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Aggregates in monoclonal antibody manufacturing processes

Biotechnology and Bioengineering · 2011 · Vol. 108(7) · pp. 1494–1508
María Vázquez‐ReyDietmar Lang

Abstract

Monoclonal antibodies have proved to be a highly successful class of therapeutic products. Large-scale manufacturing of pharmaceutical antibodies is a complex activity that requires considerable effort in both process and analytical development. If a therapeutic protein cannot be stabilized adequately, it will lose partially or totally its therapeutic properties or even cause immunogenic reactions thus potentially further endangering the patients' health. The phenomenon of protein aggregation is a common issue that compromises the quality, safety, and efficacy of antibodies and can happen at different steps of the manufacturing process, including fermentation, purification, final formulation, and storage. Aggregate levels in drug substance and final drug product are a key factor when assessing quality attributes of the molecule, since aggregation might impact biological activity of the biopharmaceutical. In this review it is analyzed how aggregates are formed during monoclonal antibody industrial production, why they have to be removed and the manufacturing process steps that are designed to either minimize or remove aggregates in the final product.

Protein purification and stabilityViral Infectious Diseases and Gene Expression in InsectsMonoclonal and Polyclonal Antibodies ResearchBiopharmaceuticalMonoclonal antibodyQuality by DesignProtein aggregationManufacturing processDrugProcess (computing)AntibodyBiochemical engineeringChemistry

MeSH terms

Antibodies, MonoclonalBiotechnologyHumansProtein DenaturationRecombinant ProteinsTechnology, PharmaceuticalProtein Stability
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References
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Pharmaceutical Research · 2010 · 1,076 citations
Protein aggregation—Pathways and influencing factors
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International Journal of Pharmaceutics · 2005 · 966 citations
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Journal of Membrane Science · 2007 · 756 citations
Protein aggregation: Pathways, induction factors and analysis
Journal of Pharmaceutical Sciences · 2008 · 879 citations
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