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血清蛋白在酸碱平衡中的作用。

The role of serum proteins in acid-base equilibria.

作者信息

Figge J, Rossing T H, Fencl V

机构信息

Department of Medicine, Brigham and Women's Hospital, Boston, MA 02115.

出版信息

J Lab Clin Med. 1991 Jun;117(6):453-67.

PMID:2045713
Abstract

Serum proteins act as weak acids and participate in acid-base balance. Their effects are imprecisely quantified; in particular, the roles of albumin and globulins need reevaluation. We approached the problem in three steps. First, in artificial solutions resembling serum but with human serum albumin as the only protein moiety, we varied the strong ion difference (SID), partial pressure of carbon dioxide (Pco2) and the concentration of albumin [( Alb]) and fixed the concentration of inorganic phosphate [( Pi]). We measured pH and derived the charges on albumin. Second, extending the work of Stewart (Stewart PA. How to understand acid-base. A quantitative acid-base primer for biology and medicine. New York: Elsevier, 1981:1-286), we developed a mathematical model that solves for pH and for the charges on albumin as functions of SID, Pco2, [Pi], and [Alb]. The calculated values fit the observed values well; that is, the model describes well the behavior of these solutions over a wide range of simulated complex acid-base disturbances. Finally, in human serum samples containing both albumin and globulins, we varied SID, Pco2, and total protein concentration [( TP]); we fixed [Pi] and then measured pH and derived the charges on proteins as above. When we applied to these data the computer model developed for albumin alone, the calculated pH and derived charges on albumin values agreed well with the observed pH and derived charges on proteins. We conclude first that human serum globulins play a negligible role in acid-base equilibria, and second, that in normal human serum at pH 7.40 with [TP] = 7 and [Alb] = 4.3 gm/dl, the charges attributed to proteins are approximately 12 mEq/L; this is substantially less than the value of approximately 17 mEq/L given by many contemporary texts, based on work of van Slyke et al. (van Slyke DD, Hastings AB, Hiller A, Sendroy J Jr. Studies of gas and electrolyte equilibria in blood. XIV. Amounts of alkali bound by serum albumin and globulin. J Biol Chem 1928;79:769-80). These findings should be considered when evaluating acid-base balance in patients with abnormal serum albumin concentration, for example, when interpreting values of the anion gap.

摘要

血清蛋白作为弱酸参与酸碱平衡。其作用尚未得到精确量化;特别是,白蛋白和球蛋白的作用需要重新评估。我们分三步解决这个问题。首先,在类似于血清但仅以人血清白蛋白作为唯一蛋白质成分的人工溶液中,我们改变强离子差(SID)、二氧化碳分压(Pco2)和白蛋白浓度[(Alb)],并固定无机磷酸盐浓度[(Pi)]。我们测量了pH值并推导了白蛋白上的电荷。其次,扩展斯图尔特的研究工作(斯图尔特PA。如何理解酸碱平衡。生物学和医学定量酸碱入门。纽约:爱思唯尔,1981:1 - 286),我们开发了一个数学模型,该模型可求解pH值以及作为SID、Pco2、[Pi]和[Alb]函数的白蛋白上的电荷。计算值与观测值拟合良好;也就是说,该模型很好地描述了这些溶液在广泛的模拟复杂酸碱紊乱范围内的行为。最后,在同时含有白蛋白和球蛋白的人血清样本中,我们改变SID、Pco2和总蛋白浓度[(TP)];我们固定[Pi],然后测量pH值并如上推导蛋白质上的电荷。当我们将仅针对白蛋白开发的计算机模型应用于这些数据时,计算得到的pH值和推导得到的白蛋白电荷值与观测到的pH值和蛋白质电荷值吻合良好。我们首先得出结论,人血清球蛋白在酸碱平衡中起的作用可忽略不计,其次,在pH值为7.40、[TP] = 7且[Alb] = 4.3 g/dl的正常人血清中,归因于蛋白质的电荷约为12 mEq/L;这大大低于许多当代教科书基于范斯莱克等人的工作给出的约17 mEq/L的值(范斯莱克DD、黑斯廷斯AB、希勒A、森德罗伊J Jr。血液中气体和电解质平衡的研究。十四。血清白蛋白和球蛋白结合的碱量。《生物化学杂志》1928年;79:769 - 80)。在评估血清白蛋白浓度异常患者的酸碱平衡时,例如在解释阴离子间隙值时,应考虑这些发现。

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