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N,N,N',N'-乙二胺四亚甲基膦酸修饰的氧化锆颗粒在静态和动态条件下对免疫球蛋白摄取的模拟

Modeling of immunoglobulin uptake by N,N,N',N'-ethylenediaminetetramethylenephosphonic acid-modified zirconia particles under static and dynamic conditions.

作者信息

Sarkar Sabyasachi, Subramanian Anuradha

机构信息

Department of Chemical Engineering, University of Nebraska, 207 Othmer Hall, PO Box 68588-0489, Lincoln, NE, USA.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2005 Jul 5;821(1):81-7. doi: 10.1016/j.jchromb.2005.04.002.

Abstract

A matrix developed from N,N,N',N'-ethylenediaminetetramethylenephosphonic acid-modified zirconia beads (further referred to as r_PEZ); 25-38 microm in diameter and with a pore size of 22+/-3 nm, was utilized for the separation of immunoglobulins (Igs). r_PEZ has been shown to bind to various Igs originating from a wide variety of species. To understand the mechanisms controlling the uptake of Igs by r_PEZ, static protein uptake experiments were carried out. The protein uptake profiles were further modeled with a kinetic rate constant model. Individual studies were undertaken for human immunoglobulin A, G and M (HIgA, HIgG and HIgM). The kinetic rate constant model indicated that HIgG binding to r_PEZ was more favorable than its disassociation. The equilibrium rate constants were found to decrease with increasing concentration. The effect of continuous loading in a packed bed system utilizing r_PEZ matrix was evaluated by carrying out frontal studies, using different feed concentrations and linear velocities. The breakthrough profiles obtained for the uptake of HIgG were modeled with the pore diffusion model. The model was found to best describe the breakthrough profiles obtained at a feed concentration of 2.0 mg of HIgG per milliliter. The NTU for the packed bed was found to be equal to 2.

摘要

一种由N,N,N',N'-乙二胺四亚甲基膦酸修饰的氧化锆珠粒(以下简称r_PEZ)制成的基质;直径为25 - 38微米,孔径为22±3纳米,用于免疫球蛋白(Igs)的分离。r_PEZ已被证明能结合源自多种物种的各种免疫球蛋白。为了解控制r_PEZ对免疫球蛋白摄取的机制,进行了静态蛋白质摄取实验。蛋白质摄取曲线进一步用动力学速率常数模型进行建模。对人免疫球蛋白A、G和M(HIgA、HIgG和HIgM)进行了单独研究。动力学速率常数模型表明,HIgG与r_PEZ的结合比其解离更有利。发现平衡速率常数随浓度增加而降低。通过使用不同的进料浓度和线速度进行前沿研究,评估了在使用r_PEZ基质的填充床系统中连续加载的效果。用孔扩散模型对HIgG摄取所获得的穿透曲线进行建模。发现该模型最能描述在进料浓度为每毫升2.0毫克HIgG时获得的穿透曲线。发现填充床的传质单元数(NTU)等于2。

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