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运动强度和训练会改变工作肌肉对全身脂质代谢的贡献。

Contributions of working muscle to whole body lipid metabolism are altered by exercise intensity and training.

作者信息

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

机构信息

Dept. of Integrative Biology, 3060 Valley Life Science Bldg., Univ. of California Berkeley, Berkeley, CA 94720-3140, USA.

出版信息

Am J Physiol Endocrinol Metab. 2007 Jan;292(1):E107-16. doi: 10.1152/ajpendo.00148.2006. Epub 2006 Aug 8.

Abstract

To evaluate the contribution of working muscle to whole body lipid oxidation, we examined the effects of exercise intensity and endurance training (9 wk, 5 days/wk, 1 h, 75% Vo(2 peak)) on whole body and leg free fatty acid (FFA) kinetics in eight male subjects (26 +/- 1 yr, means +/- SE). Two pretraining trials [45 and 65% Vo(2 max) (45UT, 65UT)] and two posttraining trials [65% of pretraining Vo(2 peak) (ABT), and 65% of posttraining Vo(2 peak) (RLT)] were performed using [1-(13)C]palmitate infusion and femoral arteriovenous sampling. Training increased Vo(2 peak) by 15% (45.2 +/- 1.2 to 52.0 +/- 1.8 ml.kg(-1).min(-1), P < 0.05). Muscle FFA fractional extraction was lower during exercise (EX) compared with rest regardless of workload or training status ( approximately 20 vs. 48%, P < 0.05). Two-leg net FFA balance increased from net release at rest ( approximately -36 micromol/min) to net uptake during EX for 45UT (179 +/- 75), ABT (236 +/- 63), and RLT (136 +/- 110) (P < 0.05), but not 65UT (51 +/- 127). Leg FFA tracer measured uptake was higher during EX than rest for all trials and greater during posttraining in RLT (716 +/- 173 micromol/min) compared with pretraining (45UT 450 +/- 80, 65UT 461 +/- 72, P < 0.05). Leg muscle lipid oxidation increased with training in ABT (730 +/- 163 micromol/min) vs. 65UT (187 +/- 94, P < 0.05). Leg muscle lipid oxidation represented approximately 62 and 30% of whole body lipid oxidation at lower and higher relative intensities, respectively. In summary, training can increase working muscle tracer measured FFA uptake and lipid oxidation for a given power output, but both before and after training the association between whole body and leg lipid metabolism is reduced as exercise intensity increases.

摘要

为评估工作肌肉对全身脂质氧化的贡献,我们检测了运动强度和耐力训练(9周,每周5天,每次1小时,75%最大摄氧量)对8名男性受试者(26±1岁,平均值±标准误)全身及腿部游离脂肪酸(FFA)动力学的影响。使用[1-(13)C]棕榈酸输注和股动脉-静脉采样进行了两次训练前试验[45%和65%最大摄氧量(45UT,65UT)]以及两次训练后试验[训练前最大摄氧量峰值的65%(ABT)和训练后最大摄氧量峰值的65%(RLT)]。训练使最大摄氧量峰值提高了15%(从45.2±1.2增至52.0±1.8毫升·千克⁻¹·分钟⁻¹,P<0.05)。无论工作量或训练状态如何,运动期间(EX)肌肉FFA分数提取率均低于静息状态(约20%对48%,P<0.05)。双腿净FFA平衡从静息时的净释放(约-36微摩尔/分钟)增加到45UT(179±75)、ABT(236±63)和RLT(136±110)运动期间的净摄取(P<0.05),但65UT(51±127)未增加。在所有试验中,腿部FFA示踪剂测量的摄取量在运动期间均高于静息状态,且与训练前相比,RLT训练后更高(716±173微摩尔/分钟)(45UT为450±80,65UT为461±72,P<0.05)。ABT组腿部肌肉脂质氧化随训练增加(730±163微摩尔/分钟),而65UT组为(187±94,P<0.05)。在较低和较高相对强度下,腿部肌肉脂质氧化分别约占全身脂质氧化的62%和30%。总之,训练可增加工作肌肉示踪剂测量的FFA摄取量和给定功率输出下的脂质氧化,但在训练前后,随着运动强度增加,全身与腿部脂质代谢之间的关联均减弱。

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