Characterization of membrane adsorbers used for impurity removal during the continuous purification of monoclonal antibodies
Trnovec, Helena (2020) Characterization of membrane adsorbers used for impurity removal during the continuous purification of monoclonal antibodies. Journal of chromatography A, 1609 (460518). ISSN 1873-3778; 0021-9673
Abstract
Downstream purification processes for monoclonal antibody production typically involve multiple steps; some of them are conventionally performed by bead-based column chromatography. Affinity chromatography with Protein A is the most selective method for protein purification and is conventionally used for the initial capturing step to facilitate rapid volume reduction as well as separation of the antibody. However, conventional affinity chromatography has some limitations that are inherent with the method, it exhibits slow intraparticle diffusion and high pressure drop within the column. Membrane-based separation processes can be used in order to overcome these mass transfer limitations. The ligand is immobilized in the membrane pores and the convective flow brings the solute molecules very close to the ligand and hence minimizes the diffusional limitations associated with the beads. Nonetheless, the adoption of this technology has been slow because membrane chromatography has been limited by a lower binding capacity than that of conventional columns, even though the high flux advantages provided by membrane adsorbers would lead to higher productivity. This review considers the use of membrane adsorbers as an alternative technology for capture and polishing steps for the purification of monoclonal antibodies. Promising industrial applications as well as new trends in research will be addressed.
Item Type: | Article |
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Date Deposited: | 25 Aug 2020 00:45 |
Last Modified: | 25 Aug 2020 00:45 |
URI: | https://oak.novartis.com/id/eprint/43318 |