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人体递增动态运动过程中的肌肉肉碱代谢

Muscle carnitine metabolism during incremental dynamic exercise in humans.

作者信息

Sahlin K

机构信息

Department of Clinical Physiology, Karolinska Institute, Huddinge University Hospital, Sweden.

出版信息

Acta Physiol Scand. 1990 Mar;138(3):259-62. doi: 10.1111/j.1748-1716.1990.tb08845.x.

Abstract

The changes in muscle content of carnitine and acetylcarnitine have been studied during incremental dynamic exercise. Six subjects exercised for 10 min on an ergometer at 40 and 75% of their maximal oxygen uptake (VO2 max) and to fatigue at 100% of VO2 max (about 4 min). Muscle samples were taken from the quadriceps femoris muscle at rest and after exercise. Muscle content of free carnitine was (means +/- SE) 15.9 +/- 1.7 mmol kg-1 d.wt (dry weight) at rest and remained unchanged after exercise at low intensity but decreased to 5.9 +/- 0.6 and 4.6 +/- 0.5 mmol kg-1 d.wt after exercise at 75 and 100% of VO2 max respectively. Acetylcarnine content at rest was 6.9 +/- 1.9 mmol kg-1 d.wt and increased during exercise in correspondence with the decrease in free carnitine. Muscle content of pyruvate and lactate was unchanged after exercise at 40% of VO2 max but increased at the higher intensities. The parallel increases in acetylcarnitine, pyruvate and lactate indicate that formation of acetylcarnitine is augmented when the availability of glycolytic three-carbon metabolites is high and is consistent with the idea that acetylcarnitine provides a sink for pyruvate and acetyl CoA. This could be of importance for the maintenance of an adequate level of CoA and thus function of the tricarboxylic acid cycle.

摘要

在递增动态运动过程中,对肉碱和乙酰肉碱的肌肉含量变化进行了研究。六名受试者在测力计上以其最大摄氧量(VO₂ max)的40%和75%进行10分钟运动,并以VO₂ max的100%运动至疲劳(约4分钟)。在休息时和运动后从股四头肌采集肌肉样本。游离肉碱的肌肉含量在休息时为(均值±标准误)15.9±1.7 mmol·kg⁻¹干重,低强度运动后保持不变,但在VO₂ max的75%和100%运动后分别降至5.9±0.6和4.6±0.5 mmol·kg⁻¹干重。休息时乙酰肉碱含量为6.9±1.9 mmol·kg⁻¹干重,运动期间随着游离肉碱的减少而增加。在VO₂ max的40%运动后,丙酮酸和乳酸的肌肉含量未发生变化,但在更高强度时增加。乙酰肉碱、丙酮酸和乳酸的平行增加表明当糖酵解三碳代谢物的可用性较高时,乙酰肉碱的形成会增加,这与乙酰肉碱为丙酮酸和乙酰辅酶A提供一个“汇”的观点一致。这对于维持足够水平的辅酶A以及三羧酸循环的功能可能具有重要意义。

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