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1
Glucose metabolism during leg exercise in man.人体腿部运动期间的葡萄糖代谢
J Clin Invest. 1971 Dec;50(12):2715-25. doi: 10.1172/JCI106772.
2
Substrate turnover during prolonged exercise in man. Splanchnic and leg metabolism of glucose, free fatty acids, and amino acids.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。
J Clin Invest. 1974 Apr;53(4):1080-90. doi: 10.1172/JCI107645.
3
Amino acid metabolism in exercising man.运动人群的氨基酸代谢
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4
Splanchnic and leg exchange of glucose, amino acids, and free fatty acids during exercise in diabetes mellitus.糖尿病患者运动期间内脏与腿部葡萄糖、氨基酸及游离脂肪酸的交换
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Lactate and glucose exchange across the forearm, legs, and splanchnic bed during and after prolonged leg exercise.长时间腿部运动期间及之后,乳酸和葡萄糖在前臂、腿部及内脏床的交换情况。
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Splanchnic and muscle fructose metabolism during and after exercise.运动期间及运动后的内脏和肌肉果糖代谢
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本文引用的文献

1
The effect of adrenaline and noradrenaline on hepatic blood flow and splanchnic carbohydrate metabolism in man.肾上腺素和去甲肾上腺素对人体肝血流量及内脏碳水化合物代谢的影响
J Physiol. 1951 Dec 28;115(4):430-41. doi: 10.1113/jphysiol.1951.sp004679.
2
Net splanchnic glucose production in normal man and in various disease states.正常人及各种疾病状态下的内脏葡萄糖净生成量。
J Clin Invest. 1950 Nov;29(11):1421-9. doi: 10.1172/JCI102380.
3
EFFECT OF EXERCISE ON THE PERIPHERAL UTILIZATION OF GLUCOSE IN MAN.运动对人体外周葡萄糖利用的影响。
N Engl J Med. 1964 Jul 30;271:220-5. doi: 10.1056/NEJM196407302710502.
4
A METHODOLOGICAL STUDY OF THE ENZYMATIC DETERMINATION OF GLUCOSE IN BLOOD.血液中葡萄糖酶法测定的方法学研究
Scand J Clin Lab Invest. 1963;15:415-28. doi: 10.3109/00365516309079764.
5
Blood glucose metabolism in man during muscular work.人体在肌肉运动期间的血糖代谢。
J Appl Physiol. 1961 Nov;16:1001-5. doi: 10.1152/jappl.1961.16.6.1001.
6
Role of free fatty acids in forearm metabolism in man, quantitated by use of insulin.游离脂肪酸在人体前臂代谢中的作用,通过胰岛素进行定量研究。
J Clin Invest. 1962 Dec;41(12):2191-7. doi: 10.1172/JCI104678.
7
The amount of trapped plasma in a high speed micro-capillary hematocrit centrifuge.高速微量毛细管血细胞比容离心机中捕获的血浆量。
Scand J Clin Lab Invest. 1961;13:642-5. doi: 10.3109/00365516109137338.
8
Studies on adrenaline and noradrenaline in human plasma.人体血浆中肾上腺素和去甲肾上腺素的研究。
Acta Physiol Scand Suppl. 1960;49(173):1-123.
9
Use of glucose oxidase, peroxidase, and O-dianisidine in determination of blood and urinary glucose.葡萄糖氧化酶、过氧化物酶和邻联茴香胺在血液及尿液葡萄糖测定中的应用
Lancet. 1957 Aug 24;273(6991):368-70. doi: 10.1016/s0140-6736(57)92595-3.
10
An enzymatic spectrophotometric method for the determination of pyruvic acid in blood.一种用于测定血液中丙酮酸的酶促分光光度法。
J Lab Clin Med. 1956 Jul;48(1):137-43.

人体腿部运动期间的葡萄糖代谢

Glucose metabolism during leg exercise in man.

作者信息

Wahren J, Felig P, Ahlborg G, Jorfeldt L

出版信息

J Clin Invest. 1971 Dec;50(12):2715-25. doi: 10.1172/JCI106772.

DOI:10.1172/JCI106772
PMID:5129319
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC292221/
Abstract

Arterial concentrations and net substrate exchange across the leg and splanchnic vascular bed were determined for glucose, lactate, pyruvate, and glycerol in healthy postabsorptive subjects at rest and during 40 min of exercise on a bicycle ergometer at work intensities of 400, 800, and 1200 kg-m/min. Rising arterial glucose levels and small decreases in plasma insulin concentrations were found during heavy exercise. Significant arterial-femoral venous differences for glucose were demonstrated both at rest and during exercise, their magnitude increasing with work intensity as well as duration of the exercise performed. Estimated glucose uptake by the leg increased 7-fold after 40 min of light exercise and 10- to 20-fold at moderate to heavy exercise. Blood glucose uptake could at this time account for 28-37% of total substrate oxidation by leg muscle and 75-89% of the estimated carbohydrate oxidation. Splanchnic glucose production increased progressively during exercise reaching levels 3 to 5-fold above resting values at the heavy work loads. Close agreement was observed between estimates of total glucose turnover during exercise based on leg glucose uptake and splanchnic glucose production. Hepatic gluconeogenesis-estimated from splanchnic removal of lactate, pyruvate, glycerol, and glycogenic amino acids-could supply a maximum of 25% of the resting hepatic glucose production but could account for only 6-11% of splanchnic glucose production after 40 min of moderate to heavy exercise. IT IS CONCLUDED THAT: (a) blood glucose becomes an increasingly important substrate for muscle oxidation during prolonged exercise of this type: (b) peripheral glucose utilization increases in exercise despite a reduction in circulating insulin levels: (c) increased hepatic output of glucose, primarily by means of augmented glycogenolysis, contributes to blood glucose homeostasis in exercise and provides an important source of substrate for exercising muscle.

摘要

测定了健康空腹受试者在静息状态以及在自行车测力计上以400、800和1200千克-米/分钟的工作强度进行40分钟运动期间,腿部和内脏血管床中葡萄糖、乳酸、丙酮酸和甘油的动脉浓度及净底物交换情况。在剧烈运动期间,发现动脉葡萄糖水平升高,血浆胰岛素浓度略有下降。在静息和运动期间均显示出葡萄糖的显著动脉-股静脉差异,其幅度随工作强度以及运动持续时间的增加而增大。轻度运动40分钟后,估计腿部对葡萄糖的摄取增加了7倍,中度至重度运动时增加了10至20倍。此时,腿部摄取的血糖可占腿部肌肉总底物氧化的28%-37%,以及估计的碳水化合物氧化的75%-89%。运动期间内脏葡萄糖生成逐渐增加,在重负荷工作时达到比静息值高3至5倍的水平。基于腿部葡萄糖摄取和内脏葡萄糖生成对运动期间总葡萄糖周转率的估计结果之间观察到密切一致。从内脏对乳酸、丙酮酸、甘油和生糖氨基酸的清除情况估计,肝脏糖异生最多可提供静息时肝脏葡萄糖生成的25%,但在中度至重度运动40分钟后,仅占内脏葡萄糖生成的6%-11%。结论如下:(a) 在这种类型的长时间运动中,血糖成为肌肉氧化越来越重要的底物;(b) 尽管循环胰岛素水平降低,但运动中周围葡萄糖利用率仍增加;(c) 肝脏葡萄糖输出增加,主要通过增强糖原分解,有助于运动中的血糖稳态,并为运动肌肉提供重要的底物来源。