首页> 外文期刊>The Journal of Physiology >Dissociation between lactate and proton exchange in muscle during intense exercise in man.
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Dissociation between lactate and proton exchange in muscle during intense exercise in man.

机译:在人类剧烈运动过程中,肌肉中乳酸和质子交换之间的解离。

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1. Transport of lactate, H+ and fluid across muscle sarcolemma was studied in contracting muscles under varying blood acid-base conditions. 2. Subjects performed two-legged submaximal knee-extensor exercise for 29-35 min consisting of warming up for 5 min followed by 10 min of leg exercise (L1), leg and arm exercise for 6-10 min (L2 + A) and leg exercise for 10 min (L3). The experimental protocol was performed on two occasions; inspiring air (normoxia, N) or breathing 14% O2 in N2 (hypoxia, H). Leg blood flow was measured and femoral arterial and venous blood was sampled before and during each phase of exercise. 3. Arterial blood lactate concentration increased progressively during exercise to 5.9 +/- 0.8 (N) and 8.2 +/- 0.8 mmol l-1 (H) (P < 0.05) after 5.5 min of L2 + A. Arterial blood pH was higher (P < 0.05) in H than in N, whereas arterial blood HCO3- concentrations were the same. Leg lactate release was higher in H than in N (3.1 +/- 0.7 vs. 2.0 mmol l-1 (P < 0.05) during L1. In L2 + A a net uptake of lactate was observed in both N and H. The concentration of lactate in the red blood cells increased during exercise to 2.3 +/- 0.4 (N) and 4.3 +/- 0.7 mmol l-1 (H) (P < 0.05) after 5.5 min of L2 + A, but no red blood cell femoral arterial-venous lactate difference was observed. 4. Net proton release, estimated from actual base excess (ABE) adjusted for changes in reduced haemoglobin, was significant (P < 0.05) both at rest and during each phase of exercise. Furthermore, the difference between net proton and lactate release was positive throughout exercise and of similar magnitude in N and H. 5. The present data suggest that (1) H+ exchange in muscle during submaximal exercise can to a large extent occur through mechanisms other than via coupling to lactate; (2) muscle transport of H+ is insensitive to changes in blood pH in the range of 0.02-0.08 pH units; (3) transport of lactate across the membrane of red blood cells appears to be of minor importance for lactate release from active muscles.
机译:1.研究了在各种血液酸碱条件下收缩肌肉时乳酸,H +和液体在肌肉肌膜间的运输。 2.受试者进行了两腿次最大屈伸训练,持续时间为29-35分钟,包括热身5分钟,然后进行10分钟的腿部锻炼(L1),腿部和手臂运动6-10分钟(L2 + A),以及腿部锻炼10分钟(L3)。实验方案进行了两次。吸入空气(常氧,N)或呼吸N2中的14%O2(低氧,H)。在运动的每个阶段之前和期间,测量腿部血流量并取样股动脉和静脉血。 3.在运动L2 + A 5.5分钟后,运动期间动脉血乳酸浓度逐渐增加至5.9 +/- 0.8(N)和8.2 +/- 0.8 mmol l-1(H)(P <0.05)。动脉血pH值较高(H)(P <0.05)高于氮(N),而动脉血中HCO3-的浓度相同。在L1期间,H中的腿部乳酸释放高于N(3.1 +/- 0.7 vs. 2.0 mmol l-1(P <0.05)。在L2 + A中,N和H均观察到乳酸的净吸收。 L2 + A 5.5分钟后,运动期间红细胞中乳酸的含量增加至2.3 +/- 0.4(N)和4.3 +/- 0.7 mmol l-1(H)(P <0.05),但没有红细胞观察到了股动脉-静脉乳酸的差异4.根据运动后和运动各阶段的实际碱性过剩量(ABE)估计的净质子释放量,经校正后的血红蛋白减少量,均显着(P <0.05)。整个运动过程中净质子和乳酸释放之间的差异为正,N和H的大小相似。5.现有数据表明:(1)次最大运动过程中肌肉中的H +交换可能在很大程度上通过除与乳酸;(2)H +的肌肉运输对血液pH在0.02-0.08 pH单位范围内的变化不敏感;(3)tra乳酸跨红细胞膜的运动对于从活动肌肉释放乳酸似乎次要。

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