Sahlin K
Pflugers Arch. 1985 Feb;403(2):193-6. doi: 10.1007/BF00584099.
The influence of high-intensity bicycle exercise on the redox level and lactate accumulation in skeletal muscle (m. quadriceps femoris) of man has been investigated. Six subjects exercised to exhaustion at a load corresponding to 100% VO2max. Muscle content of NADH, determined by the bioluminescence technique, increased from (means +/- SEM) 0.089 +/- 0.007 mmol/kg dry wt. at rest to 0.190 +/- 0.031 after 2 min of exercise (P less than 0.05) and to 0.213 +/- 0.021 at exhaustion (P less than 0.05). Values after 2 min exercise and at exhaustion were not statistically different (P greater than 0.05). Muscle lactate was increased 13-fold after 2 min of exercise and 22-fold at exhaustion as compared to the resting value. After 10 min recovery NADH was restored back to the pre-exercise level whereas muscle lactate was still elevated. The increase of muscle NADH during exercise is in contrast to earlier studies on isolated animal muscles, where an oxidation of NADH was observed during contractions. The difference might be due to the experimental model (isolated muscle vs. in vivo) or to the analytical method (qualitative data by reflectance fluorimetri from the surface of intact muscle vs. quantitative data from muscle extracts). Calculations of the cytosolic NADH concentration from the lactate dehydrogenase equilibrium show that 95% or more of the NADH is confined to the mitochondrial compartment. The observed increase of muscle NADH therefore imply that the redox potential of the mitochondria is decreased during intense exercise.(ABSTRACT TRUNCATED AT 250 WORDS)
研究了高强度自行车运动对人体骨骼肌(股四头肌)氧化还原水平和乳酸积累的影响。六名受试者在相当于100%最大摄氧量的负荷下运动至力竭。通过生物发光技术测定,肌肉中NADH的含量从静息时的(平均值±标准误)0.089±0.007 mmol/kg干重增加到运动2分钟后的0.190±0.031(P<0.05),力竭时增加到0.213±0.021(P<0.05)。运动2分钟后和力竭时的值无统计学差异(P>0.05)。与静息值相比,运动2分钟后肌肉乳酸增加了13倍,力竭时增加了22倍。恢复10分钟后,NADH恢复到运动前水平,而肌肉乳酸仍升高。运动期间肌肉NADH的增加与早期对分离的动物肌肉的研究相反,在早期研究中,收缩期间观察到NADH的氧化。差异可能是由于实验模型(分离的肌肉与体内)或分析方法(通过完整肌肉表面反射荧光测定的定性数据与肌肉提取物的定量数据)。根据乳酸脱氢酶平衡计算细胞溶质NADH浓度表明,95%或更多的NADH局限于线粒体部分。因此,观察到的肌肉NADH增加意味着剧烈运动期间线粒体的氧化还原电位降低。(摘要截断于250字)