Neuroendocrine control of the pituitary gonadotropic function in experimental diabetes

V. Babichev, E. Adamskaya, T. Kuznetsova, I. Shishkina
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Abstract

The hypothalamo-pituitary-gonadal system was examined in male and female rats with experimental diabetes in­duced by streptozotocin (STZ). Injection of STZ caused a decrease of testosterone (T) concentration and of T nuclear receptors in the pituitary. The levels of luteinizing and follicle stimulating hor­mones (LH and FSH) in the blood of diabetic rats did not differ from those in intact animals. In vitro experiments showed that the development of diabetes did not change the basal secretion of LH by the pituitary in males. Maximal response to LH-RH was record­ed in control males after 3-hour incubation, whereas the rate of LH secretion in experimental rats did not differ from basal values. In­jection of STZ to cycling females disordered the estrous cycle and involved decreases of the basal and cyclic secretion of LH, FSH, and sex hormones. The concentrations of estradiol nuclear receptors in the preoptic anterohypothalamic region and pituitary decreased, whereas the number of T-binding sites decreased only in the pitui­tary. Sex hormone-stimulated gonadotropin wave in oophorect- omized females was decreased in diabetes, which was due to changed activity of the LH-RH producing system. The authors hy­pothesize that changes in the mechanism of regulation of the hy­pothalamo-pituitary-gonadal system in experimental diabetes are re­lated to pituitary disorders in males, whereas changed basal and cy­clic secretion of LH and FSH in females is caused by disordered activity of the LH-RH production and receptor binding at the level of the hypothalamo-pituitary complex.
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实验性糖尿病患者垂体促性腺功能的神经内分泌调控
研究了链脲佐菌素(STZ)诱导的实验性糖尿病大鼠下丘脑-垂体-性腺系统的变化。注射STZ引起垂体睾酮(T)浓度和T核受体的降低。糖尿病大鼠血液中的黄体生成素和促卵泡激素(LH和FSH)水平与正常动物没有差异。体外实验表明,糖尿病的发生并没有改变雄性垂体促黄体生成素的分泌。对照雄性在孵育3小时后对LH- rh的最大反应被记录下来,而实验大鼠的LH分泌率与基础值没有差异。经周期雌鼠注射STZ后,其发情周期紊乱,黄体生成素、卵泡刺激素和性激素的基础和周期分泌减少。雌二醇核受体在视前下丘脑区和垂体的浓度降低,而t结合位点的数量仅在垂体中减少。糖尿病女性卵巢切除术后性激素刺激的促性腺激素波降低,这是由于rh - rh产生系统活性的改变。作者推测,实验性糖尿病患者下丘脑-垂体-性腺系统调节机制的变化与男性垂体功能紊乱有关,而女性基础和循环LH和FSH分泌的变化是由下丘脑-垂体复合物水平上LH- rh生成和受体结合的活性紊乱引起的。
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