman L A
Endocrinology. 1985 Sep;117(3):1139-44. doi: 10.1210/endo-117-3-1139.
The effect and mechanism of action of central TRH on the regulation of GH secretion was studied in conscious male rats with indwelling intraatrial and intracerebroventricular (icv) cannulae. Plasma GH was measured every 10-20 min from 1000 h-1400 h by repeated blood sampling. In animals that received saline iv or icv, GH secretion was pulsatile, with peak hormone levels occurring at 1120-1200 h. TRH (10 micrograms), injected icv at 1100 h, inhibited spontaneous GH secretion, and mean plasma GH levels remained suppressed (less than 20 ng/ml) for at least 3 h after injection. In contrast, an iv injection of the same dose of TRH at 1100 h did not significantly affect spontaneous GH secretion. Intravenous injection of human GH-releasing factor [1-40] (hGRF, 1 micrograms) at 1100 h in animals injected 5 min earlier with saline (10 microliters, icv) stimulated GH release, with peak values (748 +/- 63 ng/ml, mean +/- SE) observed 10 min after injection. However, animals injected icv with TRH (10 micrograms) 5 min before the iv injection of hGRF exhibited an attenuated GH response to hGRF (peak values, 115 +/- 28 ng/ml; P less than 0.001 vs. saline icv + hGRF). The inhibition of GH secretion by central TRH was abolished by pretreatment of animals with antisomatostatin serum (0.5 ml, iv) but not with normal serum (P less than 0.001). These results suggest an inhibitory role of central TRH in the regulation of spontaneous GH secretion in the rat that is mediated by stimulation of hypothalamic somatostatin.
在留置心房和脑室内(icv)插管的清醒雄性大鼠中,研究了中枢促甲状腺激素释放激素(TRH)对生长激素(GH)分泌调节的作用及作用机制。从1000 h至1400 h,通过重复采血,每10 - 20分钟测量一次血浆GH。在接受静脉注射或脑室内注射生理盐水的动物中,GH分泌呈脉冲式,激素水平峰值出现在1120 - 1200 h。在1100 h脑室内注射TRH(10微克)可抑制自发性GH分泌,注射后至少3小时血浆GH平均水平仍受抑制(低于20纳克/毫升)。相比之下,在1100 h静脉注射相同剂量的TRH对自发性GH分泌无显著影响。在提前5分钟脑室内注射生理盐水(10微升)的动物中,于1100 h静脉注射人生长激素释放因子[1 - 40](hGRF,1微克)可刺激GH释放,注射后10分钟观察到峰值(748±63纳克/毫升,平均值±标准误)。然而,在静脉注射hGRF前5分钟脑室内注射TRH(10微克)的动物对hGRF的GH反应减弱(峰值为115±28纳克/毫升;与脑室内注射生理盐水 + hGRF相比,P < 0.001)。用抗生长抑素血清(0.5毫升,静脉注射)预处理动物可消除中枢TRH对GH分泌的抑制作用,但用正常血清预处理则无此作用(P < 0.001)。这些结果表明,中枢TRH在大鼠自发性GH分泌调节中起抑制作用,该作用由下丘脑生长抑素的刺激介导。