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Energy provision from glycogen, glucose, and fatty acids on adrenergic stimulation of isolated working rat hearts.

机译:糖原,葡萄糖和脂肪酸对肾上腺能刺激离体大鼠的能量提供。

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摘要

We postulated that glycogen is a significant energy substrate compared with fatty acids and glucose in response to adrenergic stimulation of working rat hearts. Oxidation rates were determined at 1-min intervals by release of 3H2O from [9,10-(3)H]oleate (0.4 mM, 1% albumin) and 14CO2 from exogenous [U-14C]glucose (5 mM) or, by a pulse-chase method, from [14C]glycogen. We estimated the 14C enrichment of glycogen metabolized at each time point to determine true rates of glycogen use. Based on the pattern of glycogen enrichment over time, glycogenolysis did not exhibit a high degree of preference for newly synthesized glycogen. Epinephrine (1 microM) increased contractile performance 86% but did not stimulate oleate oxidation. The increased energy demand was supplied by carbohydrates, initially by a burst of glycogenolysis (contributing 35% to total ATP synthesis for 5 min) and followed by delayed increase in the use of exogenous glucose (eventually contributing 29% to ATP synthesis). On the basis of the release of 14CO2 and [14C]lactate specifically from glucose or glycogen, we found that a larger portion of glycogen was oxidized compared with exogenous glucose, augmenting the yield of ATP from glycogen. Thus the heart responds to an acute increase in energy demand by selective oxidation of glycogen.
机译:我们推测,与脂肪酸和葡萄糖相比,糖原是对正在工作的大鼠心脏进行肾上腺素能刺激的重要能量底物。通过从[9,10-(3)H]油酸酯(0.4 mM,1%白蛋白)中释放3H2O和从外源[U-14C]葡萄糖(5 mM)中释放14CO2来确定氧化速率,间隔为1分钟。 [14C]糖原的脉冲追踪方法。我们估计了每个时间点代谢的糖原的14C富集,以确定糖原使用的真实速率。基于糖原随时间的富集模式,糖原分解对新合成的糖原并未表现出高度的偏好。肾上腺素(1 microM)使收缩性能提高86%,但没有刺激油酸盐氧化。碳水化合物增加了能量需求,首先是糖原分解的爆发(在5分钟内占总ATP合成的35%),然后是外源葡萄糖使用的延迟增加(最终占ATP合成的29%)。根据葡萄糖或糖原中14CO2和[14C]乳酸盐的释放,我们发现与外源葡萄糖相比,糖原的大部分被氧化,从而增加了糖原中ATP的产量。因此,心脏通过糖原的选择性氧化来响应能量需求的急剧增加。

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