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免疫球蛋白G与N,N,N',N'-乙二胺四亚甲基膦酸修饰的氧化锆的相互作用。

Interaction of immunoglobulin G with N,N,N',N'-ethylenediaminetetramethylenephosphonic acid-modified zirconia.

作者信息

Subramanian Anuradha, Sarkar Sabyasachi

机构信息

Department of Chemical Engineering, University of Nebraska, Lincoln, NE 68588, USA.

出版信息

J Chromatogr A. 2003 Mar 7;989(1):131-8. doi: 10.1016/s0021-9673(02)01901-5.

Abstract

Zirconia beads (25-38 microm in diameter) were modified with N,N,N'.N'-ethylenediaminetetramethylenephosphonic acid to generate a pseudo-biospecific support, r_PEZ. To better understand the force of interaction between the IgG and the r_PEZ, the equilibrium dissociation constant (Kd) was determined by static binding isotherms, as a function of temperature and by frontal analysis at different linear velocities. Temperature had no significant impact on the maximum static binding capacity (Q(max)) and the equilibrium-binding constant (Kd), whereas pH and the salt concentration had a noticeable impact on both Q(max) and Kd values. Q(max) was found to be in the range of 55-65 mg IgG per ml of beads and unaffected by temperature. The maximum dynamic binding capacity (Qx) was found to be in the range of 20-12 mg IgG per ml of beads. The adsorption rate constant (ka) was determined by a split-peak approach to be between 982 and 32421 mol(-1) s(-1) depending on the linear velocity. Adsorption rate of IgG on r_PEZ was studied as a function of both feed concentration and linear velocity. The standard enthalpy and entropy values were estimated for the interaction of IgG with this novel support. The binding constants were also determined by modeling the batch protein-uptake data.

摘要

用N,N,N',N'-乙二胺四亚甲基膦酸对直径为25 - 38微米的氧化锆珠进行修饰,以生成一种假生物特异性载体r_PEZ。为了更好地理解IgG与r_PEZ之间的相互作用力,通过静态结合等温线、作为温度的函数以及在不同线速度下的前沿分析来测定平衡解离常数(Kd)。温度对最大静态结合容量(Q(max))和平衡结合常数(Kd)没有显著影响,而pH值和盐浓度对Q(max)和Kd值都有明显影响。发现Q(max)在每毫升珠子55 - 65毫克IgG的范围内,且不受温度影响。最大动态结合容量(Qx)在每毫升珠子20 - 12毫克IgG的范围内。吸附速率常数(ka)通过裂峰法测定,根据线速度在982至32421 mol(-1) s(-1)之间。研究了IgG在r_PEZ上的吸附速率与进料浓度和线速度的函数关系。估计了IgG与这种新型载体相互作用的标准焓和熵值。结合常数也通过对批量蛋白质摄取数据进行建模来确定。

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