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Published on: January 19, 2019
Anti-EGFR biparatopic-SEED antibody has enhanced combination-activity in a single molecule
Christie Kelton1, John S Wesolowski, Maria Soloviev
1EMD Serono Research Institute, Inc., 45A Middlesex Turnpike, Billerica, MA 01821, USA.
Abstract:
Certain combinations of non-competitive anti-EGFR antibodies have been reported to produce new effects on cells compared to either antibody used separately. New and enhanced combination-activity includes increased inhibition of signaling, increased receptor internalization and degradation, reduced proliferation of tumor cell lines and induction of complement-dependent cytotoxicity (CDC) effector function. To test requirements and mechanisms to elicit enhanced combination-activity with different EGFR binding domains, we created an anti-EGFR biparatopic antibody. A biparatopic antibody interacts through two different antigen-binding sites to a single antigen. A heterodimeric antibody with one binding domain derived from the C225 antibody and one binding domain derived from the humanized 425 (hu425) antibody was built on the strand-exchange engineered domain (SEED) scaffold. This anti-EGFR biparatopic-SEED antibody was compared to parental antibodies used alone and in combination, and to the corresponding monovalent anti-EGFR-SEED antibodies used alone or in combination. We found that the anti-EGFR biparatopic-SEED had enhanced activity, similar to the combination of the two parental antibodies. Combinations of monovalent anti-EGFR-SEED antibodies did not produce enhanced effectiveness in cellular assays. Our results show that the anti-EGFR biparatopic antibody created using the SEED scaffold has enhanced combination-activity in a single molecule. Furthermore, these data suggest that the potential to cross-link the two different epitopes is an important requirement in the mechanism of enhanced combination-activity.
Insights
A novel biparatopic antibody targeting EGFR exhibits enhanced anti-tumor activity by combining two binding domains into one molecule. This biparatopic antibody demonstrates superior efficacy compared to individual antibodies, highlighting the importance of epitope cross-linking for improved therapeutic outcomes.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Combinations of non-competitive anti-EGFR antibodies show enhanced anti-cancer effects.
- These effects include increased signaling inhibition, receptor degradation, reduced tumor cell proliferation, and complement-dependent cytotoxicity (CDC).
Purpose of the Study:
- To investigate the requirements and mechanisms for enhanced combination activity of anti-EGFR antibodies.
- To create and evaluate a novel anti-EGFR biparatopic antibody using the SEED scaffold.
Main Methods:
- Constructed a heterodimeric anti-EGFR biparatopic antibody on a SEED scaffold, incorporating binding domains from C225 and hu425 antibodies.
- Compared the biparatopic antibody's activity against parental antibodies and monovalent SEED antibodies in cellular assays.
Main Results:
- The anti-EGFR biparatopic-SEED antibody demonstrated enhanced activity, comparable to the combination of parental antibodies.
- Combinations of monovalent anti-EGFR-SEED antibodies did not yield enhanced effectiveness.
- The biparatopic antibody achieved enhanced combination activity within a single molecule.
Conclusions:
- The engineered anti-EGFR biparatopic antibody exhibits potent combination activity.
- Epitope cross-linking by antibodies targeting distinct EGFR epitopes is crucial for enhanced anti-cancer efficacy.
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