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动态运动后I型和II型人体肌纤维中的NADH含量

NADH content in type I and type II human muscle fibres after dynamic exercise.

作者信息

Ren J M, Henriksson J, Katz A, Sahlin K

机构信息

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

出版信息

Biochem J. 1988 Apr 1;251(1):183-7. doi: 10.1042/bj2510183.

Abstract

The effect of dynamic exercise on the NADH content of human type I (slow-twitch) and II (fast-twitch) muscle fibres was investigated. Muscle biopsy samples were obtained from the quadriceps femoris of seven healthy subjects at rest and after bicycle exercise at 40, 75 and 100% of the maximal oxygen uptake [VO2(max.)]. At rest and after exercise at 100% VO2(max.), muscle NADH content was significantly higher (P less than 0.05) in type I than in type II fibres. After exercise at 40% VO2(max.), muscle NADH decreased in type I fibres (P less than 0.01), but was not significantly changed in type II fibres. After exercise at 75 and 100% VO2(max.), muscle NADH increased above the value at rest in both type I and II fibres (P less than 0.05). Muscle lactate was unchanged at 40% VO2(max.), but increased 20- and 60-fold after exercise at 75 and 100% VO2(max.) respectively. The finding that NADH decreased only in type I fibres at 40% VO2(max.) supports the idea that type I is the fibre type predominantly recruited during low-intensity exercise. The increase of NADH in both fibre types after exercise at 75% and 100% VO2(max.) suggests that the availability of oxygen relative to the demand is decreased in both fibre types at high exercise intensities.

摘要

研究了动态运动对人体I型(慢肌纤维)和II型(快肌纤维)肌纤维中NADH含量的影响。从7名健康受试者的股四头肌获取肌肉活检样本,分别在静息状态以及在最大摄氧量[VO2(max.)]的40%、75%和100%进行自行车运动后采集样本。在静息状态和100%VO2(max.)运动后,I型肌纤维中的肌肉NADH含量显著高于II型肌纤维(P<0.05)。在40%VO2(max.)运动后,I型肌纤维中的肌肉NADH含量下降(P<0.01),而II型肌纤维中的含量无显著变化。在75%和100%VO2(max.)运动后,I型和II型肌纤维中的肌肉NADH含量均高于静息值(P<0.05)。在40%VO2(max.)运动时肌肉乳酸含量未变,但在75%和100%VO2(max.)运动后分别增加了20倍和60倍。在40%VO2(max.)时仅I型肌纤维中的NADH下降这一发现支持了I型肌纤维是低强度运动时主要募集的纤维类型这一观点。在75%和100%VO2(max.)运动后两种肌纤维中的NADH均增加,这表明在高运动强度下两种肌纤维中相对于需求的氧供应均减少。

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