Modeling of protein adsorption in membrane affinity chromatography


Autoria(s): Hao, WQ; Chen, ZA; Wang, JD; Liu, XL
Data(s)

2004

Resumo

For the design of affinity membranes, protein adsorption in membrane affinity chromatography (MAC) was studied by frontal analysis. According to fast mass transfer, small thickness of affinity membranes and high affinity between the protein and the ligand, an ideal adsorption (IA) model was proposed for MAC and was used together with equilibrium-dispersive (E-D) model to describe the adsorption of bovine serum albumin (BSA) onto cellulose diacetate/polyethyleneimine (CA/PEI) blend membranes with and without Cu2+ chelating. E-D model was found to better describe the initial region of experimental breakthrough curves. The influence of axial dispersion was revealed and it showed the importance of design of the module to homogenously distribute feed solution. IA model was found to be better for the whole experimental breakthrough curve. According to it, the capacity of affinity membranes and the specificity of the interaction are of equal importance for the design of affinity membranes. An optimum feed concentration was also found in the operation of MAC. The discrepancy between experimental optimum feed concentrations and predicted ones from IA model may be due to the ignorance of some experimental effects such as axial dispersion.

Identificador

http://159.226.238.44/handle/321008/91835

http://www.irgrid.ac.cn/handle/1471x/183929

Idioma(s)

英语

Fonte

郝卫强;陈兆安;王俊德;刘学良.Modeling of Protein Adsorption in Membrane Affinity Chromatography,Analytical Letters,2004,37(7):1319-1338

Palavras-Chave #membrane affinity chromatography #ideal adsorption model #equilibrium-dispersive model #cellulose diacetate/polyethyleneimine blend membranes #frontal analysis #bovine serum albumin
Tipo

期刊论文