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Skeletal muscle metabolism during exercise and recovery in patients with respiratory failure.

机译:呼吸衰竭患者运动和恢复期间的骨骼肌代谢。

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摘要

BACKGROUND--Patients with respiratory failure have early fatiguability which may be due to limitation of oxygen supply for oxidative (mitochondrial) ATP synthesis. Skeletal muscle in exercise and recovery was studied to examine the effect of chronic hypoxia on mitochondrial activity in vivo. METHODS--The skeletal muscle of five patients with respiratory failure (PaO2 < 9 kPa) was studied by phosphorus-31 magnetic resonance spectroscopy and compared with 10 age and sex matched controls. Patients lay in a 1.9 Tesla superconducting magnet with the gastrocnemius muscle overlying a six cm surface coil. Spectra were acquired at rest, during plantar flexion exercise, and during recovery from exercise. Relative concentrations of inorganic phosphate (Pi), phosphocreatine (PCr) and ATP were measured from peak areas, and pH and free ADP concentration were calculated. For the start of exercise, the rates of PCr depletion and estimated lactic acid production were calculated. For the post exercise recovery period, the initial rate of PCr recovery (a quantitative measure of mitochondrial ATP synthesis), the apparent Vmax for mitochondrial ATP synthesis (calculated from initial PCr resynthesis and the end exercise ADP concentration which drives this process), and the recovery half times of PCr, Pi, and ADP (also measures of mitochondrial function) were determined. RESULTS--Considerably greater and faster PCr depletion and intracellular acidosis were found during exercise. This is consistent with limitation of oxygen supply to the muscle and might explain the early fatiguability of these patients. There was no abnormality in recovery from exercise, however, suggesting that mitochondria function normally after exercise. CONCLUSIONS--These results are consistent with one or more of the following: (a) decreased level of activity of these patients; (b) changes in the fibre type of the muscle; (c) decreased oxygen supply to the muscle during exercise but not during recovery. They are not consistent with an intrinsic defect of mitochondrial ATP synthesis in skeletal muscle in respiratory failure.
机译:背景技术-呼吸衰竭的患者具有早期疲劳性,这可能是由于氧化(线粒体)ATP合成所需的氧气供应受到限制。研究了运动和恢复中的骨骼肌,以检查慢性缺氧对体内线粒体活性的影响。方法-通过磷31磁共振波谱研究了5例呼吸衰竭(PaO2 <9 kPa)的患者的骨骼肌,并将其与10个年龄和性别相匹配的对照组进行了比较。患者躺在1.9特斯拉超导磁体中,腓肠肌覆盖在6厘米的表面线圈上。在休息,足底屈肌锻炼和运动恢复期间采集光谱。从峰面积测量无机磷酸盐(Pi),磷酸肌酸(PCr)和ATP的相对浓度,并计算pH和游离ADP浓度。在运动开始时,计算了PCr消耗的速率和估计的乳酸生成量。在运动后恢复期中,PCr恢复的初始速率(线粒体ATP合成的定量度量),线粒体ATP合成的表观Vmax(由最初的PCr重新合成和运动结束时的ADP浓度计算得出)以及确定了PCr,Pi和ADP的半衰期恢复率(也检测线粒体功能)。结果-在运动过程中发现PCr耗竭和细胞内酸中毒现象明显增加且更快。这与限制向肌肉的氧气供应是一致的,并且可以解释这些患者的早期疲劳性。运动后恢复没有异常,但是表明运动后线粒体功能正常。结论:这些结果与以下一项或多项结果一致:(a)这些患者的活动水平下降; (b)肌肉纤维类型的改变; (c)在运动过程中而不是在恢复过程中减少了对肌肉的氧气供应。它们与呼吸衰竭时骨骼肌线粒体ATP合成的固有缺陷不一致。

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