首页> 外文期刊>The Journal of Reproduction and Development >Mechanisms of neuromodulation by a nonhypophysiotropic GnRH system controlling motivation of reproductive behavior in the teleost brain.
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Mechanisms of neuromodulation by a nonhypophysiotropic GnRH system controlling motivation of reproductive behavior in the teleost brain.

机译:非促生长性GnRH系统通过神经调节机制来控制硬骨脑的生殖行为。

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摘要

Fine tuning of the nervous system in response to intrinsic and extrinsic cues is necessary for successful reproductive behavior. Gonadotropin releasing hormone (GnRH) was originally identified as a hypophysiotropic hormone that facilitates the release of gonadotropins from the pituitary. Although later studies reported their presence, the nonhypophysiotropic GnRH systems, which consist of two groups located in the terminal nerve (TN) and the midbrain tegmentum, respectively, has long been overshadowed by the hypophysiotropic GnRH system. By taking advantage of the teleost brains in which all three GnRH systems are well developed, the anatomical and electrophysiological properties of all three groups of GnRH neurons have been studied. However, despite our increasing endocrinological knowledge, we know very little about the manner of information flow by nonhypophysiotropic neuromodulatory GnRH neurons in the brain. In this article, we will review recent advances in the studies of nonhypophysiotropic GnRH neurons from cellular to behavioral levels. We will first discuss general features of the information processing by peptides and then introduce our recent approaches toward the understanding of the excitation-secretion coupling mechanism of single GnRH neuron using our newly developed primary culture system of isolated TN-GnRH3 neurons. We also introduce autocrine/paracrine regulation of TN-GnRH3 neurons by NPFF peptides for synchronization among them. In addition, we highlight recent advances in the neuromodulatory action of GnRH peptide on the information processing of sensory neuronal circuits and reproductive behavior. These multidisciplinary approaches will greatly advance our understanding of the complex action of GnRH peptides in relation to the brain control of reproduction.
机译:对内在和外在线索作出反应的神经系统的微调对于成功的生殖行为是必要的。促性腺激素释放激素(GnRH)最初被认为是促垂体激素,可促进促性腺激素从垂体释放。尽管后来的研究报告了它们的存在,但非促营养性GnRH系统由促营养性GnRH系统长期遮盖,该系统由分别位于末梢神经(TN)和中脑盖膜中的两组组成。通过利用其中所有三个GnRH系统都得到很好发展的硬骨鱼脑,研究了所有三组GnRH神经元的解剖和电生理特性。然而,尽管我们的内分泌学知识不断增加,但我们对大脑中非低促生长性神经调节性GnRH神经元的信息流方式知之甚少。在本文中,我们将回顾非促生长性GnRH神经元从细胞水平到行为水平研究的最新进展。我们将首先讨论肽类信息处理的一般特征,然后介绍使用我们最新开发的分离的TN-GnRH3神经元原代培养系统来了解单个GnRH神经元的激发-分泌偶联机制的最新方法。我们还介绍了NPFF肽对TN-GnRH3神经元的自分泌/旁分泌调节,以实现它们之间的同步。此外,我们重点介绍了GnRH肽在感觉神经元回路和生殖行为信息处理中神经调节作用的最新进展。这些多学科方法将极大地促进我们对GnRH肽与生殖的大脑控制有关的复杂作用的理解。

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