pH Transients in hydroxyapatite chromatography columns-Experimental evidence and phenomenological modeling

被引:25
作者
Bankston, Theresa E. [1 ]
Dattolo, Laura [1 ]
Carta, Giorgio [1 ]
机构
[1] Univ Virginia, Dept Chem Engn, Charlottesville, VA 22904 USA
关键词
Hydoxyapatite; pH Transitions; Modeling; Local equilibrium theory; RECOMBINANT HUMAN-ANTIBODY; PROTEIN CHROMATOGRAPHY; CERAMIC HYDROXYAPATITE; SURFACE-PROPERTIES; PLASMID DNA; IONS; EQUILIBRIUM; TRANSITIONS; ADSORPTION; FRAGMENTS;
D O I
10.1016/j.chroma.2010.02.004
中图分类号
Q5 [生物化学];
学科分类号
070307 [化学生物学];
摘要
Hydroxyapatite (HAP) columns, widely used for chromatographic separation of proteins and other biomolecules because of their unique selectivity and ability to resolve complex mixtures, exhibit limited stability at acidic conditions requiring careful control of pH. Even with buffered solutions, however, unintended pH transients can occur when the salt concentration varies. For example, the pH temporarily decreases below the feed value when the salt concentration increases and increases above the feed value when the salt concentration is decreased. The intensity and duration of these transients depend on the particular buffer used and the magnitude of the salt concentration step, but in extreme cases the pH can drop by as much as 1.5 pH units creating conditions where the HAP stability is potentially compromised. This work examines the mechanisms leading to pH transients in HAP columns generated by salt steps. The pH excursions are similar to those observed for weak cation exchange columns, but are accompanied by a transient evolution of phosphate which temporarily decreases below the feed value when the salt concentration is increased and increases sharply when the salt concentration is reduced before returning to the feed value. A phenomenological model is developed to describe this behavior by considering the reversible uptake of sodium ions by the P-sites and binding of phosphate ions by the C-sites. The interplay of these two adsorption mechanisms results in complex pH patterns that are consistent with those observed experimentally. In addition to helping understand the underlying mechanisms, the model also provides a useful tool to predict the effects of different buffers and salt concentration and develop corrective measures that can reduce the intensity and duration of the pH transients such as the addition of unretained co-buffers. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:2123 / 2131
页数:9
相关论文
共 34 条
[1]
Beynon R.J., 1996, BUFFER SOLUTIONS BAS
[2]
*BIORAD LAB, 2009, CHT CER HYDR INSTR M
[3]
CUMMINGS LJ, 2008, SPICA 2008 S PREP IN
[4]
Davies C., 1962, ION ASS
[5]
DOLINSKI E, 2002, AM CHEM SOC 1, V224
[6]
SURFACE PROPERTIES OF HYDROXYAPATITE .1. EFFECT OF VARIOUS INORGANIC-IONS ON ELECTROPHORETIC BEHAVIOR [J].
DOSS, SK .
JOURNAL OF DENTAL RESEARCH, 1976, 55 (06) :1067-1075
[7]
Chemical interaction of phosphoric acid ester with hydroxyapatite [J].
Fukegawa, D. ;
Hayakawa, S. ;
Yoshida, Y. ;
Suzuki, K. ;
Osaka, A. ;
Van Meerbeek, B. .
JOURNAL OF DENTAL RESEARCH, 2006, 85 (10) :941-944
[8]
Cooperative multimodal retention of IgG, fragments, and aggregates on hydroxyapatite [J].
Gagnon, Pete ;
Cheung, Chia-Wei ;
Yazaki, Paul J. .
JOURNAL OF SEPARATION SCIENCE, 2009, 32 (22) :3857-3865
[9]
Monoclonal antibody purification with hydroxyapatite [J].
Gagnon, Pete .
NEW BIOTECHNOLOGY, 2009, 25 (05) :287-293
[10]
SURFACE-REACTIONS ON HYDROXYAPATITE IN THE PRESENCE OF FLUORIDE IONS .1. SATURATED AND CONGRUENT CONDITIONS [J].
GASSER, P ;
VOEGEL, JC ;
GRAMAIN, P .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 1993, 74 (2-3) :275-286