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氯化铵等渗溶液中的红细胞裂解:理论建模与实验验证

Erythrocyte lysis in isotonic solution of ammonium chloride: theoretical modeling and experimental verification.

作者信息

Chernyshev Andrey V, Tarasov Peter A, Semianov Konstantin A, Nekrasov Vyacheslav M, Hoekstra Alfons G, Maltsev Valeri P

机构信息

Institute of Chemical Kinetics and Combustion, Institutskaya 3, Novosibirsk 630090, Russia.

出版信息

J Theor Biol. 2008 Mar 7;251(1):93-107. doi: 10.1016/j.jtbi.2007.10.016. Epub 2007 Oct 22.

Abstract

A mathematical model of erythrocyte lysis in isotonic solution of ammonium chloride is presented in frames of a statistical approach. The model is used to evaluate several parameters of mature erythrocytes (volume, surface area, hemoglobin concentration, number of anionic exchangers on membrane, elasticity and critical tension of membrane) through their sphering and lysis measured by a scanning flow cytometer (SFC). SFC allows measuring the light-scattering pattern (indicatrix) of an individual cell over the angular range from 10 degrees to 60 degrees . Comparison of the experimentally measured and theoretically calculated light scattering patterns allows discrimination of spherical from non-spherical erythrocytes and evaluation of volume and hemoglobin concentration for individual spherical cells. Three different processes were applied for erythrocytes sphering: (1) colloid osmotic lysis in isotonic solution of ammonium chloride, (2) isovolumetric sphering in the presence of sodium dodecyl sulphate and albumin in neutrally buffered isotonic saline, and (3) osmotic fragility test in hypotonic media. For the hemolysis in ammonium chloride, the evolution of distributions of sphered erythrocytes on volume and hemoglobin content was monitored in real-time experiments. The analysis of experimental data was performed in the context of a statistical approach, taking into account that parameters of erythrocytes vary from cell to cell.

摘要

在统计方法的框架内,提出了氯化铵等渗溶液中红细胞裂解的数学模型。该模型用于通过扫描流式细胞仪(SFC)测量的红细胞球化和裂解情况来评估成熟红细胞的几个参数(体积、表面积、血红蛋白浓度、膜上阴离子交换体数量、膜的弹性和临界张力)。SFC能够在10度至60度的角度范围内测量单个细胞的光散射模式(指示曲线)。通过比较实验测量的和理论计算的光散射模式,可以区分球形和非球形红细胞,并评估单个球形细胞的体积和血红蛋白浓度。对红细胞进行球化采用了三种不同的方法:(1)在氯化铵等渗溶液中的胶体渗透裂解;(2)在中性缓冲等渗盐水中存在十二烷基硫酸钠和白蛋白的情况下进行等容球化;(3)在低渗介质中进行渗透脆性试验。对于氯化铵中的溶血,在实时实验中监测了球化红细胞在体积和血红蛋白含量上的分布演变。实验数据的分析是在统计方法的背景下进行的,同时考虑到红细胞的参数因细胞而异。

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