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Targeting two distinct epitopes on human CD73 with a bispecific antibody improves anticancer activity
Odd L Gammelgaard1, Mikkel G Terp1, Christian Renn2
1Department of Cancer and Inflammation Research, Institute of Molecular Medicine, University of Southern Denmark, Odense, Denmark.
Journal for Immunotherapy of Cancer
|September 12, 2022
Summary
Bispecific antibodies targeting CD73 enhance anticancer activity by combining multiple mechanisms. This novel approach neutralizes T-cell suppression and improves survival in preclinical cancer models.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- CD73 enzymatic activity generates immunosuppressive extracellular adenosine.
- Antibodies targeting CD73 have shown preclinical anticancer effects via various mechanisms.
- These mechanisms include enzyme inhibition, Fc receptor engagement, and CD73 redistribution.
Purpose of the Study:
- To generate and evaluate biparatopic bispecific antibodies (bsAbs) combining distinct anti-CD73 antibody activities.
- To assess the enhanced anticancer efficacy of these bsAbs in preclinical models.
Main Methods:
- Generation of biparatopic bsAbs using controlled Fab arm exchange from parental anti-CD73 antibodies.
- In vitro and in vivo evaluation of the anticancer activity of the generated bsAbs.
Main Results:
- The biparatopic bsAb demonstrated improved enzyme inhibitory activity compared to parental antibodies.
- Adenosine-mediated T-cell suppression was neutralized, evidenced by increased T-cell proliferation and interferon-gamma production.
- Enhanced internalization of cell surface CD73 and potent Fc-mediated immune cell engagement were observed.
- Tumor-bearing mice treated with the bsAb showed prolonged survival.
Conclusions:
- Complementary anticancer mechanisms of distinct anti-CD73 antibodies can be effectively combined and enhanced in biparatopic bsAbs.
- The superior and multi-mechanistic activity of these bsAbs positions them as promising therapeutic candidates for CD73-targeted cancer therapy.
- This strategy offers a potential paradigm shift for future antibody design in cancer treatment.
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