Massicotte J, Lagacé L, Labrie F, Dorrington J H
Am J Physiol. 1984 Oct;247(4 Pt 1):E495-504. doi: 10.1152/ajpendo.1984.247.4.E495.
Sertoli cell culture media (SCM) from 10-, 20-, 30-, 35-, and 40-day-old male Wistar rats were assayed to determine the inhibin activity in anterior pituitary cells in culture. In agreement with previous data, SCM did not affect the luteinizing hormone (LH) spontaneous release at all ages studied, whereas it inhibited specifically follicle-stimulating hormone (FSH) spontaneous release by 40% for the 40-day-old rats. Younger animals (10-, 20-, and 30-day-old) showed a 60% inhibition of the FSH basal release. The inhibin activity was also different at all stages studied, the IC50 being markedly displaced to the right as the age increased, leading to a fivefold difference between 10- and 30- to 40-day-old rats. The same pattern was observed when the LH and FSH responses to 0.3 nM LH-releasing hormone (LHRH) were studied. SCM from 35-day-old rats did not alter total LH, whereas total FSH was markedly reduced, thus suggesting a reduced FSH synthesis in the presence of inhibin. SCM exerts an additive inhibitory effect with dihydrotestosterone on the LH response to LHRH, whereas it reverses the stimulatory effect of the androgen on spontaneous and LHRH-induced FSH release. Moreover, SCM reversed the stimulatory effect of 17 beta-estradiol on both spontaneous and LHRH-induced LH and FSH release, whereas the stimulatory effect of progesterone on FSH release was 50-80% inhibited. The present data show that inhibin activity of Sertoli cell origin can exert marked interactions with sex steroids in the control of gonadotropin secretion. These data also demonstrate that the inhibin component is an important factor in sexual maturation of the rat and that high FSH levels of 10-day-old rats could suggest a modulation by a nonandrogenic factor of gonadotropin secretion in developing rats.
对10日龄、20日龄、30日龄、35日龄和40日龄雄性Wistar大鼠的支持细胞培养基(SCM)进行检测,以确定培养的垂体前叶细胞中的抑制素活性。与先前的数据一致,在所有研究的年龄阶段,SCM均未影响促黄体生成素(LH)的自发释放,而对于40日龄大鼠,它特异性地抑制了促卵泡激素(FSH)自发释放的40%。较年幼的动物(10日龄、20日龄和30日龄)的FSH基础释放受到60%的抑制。在所有研究阶段,抑制素活性也有所不同,随着年龄的增加,半数抑制浓度(IC50)明显右移,导致10日龄大鼠与30至40日龄大鼠之间相差五倍。在研究LH和FSH对0.3 nM促黄体生成素释放激素(LHRH)的反应时,观察到了相同的模式。35日龄大鼠的SCM未改变LH总量,而FSH总量明显减少,这表明在存在抑制素的情况下FSH合成减少。SCM与双氢睾酮对LH对LHRH的反应具有相加抑制作用,而它可逆转雄激素对自发和LHRH诱导的FSH释放的刺激作用。此外,SCM可逆转17β-雌二醇对自发和LHRH诱导的LH和FSH释放的刺激作用,而孕酮对FSH释放的刺激作用则受到50 - 80%的抑制。目前的数据表明,支持细胞来源的抑制素活性在促性腺激素分泌的控制中可与性类固醇发生显著相互作用。这些数据还证明,抑制素成分是大鼠性成熟中的一个重要因素,10日龄大鼠的高FSH水平可能表明在发育中的大鼠中促性腺激素分泌受到非雄激素因子的调节。