Porkka-Heiskanen T, Laakso M L, Stenberg D, Alila A, Johansson G
Department of Physiology, University of Helsinki, Finland.
J Reprod Fertil. 1992 Sep;96(1):331-6. doi: 10.1530/jrf.0.0960331.
In this experiment we investigated whether the lack of the nocturnal melatonin peak under constant light would cause an increase in testosterone sensitivity. Castrated rats were kept under periodic or constant light for one week. They received a daily injection of vehicle, testosterone propionate (125 micrograms), melatonin (50 micrograms) or testosterone plus melatonin (125 micrograms + 50 micrograms). Serum and pituitary gonadotrophins and pineal melatonin were measured at the end of the experiment. Under constant light, testosterone injections reduced the serum luteinizing hormone concentration in castrated rats to that in intact rats, but, under periodic light, the decrease was smaller. Melatonin did not reverse the stronger effect of testosterone under constant light. The serum melatonin peak produced by the exogenous melatonin injection had a higher amplitude, shorter duration and earlier appearance than the physiological melatonin peak. Exogenous melatonin did not modify the physiological melatonin secretion, measured either as serum melatonin concentration or pineal melatonin content on the consecutive day. We conclude that the increase in testosterone negative feedback sensitivity of castrated rats under constant light was not due to the absence of the nocturnal melatonin pulse.
在本实验中,我们研究了持续光照下夜间褪黑素峰值的缺失是否会导致睾酮敏感性增加。将去势大鼠置于周期性光照或持续光照下一周。它们每天接受一次溶剂注射、丙酸睾酮(125微克)、褪黑素(50微克)或睾酮加褪黑素(125微克 + 50微克)注射。在实验结束时测量血清和垂体促性腺激素以及松果体褪黑素。在持续光照下,注射睾酮可使去势大鼠的血清黄体生成素浓度降至完整大鼠的水平,但在周期性光照下,这种降低幅度较小。褪黑素并未逆转持续光照下睾酮更强的作用。外源性褪黑素注射产生的血清褪黑素峰值比生理性褪黑素峰值具有更高的幅度、更短的持续时间和更早的出现时间。外源性褪黑素并未改变以血清褪黑素浓度或次日松果体褪黑素含量衡量的生理性褪黑素分泌。我们得出结论,持续光照下去势大鼠睾酮负反馈敏感性的增加并非由于夜间褪黑素脉冲的缺失。