Institute for Neuroscience, University of Texas at Austin, Austin, TX 78712, USA.
Neuroendocrinology. 2012;96(1):1-12. doi: 10.1159/000335994. Epub 2012 Feb 17.
The natural transition to reproductive senescence is an important physiological process that occurs with aging, resulting in menopause in women and diminished or lost fertility in most mammalian species. This review focuses on how rodent models have informed our knowledge of age-related changes in gonadotropin-releasing hormone (GnRH) neurosecretory function and the subsequent loss of reproductive capacity. Studies in rats and mice have shown molecular, morphological and functional changes in GnRH cells. Furthermore, during reproductive aging altered sex steroid feedback to the hypothalamus contributes to a decrease of stimulatory signaling and increase in inhibitory tone onto GnRH neurons. At the site of the GnRH terminals where the peptide is released into the portal vasculature, the cytoarchitecture of the median eminence becomes disorganized with aging, and mechanisms of glial-GnRH neuronal communication may be disrupted. These changes can result in the dysregulation of GnRH secretion with reproductive decline. Interestingly, reproductive aging effects on the GnRH circuitry are observed in middle age even prior to any obvious physiological changes in cyclicity. We speculate that the hypothalamus may play a critical role in this mid-life transition. Because there are substantial species differences in these aging processes, we also compare and contrast rodent aging to that in primates. Work discussed herein shows that in order to understand neuroendocrine mechanisms of reproductive senescence, further research needs to be conducted in ovarian-intact models.
生殖衰老的自然转变是衰老过程中发生的一个重要生理过程,导致女性绝经和大多数哺乳动物物种生育能力降低或丧失。本综述重点介绍了啮齿动物模型如何为我们了解与年龄相关的促性腺激素释放激素 (GnRH) 神经分泌功能的变化以及随后的生殖能力丧失提供信息。在大鼠和小鼠中的研究表明 GnRH 细胞存在分子、形态和功能变化。此外,在生殖衰老过程中,性激素对下丘脑的反馈作用改变导致 GnRH 神经元的刺激信号减少和抑制性张力增加。在 GnRH 末端释放到门脉血管的部位,随着年龄的增长,正中隆起的细胞结构变得紊乱,胶质-GnRH 神经元通讯的机制可能被破坏。这些变化可能导致 GnRH 分泌失调,生殖能力下降。有趣的是,生殖衰老对 GnRH 回路的影响在中年时期就可以观察到,甚至在周期性出现任何明显生理变化之前。我们推测,下丘脑可能在这个中年过渡中起着关键作用。由于这些衰老过程在物种间存在很大差异,我们还比较和对比了啮齿动物和灵长类动物的衰老。本文讨论的工作表明,为了了解生殖衰老的神经内分泌机制,需要在卵巢完整的模型中进行进一步的研究。