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肌肉组织中的缓冲作用和氢离子动力学

Buffering and H+ ion dynamics in muscle tissues.

作者信息

Heisler Norbert

机构信息

Department of Animal Physiology, Humboldt Universität zu Berlin, D-10115 Berlin, Germany.

出版信息

Respir Physiol Neurobiol. 2004 Dec 15;144(2-3):161-72. doi: 10.1016/j.resp.2004.06.019.

Abstract

After anaerobic activity with release of large quantities of intermediary metabolic end products, further energy production critically depends on rapid elimination of H+ ions from the muscle tissues to secure key enzymatic activities. The involved processes, interactions and interrelationships of mechanisms have been analyzed on the basis of a physiological model and available experimental data. The H+ elimination from muscle tissue is a multifactorial process primarily governed by the capillary H+ transport capacitance, effected by buffering capabilities of intracellular and capillary fluids compartments, by dynamically interrelated regulation of intracellular and extracellular pH, by the magnitude and quality of convective perfusional transfer and further factors. Model calculations strongly resemble experimental data obtained in isolated perfused muscles and suggest that discrepancies between disparate literature data are attributable to experimental limitations.

摘要

在厌氧活动释放大量中间代谢终产物后,进一步的能量产生关键取决于从肌肉组织中快速清除H⁺离子,以确保关键酶的活性。已根据生理模型和现有实验数据对相关过程、机制的相互作用和相互关系进行了分析。肌肉组织中H⁺的清除是一个多因素过程,主要受毛细血管H⁺运输容量的控制,受细胞内和毛细血管液区室缓冲能力、细胞内和细胞外pH值的动态相互关联调节、对流灌注转移的大小和质量以及其他因素的影响。模型计算与在离体灌注肌肉中获得的实验数据非常相似,表明不同文献数据之间的差异可归因于实验局限性。

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