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现代定量酸碱化学

Modern quantitative acid-base chemistry.

作者信息

Stewart P A

出版信息

Can J Physiol Pharmacol. 1983 Dec;61(12):1444-61. doi: 10.1139/y83-207.

Abstract

Quantitative analysis of ionic solutions in terms of physical and chemical principles has been effectively prohibited in the past by the overwhelming amount of calculation it required, but computers have suddenly eliminated that prohibition. The result is an approach to acid-base which revolutionizes our ability to understand, predict, and control what happens to hydrogen ions in living systems. This review outlines that approach and suggests some of its most useful implications. Quantitative understanding requires distinctions between independent variables (in body fluids: pCO2, net strong ion charge, and total weak acid, usually protein), and dependent variables [( HCO-3], [HA], [A-], [CO(2-)3], [OH-], and [H+] (or pH]. Dependent variables are determined by independent variables, and can be calculated from the defining equations for the specific system. Hydrogen ion movements between solutions can not affect hydrogen ion concentration; only changes in independent variables can. Many current models for ion movements through membranes will require modification on the basis of this quantitative analysis. Whole body acid-base balance can be understood quantitatively in terms of the three independent variables and their physiological regulation by the lungs, kidneys, gut, and liver. Quantitative analysis also shows that body fluids interact mainly by strong ion movements through the membranes separating them.

摘要

过去,根据物理和化学原理对离子溶液进行定量分析因所需计算量巨大而实际上受到限制,但计算机突然消除了这一限制。结果是一种酸碱分析方法彻底改变了我们理解、预测和控制生物系统中氢离子变化情况的能力。本综述概述了该方法,并指出了其一些最有用的意义。定量理解需要区分自变量(在体液中:二氧化碳分压、净强离子电荷和总弱酸,通常是蛋白质)和因变量([碳酸氢根离子]、[HA]、[A-]、[碳酸根离子]、[氢氧根离子]和[氢离子](或pH))。因变量由自变量决定,并可根据特定系统的定义方程计算得出。溶液之间的氢离子移动不会影响氢离子浓度;只有自变量的变化才会影响。基于这种定量分析,许多当前关于离子跨膜移动的模型需要修改。通过这三个自变量及其在肺、肾、肠道和肝脏中的生理调节,可从定量角度理解全身酸碱平衡。定量分析还表明,体液主要通过强离子跨分隔它们的膜的移动进行相互作用。

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