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Counter-Regulatory Response to a Fall in Circulating Fatty Acid Levels in Rainbow Trout. Possible Involvement of the Hypothalamus-Pituitary-Interrenal Axis

机译:对虹鳟鱼中循环脂肪酸水平下降的反调节反应。下丘脑-垂体-肾轴的可能参与

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摘要

We hypothesize that a decrease in circulating levels of fatty acid (FA) in rainbow trout Oncorhynchus mykiss would result in the inhibition of putative hypothalamic FA sensing systems with concomitant changes in the expression of orexigenic and anorexigenic factors ultimately leading to a stimulation of food intake. To assess this hypothesis, we lowered circulating FA levels treating fish with SDZ WAG 994 (SDZ), a selective A1 adenosine receptor agonist that inhibits lipolysis. In additional groups, we also evaluated if the presence of intralipid was able to counteract changes induced by SDZ treatment, and the possible involvement of the hypothalamus-pituitary-interrenal (HPI) axis by treating fish with SDZ in the presence of metyrapone, which decreases cortisol synthesis in fish. The decrease in circulating levels of FA in rainbow trout induced a clear increase in food intake that was associated with the decrease of the anorexigenic potential in hypothalamus (decreased POMC-A1 and CART mRNA abundance), and with changes in several parameters related to putative FA-sensing mechanisms in hypothalamus. Intralipid treatment counteracted these changes. SDZ treatment also induced increased cortisol levels and the activation of different components of the HPI axis whereas these changes disappeared in the presence of intralipid or metyrapone. These results suggest that the HPI axis is involved in a counter-regulatory response in rainbow trout to restore FA levels in plasma.
机译:我们假设虹鳟鱼Onkihynchus mykiss中脂肪酸(FA)的循环水平降低会导致假定的下丘脑FA传感系统受到抑制,同时伴随致食性和厌食性因子表达的变化,最终导致食物摄取量增加。为了评估这一假设,我们降低了用SDZ WAG 994(SDZ)处理鱼类的循环FA水平,SDZ WAG 994是一种抑制脂解的选择性A1腺苷受体激动剂。在其他组中,我们还评估了脂质内的存在是否能够抵消SDZ治疗所引起的变化,以及在甲吡酮存在下通过用SDZ处理鱼来降低下丘脑-垂体-肾间(HPI)轴可能的参与,这会降低鱼中的皮质醇合成。虹鳟鱼中FA循环水平的降低导致食物摄入量明显增加,这与下丘脑的厌食症潜力降低(POMC-A1和CART mRNA丰度降低)以及与假定FA相关的几个参数的改变有关下丘脑的感觉机制。脂质内治疗抵消了这些变化。 SDZ处理还诱导皮质醇水平升高和HPI轴不同组成部分的激活,而这些变化在脂质内或甲吡酮存在下消失。这些结果表明,HPI轴参与虹鳟鱼的反调节反应,以恢复血浆中的FA水平。

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