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睾酮调节大鼠下丘脑 - 垂体轴中促甲状腺激素释放激素(TRH)及其前体的分泌。

Testosterone regulates the secretion of thyrotrophin-releasing hormone (TRH) and TRH precursor in the rat hypothalamic-pituitary axis.

作者信息

Pekary A E, Knoble M, Garcia N H, Bhasin S, Hershman J M

机构信息

Endocrinology Research Laboratory, Veterans Administration Wadsworth Division Medical Center, Los Angeles, California.

出版信息

J Endocrinol. 1990 May;125(2):263-70. doi: 10.1677/joe.0.1250263.

Abstract

Orchidectomy has been reported to decrease concentrations of thyrotrophin (TSH) in the circulation of male rats without affecting serum levels of thyroid hormones. To understand the mechanism underlying this observation, we have measured the effect of gonadal status on the in-vitro release of TSH-releasing hormone (TRH) by male rat hypothalamic fragments. Because hormone release rates can be affected by changes in the post-translational processing of the hormonal precursors, we have also studied the corresponding changes in the concentrations of TRH and TRH-Gly, a TRH precursor peptide in hypothalamus and pituitary, by radioimmunoassay. We observed a significant decline in the in-vitro release of TRH from incubated hypothalami 1 week after castration, which was quantitatively reversed by testosterone replacement. Concentrations of TRH and TRH-Gly in the posterior pituitary, on the other hand, which derive from neurones of hypothalamic origin, increased significantly with castration and were returned to the normal range by testosterone replacement. We conclude that the primary effect of testosterone is the stimulation of hypothalamic TRH release, resulting in the depletion of TRH and TRH precursors from TRH-containing neurones which project into the median eminence and posterior pituitary.

摘要

据报道,睾丸切除术可降低雄性大鼠循环中促甲状腺激素(TSH)的浓度,而不影响甲状腺激素的血清水平。为了解这一观察结果背后的机制,我们测量了性腺状态对雄性大鼠下丘脑片段体外释放促甲状腺激素释放激素(TRH)的影响。由于激素释放率可能受激素前体翻译后加工变化的影响,我们还通过放射免疫分析法研究了下丘脑和垂体中TRH及其前体肽TRH-Gly浓度的相应变化。我们观察到,去势1周后,孵育的下丘脑体外释放TRH显著下降,而睾酮替代可使其在数量上恢复。另一方面,来自下丘脑神经元的垂体后叶中TRH和TRH-Gly的浓度,在去势后显著增加,并通过睾酮替代恢复到正常范围。我们得出结论,睾酮的主要作用是刺激下丘脑释放TRH,导致投射到正中隆起和垂体后叶的含TRH神经元中的TRH及其前体耗尽。

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