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Ghrelin and Reproduction: Ghrelin as Novel Regulator of the gonadotropic axis

机译:Ghrelin和生殖:Ghrelin作为促性腺轴的新型调节剂

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Identification of ghrelin in late 1999, as the endogenous ligand of the growth hormone secretagogue receptor (GHSR), opened up a new era in our understanding of the regulatory mechanisms of several neuroendocrine systems, including growth and energy homeostasis. Based on similarities with other endocrine integrators and its proposed role as signal for energy insufficiency, it appeared tempting to hypothesize that ghrelin might also operate as regulator of reproductive function. Yet, contrary to other of its biological actions the reproductive "dimension" of ghrelin has remained largely unexplored. Nonetheless, experimental evidence, coming mostly from animal studies, have been gathered during the last years suggesting that ghrelin may actually function as a metabolic modulator of the gonadotropic axis, with predominant inhibitory effects in line with its role as signal of energy deficit. These effects likely include inhibition of luteinizing hormone (LH) secretion (which has been reported in different species and developmental stages), as well as partial suppression of normal puberty onset. In addition, expression and/or direct gonadal actions of ghrelin have been reported in the human, rat, and chicken. Altogether, those findings document a novel reproductive facet of ghrelin, which may cooperate with other neuroendocrine integrators, as leptin, in the joint control of energy balance and reproduction.
机译:ghrelin在1999年末被鉴定为生长激素促分泌素受体(GHSR)的内源性配体,在我们对几种神经内分泌系统的调节机制(包括生长和能量稳态)的理解上开辟了一个新时代。基于与其他内分泌整合剂的相似性以及其作为能量不足信号的拟议作用,人们似乎很容易猜测ghrelin也可能起着生殖功能的调节作用。然而,与其生长激素的其他生物学行为相反,生长素释放肽的生殖“维度”仍未得到充分探索。然而,最近几年收集了大部分来自动物研究的实验证据,表明生长素释放肽可能实际上起着促性腺激素轴的代谢调节剂的作用,主要抑制作用与其作为能量缺乏信号的作用一致。这些作用可能包括抑制黄体生成激素(LH)的分泌(在不同物种和发育阶段已有报道),以及部分抑制正常青春期发作。另外,已经报道了ghrelin在人,大鼠和鸡中的表达和/或直接的性腺行为。总而言之,这些发现记录了生长素释放肽的新生殖方面,其可以与其他神经内分泌整合剂如瘦素一起共同控制能量平衡和生殖。

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