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A Multi-Oscillatory Circadian System Times Female Reproduction

机译:一个多振荡的昼夜节律系统对女性生殖进行计时

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Rhythms in female reproduction are critical to insure that timing of ovulation coincides with oocyte maturation and optimal sexual arousal. This fine tuning of female reproduction involves both the estradiol feedback as an indicator of oocyte maturation, and the master circadian clock of the suprachiasmatic nuclei (SCN) as an indicator of the time of the day. Herein, we are providing an overview of the state of knowledge regarding the differential inhibitory and stimulatory effects of estradiol at different stages of the reproductive axis, and the mechanisms through which the two main neurotransmitters of the SCN, arginine vasopressin, and vasoactive intestinal peptide, convey daily time cues to the reproductive axis. In addition, we will report the most recent findings on the putative functions of peripheral clocks located throughout the reproductive axis [kisspeptin (Kp) neurons, gonadotropin-releasing hormone neurons, gonadotropic cells, the ovary, and the uterus]. This review will point to the critical position of the Kp neurons of the anteroventral periventricular nucleus, which integrate both the stimulatory estradiol signal, and the daily arginine vasopressinergic signal, while displaying a circadian clock. Finally, given the critical role of the light/dark cycle in the synchronization of female reproduction, we will discuss the impact of circadian disruptions observed during shift-work conditions on female reproductive performance and fertility in both animal model and humans.
机译:女性生殖节律对于确保排卵时间与卵母细胞成熟和最佳性唤起相吻合至关重要。雌性生殖的这种微调涉及雌二醇反馈(作为卵母细胞成熟的指标),以及视交叉上核(SCN)的主生物钟作为一天中时间的指标。本文中,我们概述了有关雌二醇在生殖轴不同阶段的差异抑制和刺激作用的知识状态,以及SCN的两个主要神经递质,精氨酸加压素和血管活性肠肽的机制,将每日时间提示传达到生殖轴。此外,我们将报告位于整个生殖轴[kisspeptin(Kp)神经元,促性腺激素释放激素神经元,促性腺激素细胞,卵巢和子宫]周围时钟推测功能的最新发现。这项审查将指向前室脑室周围核的Kp神经元的关键位置,其在显示昼夜节律的同时整合了刺激性雌二醇信号和每日精氨酸加压素能信号。最后,鉴于明/暗循环在雌性生殖同步中的关键作用,我们将讨论在轮班工作条件下观察到的昼夜节律对动物模型和人类雌性生殖性能和生育力的影响。

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