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耐力训练对活跃肌肉中的游离脂肪酸、脂蛋白胆固醇或甘油三酯净平衡几乎没有影响。

Endurance training has little effect on active muscle free fatty acid, lipoprotein cholesterol, or triglyceride net balances.

作者信息

Jacobs Kevin A, Krauss Ronald M, Fattor Jill A, Horning Michael A, Friedlander Anne L, Bauer Timothy A, Hagobian Todd A, Wolfel Eugene E, Brooks George A

机构信息

University of California, Berkeley, CA 94720-3140, USA.

出版信息

Am J Physiol Endocrinol Metab. 2006 Sep;291(3):E656-65. doi: 10.1152/ajpendo.00020.2006. Epub 2006 May 9.

Abstract

We evaluated the hypothesis that net leg total FFA, LDL-C, and TG uptake and HDL-C release during moderate-intensity cycling exercise would be increased following endurance training. Eight sedentary men (26 +/- 1 yr, 77.4 +/- 3.7 kg) were studied in the postprandial state during 90 min of rest and 60 min of exercise twice before (45% and 65% V(O2 peak)) and twice after 9 wk of endurance training (55% and 65% posttraining V(O2 peak)). Measurements across an exercising leg were taken to be a surrogate for active skeletal muscle. To determine limb lipid exchange, femoral arterial and venous blood samples drawn simultaneously at rest and during exercise were analyzed for total and individual FFA (e.g., palmitate, oleate), LDL-C, HDL-C, and TG concentrations, and limb blood flow was determined by thermodilution. The transition from rest to exercise resulted in a shift from net leg total FFA release (-44 +/- 16 micromol/min) to uptake (193 +/- 49 micromol/min) that was unaffected by either exercise intensity or endurance training. The relative net leg release and uptake of individual FFA closely resembled their relative abundances in the plasma with approximately 21 and 41% of net leg total FFA uptake during exercise accounted for by palmitate and oleate, respectively. Endurance training resulted in significant changes in arterial concentrations of HDL-C (49 +/- 5 vs. 52 +/- 5 mg/dl, pre vs. post) and LDL-C (82 +/- 9 vs. 76 +/- 9 mg/dl, pre vs. post), but there was no net TG or LDL-C uptake or HDL-C release across the resting or active leg before or after endurance training. In conclusion, endurance training favorably affects blood lipoprotein profiles, even in young, healthy normolipidemic men, but muscle contractions per se have little effect on net leg LDL-C, or TG uptake or HDL-C release during moderate-intensity cycling exercise. Therefore, the favorable effects of physical activity on the lipid profiles of young, healthy normolipidemic men in the postprandial state are not attributable to changes in HDL-C or LDL-C exchange across active skeletal muscle.

摘要

我们评估了这样一个假设

耐力训练后,中等强度骑行运动期间腿部净总游离脂肪酸(FFA)、低密度脂蛋白胆固醇(LDL-C)和甘油三酯(TG)的摄取以及高密度脂蛋白胆固醇(HDL-C)的释放会增加。研究了8名久坐不动的男性(26±1岁,77.4±3.7千克),在餐后状态下进行90分钟休息和60分钟运动,训练前进行两次(分别为45%和65%的最大摄氧量(V̇O₂peak)),9周耐力训练后进行两次(分别为训练后55%和65%的V̇O₂peak)。对运动腿部进行测量,以此作为活跃骨骼肌的替代指标。为了确定肢体脂质交换情况,在休息和运动期间同时采集股动脉和静脉血样,分析总FFA和各FFA(如棕榈酸、油酸)、LDL-C、HDL-C和TG浓度,并通过热稀释法测定肢体血流量。从休息到运动的转变导致腿部从净总FFA释放(-44±16微摩尔/分钟)转变为摄取(193±49微摩尔/分钟),这不受运动强度或耐力训练的影响。各FFA在腿部的相对净释放和摄取情况与其在血浆中的相对丰度密切相似,运动期间腿部总FFA摄取中约21%和41%分别由棕榈酸和油酸所致。耐力训练导致HDL-C(训练前49±5与训练后52±5毫克/分升)和LDL-C(训练前82±9与训练后76±9毫克/分升)的动脉浓度发生显著变化,但耐力训练前后,静息或运动腿部均未出现净TG或LDL-C摄取或HDL-C释放。总之,耐力训练对血液脂蛋白谱有有利影响,即使在年轻、健康的血脂正常男性中也是如此,但在中等强度骑行运动期间,肌肉收缩本身对腿部净LDL-C、TG摄取或HDL-C释放影响很小。因此,体力活动对餐后状态下年轻、健康的血脂正常男性脂质谱的有利影响并非归因于活跃骨骼肌中HDL-C或LDL-C交换的变化。

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