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In Vitro Methods for Comparing Target Binding and CDC Induction Between Therapeutic Antibodies: Applications in Biosimilarity Analysis
Published on: May 4, 2017
Comparative biophysical and functional analysis of TCZ-UFRJ, a potential biosimilar to Actemra
Sanclayver Corrêa Araújo1, Federico Francisco Marsili2, Renata Guimarães Alvim3
1School of Pharmacy, Pharmaceutical Biotechnology Dept., Universidade Federal do Rio de Janeiro - UFRJ, Brazil.
Biosimilar antibodies have become increasingly significant in the pharmaceutical market, driven by the expiration of patents on many reference products. This study presents a comparative analysis between the originator tocilizumab, used to treat inflammatory diseases such as rheumatoid arthritis, and the biosimilar candidate TCZ-UFRJ, produced in HEK293 cells. The investigation focused on various aspects, including primary, secondary, and tertiary structures, intact mass analysis, glycosylation pattern, and functional testing using the IL-6-sensitive THP-1 cell line and ligand binding assay. LC-MS peptide mapping achieved amino acid full sequence coverage for both TCZ-UFRJ and Actemra, confirming the identity of the biosimilar candidate. Both antibodies exhibited a similar secondary structure with a characteristic beta-sheet spectrum, as determined by circular dichroism. The intrinsic tryptophan emission fluorescence profile confirmed a correctly folded tertiary structure for both mAbs. Intact mass analysis demonstrated similar molecular mass and glycoform profiles. Glycosylation analysis revealed similar glycosylation sites and the presence of major N-glycans in both Actemra and TCZ-UFRJ. Dynamic light scattering analysis indicated a monodisperse sample without the presence of oligomers for both. An LSPR ligand binding assay confirmed the interaction between TCZ-UFRJ and the IL-6 receptor, demonstrating specific binding affinity. Subsequent functional testing in the IL-6-sensitive THP-1 cell line validated the biological activity of TCZ-UFRJ, supporting its potential as a biosimilar candidate. These preliminary findings suggest that TCZ-UFRJ holds promise as a biosimilar candidate to Actemra, but further comprehensive studies, including non-clinical and clinical trials, are essential to establish its safety, efficacy, and overall similarity to the originator drug.
Biosimilar antibodies have become increasingly significant in the pharmaceutical market, driven by the expiration of patents on many reference products. This study presents a comparative analysis between the originator tocilizumab, used to treat inflammatory diseases such as rheumatoid arthritis, and the biosimilar candidate TCZ-UFRJ, produced in HEK293 cells. The investigation focused on various aspects, including primary, secondary, and tertiary structures, intact mass analysis, glycosylation pattern, and functional testing using the IL-6-sensitive THP-1 cell line and ligand binding assay. LC-MS peptide mapping achieved amino acid full sequence coverage for both TCZ-UFRJ and Actemra, confirming the identity of the biosimilar candidate. Both antibodies exhibited a similar secondary structure with a characteristic beta-sheet spectrum, as determined by circular dichroism. The intrinsic tryptophan emission fluorescence profile confirmed a correctly folded tertiary structure for both mAbs. Intact mass analysis demonstrated similar molecular mass and glycoform profiles. Glycosylation analysis revealed similar glycosylation sites and the presence of major N-glycans in both Actemra and TCZ-UFRJ. Dynamic light scattering analysis indicated a monodisperse sample without the presence of oligomers for both. An LSPR ligand binding assay confirmed the interaction between TCZ-UFRJ and the IL-6 receptor, demonstrating specific binding affinity. Subsequent functional testing in the IL-6-sensitive THP-1 cell line validated the biological activity of TCZ-UFRJ, supporting its potential as a biosimilar candidate. These preliminary findings suggest that TCZ-UFRJ holds promise as a biosimilar candidate to Actemra, but further comprehensive studies, including non-clinical and clinical trials, are essential to establish its safety, efficacy, and overall similarity to the originator drug.
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