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Role of GnRH Neurons and Their Neuronal Afferents as Key Integrators between Food Intake Regulatory Signals and the Control of Reproduction

机译:GnRH神经元及其神经元传入作为食品摄入调控信号与繁殖之间的关键集成商的作用

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Reproductive function is regulated by a plethora of signals that integrate physiological and environmental information. Among others, metabolic factors are key components of this circuit since they inform about the propitious timing for reproduction depending on energy availability. This information is processed mainly at the hypothalamus that, in turn, modulates gonadotropin release from the pituitary and, thereby, gonadal activity. Metabolic hormones, such as leptin, insulin, and ghrelin, act as indicators of the energy status and convey this information to the reproductive axis regulating its activity. In this review, we will analyse the central mechanisms involved in the integration of this metabolic information and their contribution to the control of the reproductive function. Particular attention will be paid to summarize the participation of GnRH, Kiss1, NPY, and POMC neurons in this process and their possible interactions to contribute to the metabolic control of reproduction.
机译:生殖功能由整合生理和环境信息的多种信号调节。除此之外,代谢因子是该电路的关键组成部分,因为他们根据能量可用性通知缺乏的繁殖时机。该信息主要在下丘脑中加工,反过来,依次调节从垂体的促性腺激素释放,从而调节垂体释放,从而进行性腺活性。代谢激素,如瘦素,胰岛素和Ghrelin,作为能量状况的指标,并将这些信息传达给生殖轴调节其活动。在本次审查中,我们将分析涉及该代谢信息整合的中央机制及其对生殖功能控制的贡献。将特别注意总结GNRH,Kiss1,NPY和POMC神经元在该过程中的参与及其可能的相互作用,以促进再现的代谢控制。

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