哺乳动物性成熟的下丘脑控制。

D Gupta
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引用次数: 3

摘要

性成熟的实现是一个复杂的过程,不仅需要性腺和生殖道的成熟和相互作用,而且需要垂体和基本上是最终控制促性腺激素分泌的神经内分泌机制的成熟和相互作用。性成熟的一个比较有吸引力的假设是,调节系统对负反馈信号的敏感阈值的存在,这是区分不成熟和成熟的关键。随着学科的成熟,这种情况会减少。为了进一步研究男性下丘脑-垂体-性腺轴的成熟变化,研究了24小时内血液LH、FSH、睾酮和双氢睾酮水平的同时变化;在LH- rh的刺激下,垂体和血液LH和FSH浓度随时间和年龄的增加;在性成熟不同阶段睾酮阻断动物中LH和FSH的合成和释放;在体外,睾酮转化为其5 α -减少代谢物的垂体作为年龄的函数。来自实验数据的证据可以解释为性成熟期间反馈设定点的递减,这反映在各种实验信号下获得的响应的转变上。与这些观察结果同时,新的证据表明,垂体促性腺激素不仅在数量上发生了变化,而且在质量上也发生了变化,这是对负反馈和正反馈信号的反应。这导致了对差分敏感性假设的新思考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hypothalamic control of the mammalian sexual maturation.

The attainment of sexual maturity is a complex process which requires maturation and interaction not only of gonads and reproductive tract but also of the pituitary and essentially of the neuroendocrine mechanisms which ultimately control gonadotropin secretion. One of the more attractive hypotheses of the sexual maturation presumes the existence of the sensitivity threshold of the regulating system to the negative feedback signal, which differentiates immaturity from maturity. As the subject matures this declines. In an attempt to examine further the maturational alterations of the male hypothalamo-pituitary-gonadal axis, investigations were carried out with regard to simultaneous changes of blood LH, FSH, testosterone and dihydrotestosterone levels during the course of 24 hr; augmentation of pituitary and blood LH and FSH concentrations under the stimulus of LH-RH as a function of time and age; synthesis and release of LH and FSH in the testosterone-blocked animals at various stages of sexual maturation; and in vitro biotransformation of testosterone to its 5 alpha-reduced metabolites by the pituitaries as a function of age. Evidence from the experimental data could be interpreted as a decrement of the feedback set-points during sexual maturatio as reflected by the transition of the responses obtained under various experimental signals. In parallel to these observations, new evidence was presented regarding not only quantitative but qualitative changes in the pituitary gonadotropins as response to the negative and positive feedback signals. This leads to new thinking with regard to the hypothesis of differential sensitivity.

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