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肌肉呼吸的线性模型解释了磷酸肌酸的单指数变化。

A linear model of muscle respiration explains monoexponential phosphocreatine changes.

作者信息

Meyer R A

机构信息

Department of Physiology, Michigan State University, East Lansing 48824.

出版信息

Am J Physiol. 1988 Apr;254(4 Pt 1):C548-53. doi: 10.1152/ajpcell.1988.254.4.C548.

Abstract

Phosphocreatine (PCr) content was measured by phosphorus nuclear magnetic resonance spectroscopy in the gastrocnemius muscles of pentobarbital-anesthetized rats during and after twitch stimulation at rates up to 0.75 Hz. The monoexponential time constant for PCr changes was similar at the onset of vs. during recovery after stimulation and was not significantly different for different stimulation rates (mean time constant 1.44 min). Steady-state PCr level during stimulation was linearly related to the product of stimulation rate times peak twitch force. These results are shown to be consistent with a simple first-order electrical analog model of oxidative metabolism that is applicable at submaximal oxidative rates. The model assumes equilibrium of the creatine kinase reaction, which is modeled as a chemical capacitor, with capacitance proportional to the total creatine level, and PCr level proportional to the cytosolic free energy of ATP hydrolysis.

摘要

在高达0.75Hz的刺激频率下,通过磷核磁共振波谱法测量了戊巴比妥麻醉大鼠腓肠肌在抽搐刺激期间及之后的磷酸肌酸(PCr)含量。刺激开始时与恢复期间PCr变化的单指数时间常数相似,不同刺激频率下无显著差异(平均时间常数1.44分钟)。刺激期间的稳态PCr水平与刺激频率乘以峰值抽搐力的乘积呈线性相关。这些结果表明与适用于次最大氧化速率的氧化代谢简单一阶电学模拟模型一致。该模型假定肌酸激酶反应处于平衡状态,肌酸激酶反应被模拟为一个化学电容器,其电容与总肌酸水平成正比,PCr水平与ATP水解的胞质自由能成正比。

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