Targeting KNDy neurons to control GnRH pulses

IF 4 3区 医学 Q1 PHARMACOLOGY & PHARMACY
Stephanie Constantin
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引用次数: 1

Abstract

Gonadotropin-releasing hormone (GnRH) is the final output of the central nervous system that drives fertility. A characteristic of GnRH secretion is its pulsatility, which is driven by a pulse generator. Each GnRH pulse triggers a luteinizing hormone (LH) pulse. However, the puzzle has been to reconcile the synchronicity of GnRH neurons with the scattered hypothalamic distribution of their cell bodies. A leap toward understanding GnRH pulses was the discovery of kisspeptin neurons near the distal processes of GnRH neurons, which secrete kisspeptins, potent excitatory neuropeptides on GnRH neurons, and equipped with dual, but opposite, self-modulatory neuropeptides, neurokinin B and dynorphin. Over the last decade, this cell-to-cell communication has been dissected in animal models. Today the 50-year quest for the basic mechanism of GnRH pulse generation may be over, but questions about its physiological tuning remain. Here is an overview of recent basic research that frames translational research.

靶向KNDy神经元控制GnRH脉冲
促性腺激素释放激素(GnRH)是驱动生育能力的中枢神经系统的最终输出。GnRH分泌的一个特点是它的脉动性,这是由脉冲发生器驱动的。每个GnRH脉冲触发一个促黄体生成素(LH)脉冲。然而,这个难题一直是调和GnRH神经元的同步性与分散的下丘脑分布的细胞体。了解GnRH脉冲的一个飞跃是在GnRH神经元的远端突附近发现了kisspeptin神经元,它在GnRH神经元上分泌kisspeptin,一种有效的兴奋性神经肽,并具有双重但相反的自我调节神经肽,神经激肽B和动力啡肽。在过去的十年里,这种细胞间的交流已经在动物模型中被解剖。今天,对GnRH脉冲产生的基本机制长达50年的探索可能已经结束,但关于其生理调节的问题仍然存在。这里是最近的基础研究框架转化研究的概述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.80
自引率
2.50%
发文量
131
审稿时长
4-8 weeks
期刊介绍: Current Opinion in Pharmacology (COPHAR) publishes authoritative, comprehensive, and systematic reviews. COPHAR helps specialists keep up to date with a clear and readable synthesis on current advances in pharmacology and drug discovery. Expert authors annotate the most interesting papers from the expanding volume of information published today, saving valuable time and giving the reader insight on areas of importance.
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