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吉布斯-唐南平衡、体液各部分渗透压与血浆水钠浓度之间的定量相互关系。

Quantitative interrelationship between Gibbs-Donnan equilibrium, osmolality of body fluid compartments, and plasma water sodium concentration.

作者信息

Nguyen Minhtri K, Kurtz Ira

机构信息

Division of Nephrology, David Geffen School of Medicine at UCLA, 10833 Le Conte Ave., Rm. 7-155 Factor Bldg., Los Angeles, CA 90095, USA.

出版信息

J Appl Physiol (1985). 2006 Apr;100(4):1293-300. doi: 10.1152/japplphysiol.01274.2005. Epub 2005 Dec 15.

Abstract

The presence of negatively charged, impermeant proteins in the plasma space alters the distribution of diffusible ions in the plasma and interstitial fluid (ISF) compartments to preserve electroneutrality. We have derived a new mathematical model to define the quantitative interrelationship between the Gibbs-Donnan equilibrium, the osmolality of body fluid compartments, and the plasma water Na+ concentration ([Na+]pw) and validated the model using empirical data from the literature. The new model can account for the alterations in all ionic concentrations (Na+ and non-Na+ ions) between the plasma and ISF due to Gibbs-Donnan equilibrium. In addition to the effect of Gibbs-Donnan equilibrium on Na+ distribution between plasma and ISF, our model predicts that the altered distribution of osmotically active non-Na+ ions will also have a modulating effect on the [Na+]pw by affecting the distribution of H2O between the plasma and ISF. The new physiological insights provided by this model can for the first time provide a basis for understanding quantitatively how changes in the plasma protein concentration modulate the [Na+]pw. Moreover, this model defines all known physiological factors that may modulate the [Na+]pw and is especially helpful in conceptually understanding the pathophysiological basis of the dysnatremias.

摘要

血浆空间中带负电荷、不可渗透的蛋白质的存在改变了血浆和组织间液(ISF)中可扩散离子的分布,以维持电中性。我们推导了一个新的数学模型来定义吉布斯-唐南平衡、体液各部分的渗透压以及血浆水钠浓度([Na⁺]pw)之间的定量相互关系,并使用文献中的经验数据对该模型进行了验证。新模型可以解释由于吉布斯-唐南平衡导致的血浆和ISF之间所有离子浓度(Na⁺和非Na⁺离子)的变化。除了吉布斯-唐南平衡对血浆和ISF之间Na⁺分布的影响外,我们的模型预测,渗透活性非Na⁺离子分布的改变也将通过影响血浆和ISF之间H₂O的分布对[Na⁺]pw产生调节作用。该模型提供的新的生理学见解首次为定量理解血浆蛋白浓度变化如何调节[Na⁺]pw提供了基础。此外,该模型定义了所有可能调节[Na⁺]pw的已知生理因素,尤其有助于从概念上理解低钠血症和高钠血症的病理生理基础。

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