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Published in: Adsorption 2/2016

11-12-2015

Protein adsorption equilibrium and kinetics in multimodal cation exchange resins

Authors: Mimi Zhu, Giorgio Carta

Published in: Adsorption | Issue 2/2016

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Abstract

Protein adsorption equilibria and kinetics are obtained experimentally for two multimodal cation exchange resins—Nuvia cPrime, which is based on a polymeric matrix, and Capto MMC, which is based on an agarose matrix. In both resins, the ligand contains a phenyl group, a carboxyl group, and a peptide bond but with a different arrangement. Transmission electron microscopy and inverse size exclusion chromatography indicate a bimodal distribution of pores in Nuvia cPrime, including small pores with 10 nm radius and pores larger than 400 nm, and a monodispersed distribution of pores in Capto MMC, averaging 32 nm in radius. Potentiometric titration curves show similar buffering ranges and pK a values for the ligands in both resins and a slightly higher ligand density for Nuvia cPrime. Equilibrium binding capacities for lysozyme and a monoclonal antibody (mAb) are also similar for both resins at comparable pH and salt concentrations, although Capto MMC shows a weaker dependence on salt concentration as a result of its more hydrophobic character. The main difference is the adsorption kinetics of the mAb, which is the larger of the two proteins studied. For both resins, as shown by means of confocal laser scanning miscopy, the adsorption kinetics is controlled by pore diffusion. Capto MMC with its smaller pores has a slower rate of mass transfer than Nuvia cPrime. As a result, for the mAb, much higher column dynamic binding capacities are obtained for Nuvia cPrime than for Capto MMC.

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Literature
go back to reference Bird, R.B., Stewart, W.E., Lightfoot, E.N.: Transport Phenomena. Wiley, New York (1960) Bird, R.B., Stewart, W.E., Lightfoot, E.N.: Transport Phenomena. Wiley, New York (1960)
go back to reference Carta, G., Ubiera, A.R.: Particle-size distribution effects in batch adsorption. AIChE J. 49, 3066–3073 (2003)CrossRef Carta, G., Ubiera, A.R.: Particle-size distribution effects in batch adsorption. AIChE J. 49, 3066–3073 (2003)CrossRef
go back to reference Carta, G., Ubiera, A.R., Pabst, T.M.: Protein mass transfer kinetics in ion exchange media: measurements and interpretations. Chem. Eng. Technol. 28, 1252–1264 (2005)CrossRef Carta, G., Ubiera, A.R., Pabst, T.M.: Protein mass transfer kinetics in ion exchange media: measurements and interpretations. Chem. Eng. Technol. 28, 1252–1264 (2005)CrossRef
go back to reference Chung, W.K., Freed, A.S., Holstein, M., McCallum, S., Cramer, S.M.: Evaluation of protein adsorption and preferred binding regions in multimodal chromatography using NMR. Proc. Natl. Acad. Sci. USA 107, 16811–16826 (2010a)CrossRef Chung, W.K., Freed, A.S., Holstein, M., McCallum, S., Cramer, S.M.: Evaluation of protein adsorption and preferred binding regions in multimodal chromatography using NMR. Proc. Natl. Acad. Sci. USA 107, 16811–16826 (2010a)CrossRef
go back to reference Chung, W.K., Hou, Y., Holstein, M., Freed, A., Makhatadze, G.I., Cramer, S.M.: Investigation of protein binding affinity in multimodal chromatographic systems using a homologous protein library. J. Chromatogr. A 1217, 191–198 (2010b)CrossRef Chung, W.K., Hou, Y., Holstein, M., Freed, A., Makhatadze, G.I., Cramer, S.M.: Investigation of protein binding affinity in multimodal chromatographic systems using a homologous protein library. J. Chromatogr. A 1217, 191–198 (2010b)CrossRef
go back to reference Cooper, R.S., Liberman, D.A.: Fixed-bed adsorption kinetics with pore diffusion control. Ind. Eng. Chem. Fundam. 9, 620–623 (1970) Cooper, R.S., Liberman, D.A.: Fixed-bed adsorption kinetics with pore diffusion control. Ind. Eng. Chem. Fundam. 9, 620–623 (1970)
go back to reference Gao, D., Lin, D.-Q., Yao, S.-J.: Protein adsorption kinetics of mixed-mode adsorbent with benzylamine as functional ligand. Chem. Eng. Sci. 61, 7260–7268 (2006a)CrossRef Gao, D., Lin, D.-Q., Yao, S.-J.: Protein adsorption kinetics of mixed-mode adsorbent with benzylamine as functional ligand. Chem. Eng. Sci. 61, 7260–7268 (2006a)CrossRef
go back to reference Gao, D., Lin, D.-Q., Yao, S.-J.: Measurement and correlation of protein adsorption with mixed-mode adsorbents taking into account the influences of salt concentration and pH. J. Chem. Eng. Data 51, 1205–1211 (2006b)CrossRef Gao, D., Lin, D.-Q., Yao, S.-J.: Measurement and correlation of protein adsorption with mixed-mode adsorbents taking into account the influences of salt concentration and pH. J. Chem. Eng. Data 51, 1205–1211 (2006b)CrossRef
go back to reference Gao, D., Lin, D.-Q., Yao, S.-J.: Mechanistic analysis on the effects of salt concentration and pH on protein adsorption onto a mixed-mode adsorbent with cation ligand. J. Chromatogr. B 859, 16–23 (2007)CrossRef Gao, D., Lin, D.-Q., Yao, S.-J.: Mechanistic analysis on the effects of salt concentration and pH on protein adsorption onto a mixed-mode adsorbent with cation ligand. J. Chromatogr. B 859, 16–23 (2007)CrossRef
go back to reference Gao, D., Lin, D.-Q., Yao, S.-J.: Patch controlled protein adsorption in mixed-mode chromatography with benzylamine as functional ligand. Biochem. Eng. J. 38, 355–361 (2008)CrossRef Gao, D., Lin, D.-Q., Yao, S.-J.: Patch controlled protein adsorption in mixed-mode chromatography with benzylamine as functional ligand. Biochem. Eng. J. 38, 355–361 (2008)CrossRef
go back to reference Hagel, L., Ostberg, M., Andersson, T.: Apparent pore size distributions of chromatography media. J. Chromatogr. 743, 33–42 (1996)CrossRef Hagel, L., Ostberg, M., Andersson, T.: Apparent pore size distributions of chromatography media. J. Chromatogr. 743, 33–42 (1996)CrossRef
go back to reference Heidelberger, M., Pedersen, K.O.: The molcular weight and isoelectric point of thyroglobulin. J. Gen. Physiol. 19, 95–108 (1935)CrossRef Heidelberger, M., Pedersen, K.O.: The molcular weight and isoelectric point of thyroglobulin. J. Gen. Physiol. 19, 95–108 (1935)CrossRef
go back to reference Helfferich, F.G.: Ion Exchange. McGraw-Hill, New York (1962) Helfferich, F.G.: Ion Exchange. McGraw-Hill, New York (1962)
go back to reference Hirano, A., Arakawa, T., Kameda, T.: Interaction of arginine with Capto MMC in multimodal chromatography. J. Chromatogr. A 1338, 58–66 (2014)CrossRef Hirano, A., Arakawa, T., Kameda, T.: Interaction of arginine with Capto MMC in multimodal chromatography. J. Chromatogr. A 1338, 58–66 (2014)CrossRef
go back to reference Holstein, M., Nikfetrat, A., Gage, M., Hirsh, A.G., Cramer, S.M.: Improving selectivity in multimodal chromatography using controlled pH gradient elution. J. Chromatogr. A 1233, 152–155 (2012a)CrossRef Holstein, M., Nikfetrat, A., Gage, M., Hirsh, A.G., Cramer, S.M.: Improving selectivity in multimodal chromatography using controlled pH gradient elution. J. Chromatogr. A 1233, 152–155 (2012a)CrossRef
go back to reference Holstein, M., Parimal, S., McCallum, S., Cramer, S.M.: Mobile phase modifier effects in multimodal cation exchange chromatography. Biotechnol. Bioeng. 109, 176–186 (2012b)CrossRef Holstein, M., Parimal, S., McCallum, S., Cramer, S.M.: Mobile phase modifier effects in multimodal cation exchange chromatography. Biotechnol. Bioeng. 109, 176–186 (2012b)CrossRef
go back to reference Hou, Y., Cramer, S.M.: Evaluation of selectivity in multimodal anion exchange systems: a priori prediction of protein retention and examination of mobile phase modifier effects. J. Chromatogr. A 1218, 7813–7820 (2011)CrossRef Hou, Y., Cramer, S.M.: Evaluation of selectivity in multimodal anion exchange systems: a priori prediction of protein retention and examination of mobile phase modifier effects. J. Chromatogr. A 1218, 7813–7820 (2011)CrossRef
go back to reference Kallberg, K., Becker, L., Bülow, L.: Application of a pH responsive multimodal hydrophobic interaction chromatography medium for the analysis of glycosylated proteins. J. Chromatogr. A 1218, 678–683 (2011)CrossRef Kallberg, K., Becker, L., Bülow, L.: Application of a pH responsive multimodal hydrophobic interaction chromatography medium for the analysis of glycosylated proteins. J. Chromatogr. A 1218, 678–683 (2011)CrossRef
go back to reference Kallberg, K., Johansson, H.O., Bulow, L.: Multimodal chromatography: an efficient tool in downstream processing of proteins. Biotechnol. J. 7, 1485–1495 (2012)CrossRef Kallberg, K., Johansson, H.O., Bulow, L.: Multimodal chromatography: an efficient tool in downstream processing of proteins. Biotechnol. J. 7, 1485–1495 (2012)CrossRef
go back to reference Kaleas, K., Tripodi, M., Revelli, S., Sharma, V., Pizarro, S.: Evaluation of a multimodal resin for selective capture of CHO-derived monoclonal antibodies directly from harvested cell culture fluid. J. Chromatogr. B 969, 256–263 (2014)CrossRef Kaleas, K., Tripodi, M., Revelli, S., Sharma, V., Pizarro, S.: Evaluation of a multimodal resin for selective capture of CHO-derived monoclonal antibodies directly from harvested cell culture fluid. J. Chromatogr. B 969, 256–263 (2014)CrossRef
go back to reference Nfor, B.K., Noverraz, M., Chilamkurthi, S., Verhaert, P.D.E.M., van der Wielen, L.M., Ottens, M.: High-throughput isotherm determination and thermodynamic modeling of protein adsorption on mixed mode adsorbents. J. Chromatogr. A 1217, 6829–6850 (2010)CrossRef Nfor, B.K., Noverraz, M., Chilamkurthi, S., Verhaert, P.D.E.M., van der Wielen, L.M., Ottens, M.: High-throughput isotherm determination and thermodynamic modeling of protein adsorption on mixed mode adsorbents. J. Chromatogr. A 1217, 6829–6850 (2010)CrossRef
go back to reference Pabst, T.M., Carta, G.: pH transitions in cation exchange chromatographic columns containing weak acid groups. J. Chromatogr. A 1142, 19–31 (2007)CrossRef Pabst, T.M., Carta, G.: pH transitions in cation exchange chromatographic columns containing weak acid groups. J. Chromatogr. A 1142, 19–31 (2007)CrossRef
go back to reference Pérez Almodóvar, E.X., Tao, Y., Carta, G.: Protein adsorption and transport in cation exchangers with a rigid backbone matrix with and without polymeric surface extenders. Biotechnol. Prog. 27, 1264–1272 (2011)CrossRef Pérez Almodóvar, E.X., Tao, Y., Carta, G.: Protein adsorption and transport in cation exchangers with a rigid backbone matrix with and without polymeric surface extenders. Biotechnol. Prog. 27, 1264–1272 (2011)CrossRef
go back to reference Pérez Almodóvar, E.X., Wu, Y., Carta, G.: Multicomponent adsorption of monoclonal antibodies on macroporous and polymer grafted cation exchangers. J. Chromatogr. A 1264, 48–56 (2012)CrossRef Pérez Almodóvar, E.X., Wu, Y., Carta, G.: Multicomponent adsorption of monoclonal antibodies on macroporous and polymer grafted cation exchangers. J. Chromatogr. A 1264, 48–56 (2012)CrossRef
go back to reference Pezzini, J., Joucla, G., Gantie, R., Toueille, M., Lomenech, A.M., Le Sénéchal, C., Garbay, B., Santarelli, X., Cabanne, C.: Antibody capture by mixed-mode chromatography: a comprehensive study from determination of optimal purification conditions to identification of contaminating host cell proteins. J. Chromatogr. A 1218, 8197–8208 (2011)CrossRef Pezzini, J., Joucla, G., Gantie, R., Toueille, M., Lomenech, A.M., Le Sénéchal, C., Garbay, B., Santarelli, X., Cabanne, C.: Antibody capture by mixed-mode chromatography: a comprehensive study from determination of optimal purification conditions to identification of contaminating host cell proteins. J. Chromatogr. A 1218, 8197–8208 (2011)CrossRef
go back to reference Reck, J.M., Pabst, T.M., Hunter, A.K., Wang, X., Carta, G.: Adsorption equilibrium and kinetics of monomer–dimer monoclonal antibody mixtures on a cation exchange resin. J. Chromatogr. A 1402, 46–59 (2015)CrossRef Reck, J.M., Pabst, T.M., Hunter, A.K., Wang, X., Carta, G.: Adsorption equilibrium and kinetics of monomer–dimer monoclonal antibody mixtures on a cation exchange resin. J. Chromatogr. A 1402, 46–59 (2015)CrossRef
go back to reference Ruthven, D.M.: Principles of Adsorption and Adsorption Processes. Wiley, New York (1984) Ruthven, D.M.: Principles of Adsorption and Adsorption Processes. Wiley, New York (1984)
go back to reference Schwartz, W., Judd, D., Wysocki, M., Guerrier, L., Birck-Wilson, E., Boschetti, E.: Comparison of hydrophobic charge induction chromatography with affinity chromatography on protein A for harvest and purification of antibodies. J. Chromatogr. A 908, 251–263 (2001)CrossRef Schwartz, W., Judd, D., Wysocki, M., Guerrier, L., Birck-Wilson, E., Boschetti, E.: Comparison of hydrophobic charge induction chromatography with affinity chromatography on protein A for harvest and purification of antibodies. J. Chromatogr. A 908, 251–263 (2001)CrossRef
go back to reference Srinivasan, K., Parimal, S., Lopez, M.M., McCallum, S.A., Cramer, S.M.: Investigation into the molecular and thermodynamic basis of protein interactions in multimodal chromatography using functionalized nanoparticles. Langmuir 30, 13205–13216 (2014)CrossRef Srinivasan, K., Parimal, S., Lopez, M.M., McCallum, S.A., Cramer, S.M.: Investigation into the molecular and thermodynamic basis of protein interactions in multimodal chromatography using functionalized nanoparticles. Langmuir 30, 13205–13216 (2014)CrossRef
go back to reference Stone, M.C., Carta, G.: Protein adsorption and transport in agarose and dextran-grafted agarose media for ion exchange chromatography. J. Chromatogr. A 1146, 202–215 (2007)CrossRef Stone, M.C., Carta, G.: Protein adsorption and transport in agarose and dextran-grafted agarose media for ion exchange chromatography. J. Chromatogr. A 1146, 202–215 (2007)CrossRef
go back to reference Tyn, M.T., Gusek, T.W.: Prediction of diffusion coefficient of proteins. Biotechnol. Bioeng. 35, 327–338 (1990)CrossRef Tyn, M.T., Gusek, T.W.: Prediction of diffusion coefficient of proteins. Biotechnol. Bioeng. 35, 327–338 (1990)CrossRef
go back to reference Wu, Y., Simons, J., Hooson, S., Abraham, D., Carta, G.: Protein and virus-like particle adsorption on perfusion chromatography media. J. Chromatogr. A 1297, 96–105 (2013)CrossRef Wu, Y., Simons, J., Hooson, S., Abraham, D., Carta, G.: Protein and virus-like particle adsorption on perfusion chromatography media. J. Chromatogr. A 1297, 96–105 (2013)CrossRef
go back to reference Yang, Y., Geng, X.: Mixed-mode chromatography and its applications to biopolymers. J. Chromatogr. A 1218, 8813–8825 (2011)CrossRef Yang, Y., Geng, X.: Mixed-mode chromatography and its applications to biopolymers. J. Chromatogr. A 1218, 8813–8825 (2011)CrossRef
go back to reference Yao, Y., Lenhoff, A.M.: Determination of pore size distributions of porous chromatographic adsorbents by inverse size-exclusion chromatography. J. Chromatogr. A 1037, 273–282 (2004)CrossRef Yao, Y., Lenhoff, A.M.: Determination of pore size distributions of porous chromatographic adsorbents by inverse size-exclusion chromatography. J. Chromatogr. A 1037, 273–282 (2004)CrossRef
go back to reference Yu, L.-L., Shi, Q.-H., Sun, Y.: Effect of dextran layer on protein uptake to dextran-grafted adsorbents for ion-exchange and mixed-mode chromatography. J. Sep. Sci. 34, 2950–2959 (2011)CrossRef Yu, L.-L., Shi, Q.-H., Sun, Y.: Effect of dextran layer on protein uptake to dextran-grafted adsorbents for ion-exchange and mixed-mode chromatography. J. Sep. Sci. 34, 2950–2959 (2011)CrossRef
go back to reference Zhao, G., Peng, G., Li, F., Shi, Q., Sun, Y.: 5-Aminoindole, a new ligand for hydrophobic charge induction chromatography. J. Chromatogr. A 1211, 90–98 (2008)CrossRef Zhao, G., Peng, G., Li, F., Shi, Q., Sun, Y.: 5-Aminoindole, a new ligand for hydrophobic charge induction chromatography. J. Chromatogr. A 1211, 90–98 (2008)CrossRef
go back to reference Zhao, G., Dong, X.-Y., Sun, Y.: Ligands for mixed-mode protein chromatography: principles, characteristics and design. J. Biotechnol. 144, 3–11 (2009)CrossRef Zhao, G., Dong, X.-Y., Sun, Y.: Ligands for mixed-mode protein chromatography: principles, characteristics and design. J. Biotechnol. 144, 3–11 (2009)CrossRef
go back to reference Zhu, M., Carta, G.: Adsorption of polyethylene-glycolated bovine serum albumin on macroporous and polymer-grafted anion exchangers. J. Chromatogr. A 1326, 29–38 (2014)CrossRef Zhu, M., Carta, G.: Adsorption of polyethylene-glycolated bovine serum albumin on macroporous and polymer-grafted anion exchangers. J. Chromatogr. A 1326, 29–38 (2014)CrossRef
Metadata
Title
Protein adsorption equilibrium and kinetics in multimodal cation exchange resins
Authors
Mimi Zhu
Giorgio Carta
Publication date
11-12-2015
Publisher
Springer US
Published in
Adsorption / Issue 2/2016
Print ISSN: 0929-5607
Electronic ISSN: 1572-8757
DOI
https://doi.org/10.1007/s10450-015-9735-z

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