Sarkar Sabyasachi, Carr Peter W, Subramanian Anu
Chemical Engineering, University of Nebraska, Lincoln, NE 68588-0463, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2005 Jul 25;821(2):124-31. doi: 10.1016/j.jchromb.2005.04.017.
Zirconia particles modified with N,N,N',N'-ethylenediaminetetramethylenephosphonic acid (EDTPA), further referred to as r_PEZ, were studied as a support material for use in chromatography. Our previous studies have demonstrated the utility of r_PEZ in the separation of immunoglobulins from biological fluids. In the present study we sought to understand the underlying factors and identify the rate-limiting mechanisms that govern the transport of biomolecules in r_PEZ. Pulse injection techniques were used to elucidate the individual mass transfer parameters. Elution profiles obtained under retained and unretained conditions were approximated by the Gaussian equation and the corresponding HETP contributions were estimated. The dependence of the HETP values on incremental salt concentration in the mobile phase was determined. Resulting data in conjunction with the equations outlined in literature were used to estimate the theoretical number of transfer units for the chromatographic separation process. Our results indicate that surface diffusion probably plays a minor role; however pore diffusion was established to be the rate limiting mechanism for immunoglobulin G adsorption to r_PEZ. The HETP based methodology may be used to estimate the rate limiting mechanisms of mass transfer for any given chromatographic system under appropriate conditions.
研究了用N,N,N',N'-乙二胺四亚甲基膦酸(EDTPA)改性的氧化锆颗粒,以下简称r_PEZ,作为色谱用载体材料。我们之前的研究已证明r_PEZ在从生物流体中分离免疫球蛋白方面的效用。在本研究中,我们试图了解潜在因素,并确定控制生物分子在r_PEZ中传输的限速机制。采用脉冲进样技术来阐明各个传质参数。在保留和未保留条件下获得的洗脱曲线用高斯方程进行近似,并估算相应的理论塔板高度(HETP)贡献。确定了HETP值对流动相中盐浓度增量的依赖性。所得数据与文献中概述的方程相结合,用于估算色谱分离过程的理论传质单元数。我们的结果表明,表面扩散可能起次要作用;然而,已确定孔扩散是免疫球蛋白G吸附到r_PEZ的限速机制。基于HETP的方法可用于在适当条件下估算任何给定色谱系统的传质限速机制。