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在促性腺激素释放激素诱导的青春期期间,垂体和性腺的反应性增强。

Pituitary and gonadal responsiveness is enhanced during GnRH-induced puberty.

作者信息

Spratt D I, Crowley W F

机构信息

Reproductive Endocrine Unit, Vincent Memorial Research Laboratories, Massachusetts General Hospital, Boston 02114.

出版信息

Am J Physiol. 1988 May;254(5 Pt 1):E652-7. doi: 10.1152/ajpendo.1988.254.5.E652.

Abstract

We hypothesized that the hypothalamic gonadotropin-releasing hormone (GnRH) signal that initiates sexual maturation is further amplified at both the pituitary and gonadal levels during puberty. To test this theory, six GnRH-deficient men were monitored during administration of exogenous GnRH at a physiological frequency for greater than or equal to 9 mo. GnRH doses were progressively increased until normal testosterone (T) concentrations and secondary sexual development were achieved. This "optimized" dose of GnRH was then sustained for at least 6 mo to allow maturation of the hypothalamic-pituitary-gonadal axis. The GnRH dose was then progressively decreased to a level that had been unable to stimulate normal T secretion before sexual maturation. Changes in pituitary responsiveness were analyzed in four of the six men by comparing gonadotropin responses to identical doses of GnRH before and after sexual maturation. Mean serum luteinizing hormone and follicle-stimulating hormone levels as well as luteinizing hormone pulse amplitudes were greater after the induction of sexual maturation than before despite identical doses of GnRH. Both pituitary and gonadal responsiveness was then analyzed in the remaining two subjects by choosing periods of evaluation where endogenous gonadotropin levels were matched before and after the period of sexual maturation. Serum T concentrations were greater after sexual maturation than before despite equivalent gonadotropin input to the testes and LH pulse amplitudes. Thus the testicular responsiveness to gonadotropins increased during sexual maturation. After initiation of puberty by GnRH secretion, amplification at both the pituitary and gonadal levels contributes to sexual maturation in the human.

摘要

我们假设,启动性成熟的下丘脑促性腺激素释放激素(GnRH)信号在青春期会在垂体和性腺水平进一步放大。为了验证这一理论,对6名GnRH缺乏的男性以生理频率给予外源性GnRH,持续监测9个月及以上。GnRH剂量逐渐增加,直至达到正常睾酮(T)浓度和第二性征发育。然后维持这种“优化”的GnRH剂量至少6个月,以使下丘脑-垂体-性腺轴成熟。之后将GnRH剂量逐渐降低至性成熟前无法刺激正常T分泌的水平。通过比较6名男性中4人性成熟前后对相同剂量GnRH的促性腺激素反应,分析垂体反应性的变化。尽管GnRH剂量相同,但性成熟诱导后,血清促黄体生成素和促卵泡生成素的平均水平以及促黄体生成素脉冲幅度均高于性成熟前。通过选择性成熟前后内源性促性腺激素水平匹配的评估期,对其余2名受试者的垂体和性腺反应性进行分析。尽管睾丸的促性腺激素输入和LH脉冲幅度相当,但性成熟后血清T浓度高于性成熟前。因此,性成熟过程中睾丸对促性腺激素的反应性增加。在GnRH分泌启动青春期后,垂体和性腺水平的放大作用均有助于人类的性成熟。

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