Davies P A
Department of Engineering Science, University of Oxford, U.K.
Int J Artif Organs. 1990 Dec;13(12):837-45.
A mathematical model is developed which relates the time needed to perform immunoadsorption with Sepharose-Protein A to the column dimensions and choice of whether to use one or two columns. Measurements of parameters needed to apply the model, including the reaction rate constant and adsorption capacity, are reported. It is concluded that one large column can remove immunoglobulins more quickly than two smaller columns containing the same total volume of Sepharose-Protein A, but with the penalty of a greater loss of other plasma constituents. The model involves only simple computations, and can be applied to other immunoadsorbents if the dissociation constant of the complex formed by adsorption is lower than the final plasma concentration of the molecule adsorbed.
建立了一个数学模型,该模型将使用琼脂糖-蛋白A进行免疫吸附所需的时间与柱尺寸以及选择使用一根还是两根柱相关联。报告了应用该模型所需的参数测量值,包括反应速率常数和吸附容量。得出的结论是,一根大柱比两根含有相同总体积琼脂糖-蛋白A的小柱能更快地去除免疫球蛋白,但代价是其他血浆成分的损失更大。该模型仅涉及简单的计算,并且如果吸附形成的复合物的解离常数低于被吸附分子的最终血浆浓度,则可应用于其他免疫吸附剂。