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人体长时间运动期间的底物周转。内脏和腿部对葡萄糖、游离脂肪酸及氨基酸的代谢。

Substrate turnover during prolonged exercise in man. Splanchnic and leg metabolism of glucose, free fatty acids, and amino acids.

作者信息

Ahlborg G, Felig P, Hagenfeldt L, Hendler R, Wahren J

出版信息

J Clin Invest. 1974 Apr;53(4):1080-90. doi: 10.1172/JCI107645.

Abstract

Arterial concentrations and substrate exchange across the leg and splanchnic vascular beds were determined for glucose, lactate, pyruvate, glycerol, individual acidic and neutral amino acids, and free fatty acids (FFA) in six subjects at rest and during 4 h of exercise at approximately 30% of maximal oxygen uptake. FFA turnover and regional exchange were evaluated using (14)C-labeled oleic acid. The arterial glucose concentration was constant for the first 40 min of exercise, but fell progressively thereafter to levels 30% below basal. The arterial insulin level decreased continuously, while the arterial glucagon concentration had risen fivefold after 4 h of exercise. Uptake of glucose and FFA by the legs was markedly augmented during exercise, the increase in FFA uptake being a consequence of augmented arterial levels rather than increased fractional extraction. As exercise was continued beyond 40 min, the relative contribution of FFA to total oxygen metabolism rose progressively to 62%. In contrast, the contribution from glucose fell from 40% to 30% between 90 and 240 min. Leg output of alanine increased as exercise progressed. Splanchnic glucose production, which rose 100% above basal levels and remained so throughout exercise, exceeded glucose uptake by the legs for the first 40 min but thereafter failed to keep pace with peripheral glucose utilization. Total estimated splanchnic glucose output was 75 g in 4 h, sufficient to deplete approximately 75% of liver glycogen stores. Splanchnic uptake of gluconeogenic precursors (lactate, pyruvate, glycerol, alanine) had increased 2- to 10-fold after 4 h of exercise, and was sufficient to account for 45% of glucose release at 4 h as compared to 20-25% at rest and at 40 min of exercise. In the case of alanine and lactate, the increase in precursor uptake was a consequence of a rise in splanchnic fractional extraction. It is concluded that during prolonged exercise at a low work intensity (a) blood glucose levels fall because hepatic glucose output fails to keep up with augmented glucose utilization by the exercising legs; (b) a large portion of hepatic glycogen stores is mobilized and an increasing fraction of the splanchnic glucose output is derived from gluconeogenesis; (c) blood-borne substrates in the form of glucose and FFA account for a major part of leg muscle metabolism, the relative contribution from FFA increasing progressively; and (d) augmented secretion of glucagon may play an important role in the metabolic adaptation to prolonged exercise by its stimulatory influence on hepatic glycogenolysis and gluconeogenesis.

摘要

测定了6名受试者在静息状态以及在约为最大摄氧量30%的强度下运动4小时期间,腿部和内脏血管床中葡萄糖、乳酸、丙酮酸、甘油、单个酸性和中性氨基酸以及游离脂肪酸(FFA)的动脉浓度和底物交换情况。使用(14)C标记的油酸评估FFA的周转率和区域交换。运动开始的前40分钟,动脉葡萄糖浓度保持恒定,但此后逐渐下降,降至比基础水平低30%的水平。动脉胰岛素水平持续下降,而运动4小时后动脉胰高血糖素浓度升高了五倍。运动期间腿部对葡萄糖和FFA的摄取显著增加,FFA摄取的增加是动脉水平升高的结果,而非分数提取增加。随着运动持续超过40分钟,FFA对总氧代谢的相对贡献逐渐上升至62%。相比之下,葡萄糖的贡献在90至240分钟之间从40%降至30%。随着运动进行,腿部丙氨酸输出增加。内脏葡萄糖生成比基础水平升高了100%,且在整个运动过程中保持如此,在运动的前40分钟超过了腿部对葡萄糖的摄取,但此后未能跟上外周葡萄糖利用的速度。估计4小时内内脏总葡萄糖输出量为75克,足以消耗约75%的肝糖原储备。运动4小时后,内脏对糖异生前体(乳酸、丙酮酸、甘油、丙氨酸)的摄取增加了2至10倍,与静息状态和运动40分钟时的20 - 25%相比,足以在4小时时占葡萄糖释放量的45%。就丙氨酸和乳酸而言,前体摄取的增加是内脏分数提取增加的结果。结论是,在低强度长时间运动期间:(a)血糖水平下降是因为肝脏葡萄糖输出无法跟上运动腿部增加的葡萄糖利用;(b)动员了很大一部分肝糖原储备,且内脏葡萄糖输出中越来越大的部分来自糖异生;(c)血液中葡萄糖和FFA形式的底物占腿部肌肉代谢的主要部分,FFA的相对贡献逐渐增加;(d)胰高血糖素分泌增加可能通过其对肝糖原分解和糖异生的刺激作用,在对长时间运动的代谢适应中发挥重要作用。

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