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Effect of multiday exercise on serum hormones and metabolic substrate concentrations in racing sled dogs

机译:多日锻炼对赛车雪橇血清激素和代谢底物浓度的影响

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摘要

Prolonged submaximal exercise relies on the steady delivery of oxidizable substrates to the working muscle, with the sources of those substrates either stored reserves or food absorbed from the gastrointestinal tract during exercise. Fat oxidation could be advantageous for this type of exercise because of potentially greater reserves, but recent studies suggest that athletic dogs remain highly dependent on carbohydrate to fuel exercise despite ingesting a high fat diet. The purpose of this study wasto characterise the pattern of exercise-induced hormone and substrate concentrations as they relate to carbohydrate and fat metabolism during prolonged submaximal exercise in dogs. Two studies (a 10-dog pilot study and a subsequent primary study using 54Alaskan sled dogs) were conducted with the dogs running 160 km/day for 4 or 5 days. Blood samples were obtained within 60 min of cessation of daily exercise and in the second study within 30 min of the start of the next day of exercise. Samples were analysed for key hormones and substrates. Results demonstrated the development of a strong hormonal stimulus for glycogenolysis/ gluconeogenesis that coincided with sparing and replenishment of muscle glycogen. The stimulus for glycogenolysis/ gluconeogenesis tended to diminish during rest periods in the early stages of the exercise challenge, but remained increased during later rest periods and for several days after the conclusion of exercise. These data support the hypothesis that in the face of a high-fat diet, ultra-endurance racing sled dogs rely on large amounts of hepatic glucose output to support prolonged submaximal exercise.
机译:延长的潜水型运动依赖于稳定的氧化基质到工作肌肉,这些底物的来源是在运动期间储存或从胃肠道吸收的食物。由于潜在的储备,脂肪氧化可能是有利的,因为潜在的储备,但最近的研究表明,尽管摄取高脂饮食,运动犬仍然高度依赖于燃料运动的碳水化合物。本研究的目的是致力于在狗的长期潜水运动期间与碳水化合物和脂肪代谢相关的运动诱导的激素和底物浓度的图案。两项研究(使用54 alaskan雪橇犬的10狗试验研究和随后的初级研究)与狗/每天运行4或5天。在每日运动的停止后60分钟内获得血样,并在第二天锻炼的开始30分钟内在第二次研究中。分析样品的键激素和基材。结果表明,糖炎/葡糖生成的强烈荷尔蒙刺激的发展,这与肌肉糖原的备件吻合和补充。糖糖分裂/葡糖苷刺激措施趋于在运动攻击早期阶段的休息期间倾向于减少,但在后来休息期间和锻炼结束后几天仍然增加。这些数据支持假设,面对高脂饮食,超耐久性赛车狗依靠大量的肝葡萄糖产量来支持延长的潜水运动。

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