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Fuel metabolism in Canada geese: effects of glucagon on glucose kinetics

机译:加拿大鹅的燃料代谢:胰高血糖素对葡萄糖动力学的影响

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摘要

During prolonged fasting, birds must rely on glucose mobilization to maintain normoglycemia. Glucagon is known to modulate avian energy metabolism during prolonged fasting, but the metabolic effects of this hormone on longdistance migrant birds have never been investigated. Our goal was to determine whether glucagon regulates the mobilization of the main lipid and carbohydrate fuels in migrant birds. Using the Canada goose {Branta canadensis) as a model species, we looked for evidence of fuel mobilization via changes in metabolite concentrations. No changes could be found for any lipid fraction, but glucagon elicited a strong increase in glucose concentration. Therefore, we aimed to quantify the effects of this hormone on glucose kinetics using continuous infusion of 6-[3H]-D-glucose. Glucagon was found to cause a 50% increase in glucose mobilization (from 22.2 ± 2.4 |j,mol-kg~1-min~1 to 33.5 ± 3.3 |xmol-kg~1-min~1) and, together with an unchanged rate of carbohydrate oxidation, led to a 90% increase in plasma glucose concentration. This hormone also led to a twofold increase in plasma lactate concentration. No changes in plasma lipid concentration or composition were observed. This study is the first to demonstrate how glucagon modulates glucose kinetics in a long-distance migrant bird and to quantify its rates of glucose mobilization.
机译:在长期禁食期间,鸟类必须依赖于葡萄糖动员以维持正常血糖。众所周知,胰高血糖素在长期禁食期间调节禽能代谢,但从未调查过这种激素对龙岩移植鸟类的代谢效应。我们的目标是确定胰高血糖素是否调节动员在移民鸟类中的主要脂质和碳水化合物燃料。使用加拿大鹅{Branta Canadensis)作为模型物种,我们寻找通过代谢物浓度的变化来调动燃料动员的证据。任何脂质分数都没有发现任何变化,但胰高血糖素引发了葡萄糖浓度的强烈增加。因此,我们旨在使用连续输注6-[3H] -D-葡萄糖量化该激素对葡萄糖动力学的影响。发现胰胰高血糖素导致葡萄糖动员的50%(从22.2±2.4 | j,mol-kg〜1-min〜1至33.5±3.3 | xmol-kg〜1-min〜1),以及与不变的碳水化合物氧化率,导致血浆葡萄糖浓度增加90%。这种激素还导致血浆乳酸浓度的两倍增加。没有观察到血浆脂质浓度或组合物的变化。本研究是第一个展示胰高血糖素如何在长距离移民鸟类中调节葡萄糖动力学的旨在如何计算其葡萄糖动员的速率。

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