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Central Treatment of Ketone Body in Rainbow Trout Alters Liver Metabolism Without Apparently Altering the Regulation of Food Intake

机译:虹鳟鱼酮体的中央治疗改变了肝脏的代谢而没有明显改变食物摄入的规律

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摘要

We hypothesize that the presence in fish brain of a ketone body (KB) like β-hydroxybutyrate (BHB) alters energy homeostasis through effects on food intake and peripheral energy metabolism. Using rainbow trout (Oncorhynchus mykiss) as a model, we intracerebroventricularly (ICV) administered 1 μl 100 g–1 body mass of saline solution alone (control) or containing 0.5 μmol of BHB. In a fist set of experiments, BHB did not affect food intake 6 and 24 h after treatment. In a second set of experiments, we evaluated 6 h after ICV BHB treatment changes in parameters putatively related to food intake control in brain areas (hypothalamus and hindbrain) involved in nutrient sensing and changes in energy metabolism in liver. The absence of changes in food intake might relate to the absence of major changes in the cascade of events from the detection of KB through ketone-sensing mechanisms, changes in transcription factors, and changes in the mRNA abundance of neuropeptides regulating food intake. This response is different than that of mammals. In contrast, central administration of BHB induced changes in liver energy metabolism suggesting a decreased use of glucose and probably an enhanced use of amino acid and lipid. These responses in liver are different to those of mammals under similar treatments but comparable to those occurring in fish under food deprivation conditions.
机译:我们假设鱼脑中存在像β-羟基丁酸酯(BHB)这样的酮体(KB),它通过影响食物摄入和周围能量代谢来改变能量稳态。以虹鳟鱼(Oncorhynchus mykiss)为模型,我们脑室内(ICV)单独施用1μl100 g 体重的盐水溶液(对照)或含0.5μmolBHB。在第一组实验中,BHB在治疗后6和24小时不影响食物摄入。在第二组实验中,我们评估了ICV BHB治疗后6小时推定的与营养感应和肝脏能量代谢变化有关的大脑区域(下丘脑和后脑)食物摄入控制相关参数的变化。食物摄入量的变化可能与酮检测机制通过检测KB引起的事件级联中的主要变化,转录因子的变化以及调节食物摄入的神经肽的mRNA丰度发生变化有关。这种反应不同于哺乳动物。相比之下,BHB的中央给药可引起肝脏能量代谢的变化,提示减少了葡萄糖的使用,并可能增加了氨基酸和脂质的使用。在肝脏中的这些反应与在相似处理下的哺乳动物的反应不同,但与在食物缺乏条件下在鱼类中发生的反应相当。

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