Rivest R W, Jaconi M E, Gruaz N, Sizonenko P C, Aubert M L
Department of Pediatrics and Genetics, University of Geneva School of Medicine, Switzerland.
Neuroendocrinology. 1987 Nov;46(5):379-86. doi: 10.1159/000124848.
Melatonin administration has been shown to delay sexual maturation in male rats, through an action which involves decreased binding of gonadotropin-releasing hormone (GnRH) in the pituitary and lower pituitary gonadotropin contents. It has been suggested that melatonin must act at a level higher than the pituitary to provoke these effects, but a direct action of melatonin on the pituitary has not been excluded. Using a cell culture system, the gonadotroph responsiveness to GnRH was studied. Pituitaries were obtained either from rats chronically treated with melatonin and showing delayed sexual maturation, or from control rats. In vitro luteinizing hormone and follicle-stimulating hormone response to GnRH was significantly lower when pituitaries were obtained from melatonin-treated rats. However, this diminished response was directly proportional to the amount of gonadotropin contents in cells, so that relative responsiveness, calculated as the amount of gonadotropins released in relation to the gonadotropin content was similar in cells from control and melatonin-treated rats. It is concluded that the effect of melatonin on the pituitary of male rats results from a decrease of gonadotroph growth or gonadotropin synthesis, as a consequence of a change located at the hypothalamic rather than at the pituitary level. This conclusion is further supported by results showing that melatonin added directly in culture medium prior to GnRH does not modify the pituitary responsiveness to GnRH.
褪黑素给药已被证明可延迟雄性大鼠的性成熟,其作用机制涉及垂体中促性腺激素释放激素(GnRH)结合减少以及垂体促性腺激素含量降低。有人提出,褪黑素必须在高于垂体的水平发挥作用才能引发这些效应,但尚未排除褪黑素对垂体的直接作用。利用细胞培养系统,研究了促性腺细胞对GnRH的反应性。垂体取自长期接受褪黑素治疗且表现出性成熟延迟的大鼠,或取自对照大鼠。当垂体取自接受褪黑素治疗的大鼠时,体外促黄体生成素和促卵泡生成素对GnRH的反应显著降低。然而,这种反应减弱与细胞中促性腺激素含量成正比,因此,以释放的促性腺激素量与促性腺激素含量的比值计算的相对反应性在对照大鼠和接受褪黑素治疗的大鼠的细胞中相似。结论是,褪黑素对雄性大鼠垂体的作用是由于促性腺细胞生长或促性腺激素合成减少,这是下丘脑而非垂体水平发生变化的结果。在GnRH之前直接添加到培养基中的褪黑素不会改变垂体对GnRH的反应性,这一结果进一步支持了该结论。