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The Effects of Ghrelin on Energy Balance and Psychomotor Activity in a Goldfish Model: An Overview

机译:Ghrelin对金鱼模型中能量平衡和精神运动活动的影响:概述

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The goldfish (Carassius auratus) has a number of merits as a laboratory animal, and we have extensively identified the mechanisms by which ghrelin regulates food intake in this species. For the first time, we have purified and characterized 11 molecular variants of ghrelin that are present in goldfish intestine and shown that 17-residue ghrelin, the predominant form withn-octanoyl modification, is biologically active and implicated in the regulation of food intake as an endogenous orexigenic factor. Ghrelin and its receptor system are present not only in peripheral tissues such as stomach and intestine, but also in the central nervous system. Recent studies have also revealed that a number of neuropeptides are widely distributed in the brain in key areas of emotional regulation, and their role as modulators of behavioral states is being increasingly recognized. Interestingly, administration of ghrelin induces an orexigenic effect and also modifies locomotor activity, suggesting the involvement of ghrelin in feeding control and regulation of energy balance. Information derived from studies of ghrelin has been increasing, and important results have been obtained from both fish and mammals. Here, we present an overview of the effects of ghrelin on energy balance and psychomotor activity in the goldfish as an animal model. The available data provide an insight into evolutionary background of ghrelin's multiple actions on energy homeostasis in vertebrates.
机译:金鱼(Carassius auratus)作为实验动物有许多优点,我们已经广泛确定了生长素释放肽调节该物种食物摄入的机制。首次,我们纯化并鉴定了金鱼肠中存在的ghrelin的11种分子变体,并显示17个残基的ghrelin(具有正辛酰基修饰的主要形式)具有生物活性,并参与了食物摄入的调控。内源性致癌因子。 Ghrelin及其受体系统不仅存在于诸如胃和肠的外围组织中,而且还存在于中枢神经系统中。最近的研究还表明,许多神经肽广泛分布于大脑的情绪调节关键区域,其作为行为状态调节剂的作用正日益得到认可。有趣的是,生长激素释放肽的施用诱导了致食作用,并且还改变了运动活性,表明生长激素释放肽参与了进食控制和能量平衡的调节。从生长素释放肽的研究中获得的信息不断增加,并且从鱼类和哺乳动物中都获得了重要的结果。在这里,我们概述了生长素释放肽对作为动物模型的金鱼的能量平衡和精神运动活动的影响。现有数据提供了对ghrelin对脊椎动物能量稳态的多重作用的进化背景的见解。

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