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催乳素分泌模式:生殖的基本机制和临床意义。

Prolactin secretion patterns: basic mechanisms and clinical implications for reproduction.

机构信息

Space Biology Group, Swiss Federal Institute of Technology Zurich, ETH Zurich, 8005 Zurich, Switzerland.

出版信息

Reproduction. 2010 Nov;140(5):643-54. doi: 10.1530/REP-10-0033. Epub 2010 Aug 23.

Abstract

Prolactin (PRL) is one of the most versatile hormones in the mammalian body affecting reproductive, sexual, metabolic, immune, and other functions. It is therefore not surprising that the neural control of PRL secretion is complex, involving the coordinated actions of several hypothalamic nuclei. A plethora of experimental data exists on the hypothalamic control of hormone secretion under various physiological stimuli. There have been even mathematical models and computer studies published, which help to understand the complex hypothalamic-pituitary network. Nevertheless, the putative role of PRL for human reproduction still has to be clarified. Here, we review data on the underlying mechanisms controlling PRL secretion using both experimental and mathematical approaches. These investigations primarily focus on rhythmic secretion in rats during early pregnancy or pseudopregnancy, and they point to the important role of oxytocin as a crucial PRL-releasing factor. Recent data on human studies and their theoretical and clinical implications are reviewed as well. In particular, studies demonstrating a sustained PRL surge after sexual climax in males and females are presented, indicating possible implications for both sexual satiation and reproductive functions. Taking these data together, there is evidence for the hypothesis that the PRL surge induced by sexual activity, together with the altered PRL rhythmic pattern, is important for successful initialization of pregnancy not only in rodents but also possibly in humans. However, further investigations are needed to clarify such a role in humans.

摘要

催乳素(PRL)是哺乳动物体内最具多功能性的激素之一,影响生殖、性、代谢、免疫和其他功能。因此,催乳素分泌的神经控制非常复杂,涉及到几个下丘脑核的协调作用,这并不奇怪。有大量的实验数据表明,在各种生理刺激下,激素分泌受到下丘脑的控制。甚至已经发表了数学模型和计算机研究,这些研究有助于理解复杂的下丘脑-垂体网络。然而,催乳素对人类生殖的潜在作用仍有待阐明。在这里,我们使用实验和数学方法回顾了控制催乳素分泌的潜在机制的数据。这些研究主要集中在怀孕早期或假孕期间大鼠的节律性分泌上,它们指出催产素作为一种重要的催乳素释放因子的重要作用。还回顾了最近关于人类研究的数据及其理论和临床意义。特别是,提出了男性和女性在性高潮后催乳素持续激增的研究,这表明性满足和生殖功能可能有一定的影响。综合这些数据,有证据表明,性活动引起的催乳素激增,以及催乳素节律模式的改变,对啮齿动物和人类成功启动妊娠是重要的。然而,需要进一步的研究来阐明催乳素在人类中的作用。

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