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首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Metabolic response in liver and Brockmann bodies of rainbow trout to inhibition of lipolysis; possible involvement of the hypothalamus-pituitary-interrenal (HPI) axis
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Metabolic response in liver and Brockmann bodies of rainbow trout to inhibition of lipolysis; possible involvement of the hypothalamus-pituitary-interrenal (HPI) axis

机译:虹鳟鱼肝脏和布罗克曼体内对脂肪分解抑制的代谢反应;下丘脑-垂体-肾(HPI)轴可能参与

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We previously demonstrated in rainbow trout that the decrease in circulating levels of fatty acid (FA) induced by treating fish with SDZ WAG 994 (SDZ) induced a counter-regulatory response in which the activation of the hypothalamus-pituitary-interrenal (HPI, equivalent to mammalian hypothalamus-pituitary-adrenal) axis was likely involved. This activation, probably not related to the control of food intake through FA sensor systems but to the modulation of lipolysis in peripheral tissues, liver and Brockmann bodies (BB, the main site of pancreatic endocrine cells in fish), would target the restoration of FA levels in plasma. To assess this hypothesis, we lowered circulating FA levels by treating fish with SDZ alone, or SDZ in the presence of metyrapone (an inhibitor of cortisol synthesis). In liver, the changes observed were not compatible with a direct FA-sensing response but with a stress response, which allows us to suggest that the detection of a FA decrease in the hypothalamus elicits a counter-regulatory response in liver, resulting in an activation of lipolysis to restore FA levels in plasma. The activation of these metabolic changes in liver could be attributable to the activation of the HPI axis and/or to the action of sympathetic pathways. In contrast, in BB, changes in circulating FA levels induce changes in several parameters compatible with the function of FA-sensing systems informing about the decrease in circulating FA levels.
机译:我们之前在虹鳟鱼中证明,通过用SDZ WAG 994(SDZ)处理鱼而诱导的脂肪酸(FA)循环水平的降低诱导了反调节反应,其中下丘脑-垂体-肾间腺(HPI,等价物)的激活可能与哺乳动物下丘脑-垂体-肾上腺轴有关。这种激活可能与通过FA传感器系统控制食物摄入无关,但与周围组织,肝脏和Brockmann体(BB,鱼中胰腺内分泌细胞的主要部位)脂解的调节有关,将以FA的恢复为目标。血浆水平。为了评估该假设,我们通过单独使用SDZ或在甲吡酮(皮质醇合成抑制剂)存在下使用SDZ处理鱼来降低循环FA水平。在肝脏中,观察到的变化与直接的FA感应反应不相容,但与压力反应不相容,这使我们建议检测下丘脑中FA的减少会引起肝脏的反调节反应,从而导致激活解脂以恢复血浆中FA的水平。肝脏中这些代谢变化的激活可能归因于HPI轴的激活和/或交感神经通路的作用。相反,在BB中,循环FA水平的变化引起与FA传感系统功能兼容的几个参数的变化,从而告知循环FA水平的降低。

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