Antitumor activity of PAbs generated by immunization with a novel HER3-targeting protein-based vaccine candidate in
Ernesto Bermúdez-Abreut1, Gretchen Bergado Báez1, Melissa Martínez Pestano1
1Immunology and Immunotherapy Division, Center of Molecular Immunology (CIM), Havana, Cuba.
Abstract:
Despite the cumulative evidence supporting HER3 as a target for antitumor therapies, no agents targeting HER3 have been approved for cancer treatment. Most of the agents evaluated in preclinical and clinical trials have been specific monoclonal antibodies (MAbs), with few examples of active immunotherapy directed against this receptor. However, some cancer vaccine formats may generate polyclonal antibodies (PAbs) that replicate the diverse effector mechanisms of MAbs, including ligand neutralization and receptor degradation. In this study, we developed a protein subunit-based monovalent vaccine candidate targeting the extracellular domain (ECD) of HER3. Immunization of mice with a formulation targeting murine ErbB3-ECD successfully overcome tolerance to this self-antigen, inducing high titers of ErbB3-specific PAbs. The antitumor potential of this formulation and the induced PAbs was demonstrated in vivo and in vitro in an ErbB3-overexpressing 3LL-D122-derived tumor model. The immunogenicity of the HER3-ECD-based vaccine candidate was confirmed by the induction of high titers of HER3-specific PAbs. Consistent with the initial results, HER3-ECD-targeting PAbs were cytotoxic in several human epithelial tumor cell lines and exerted antitumor effects in vivo. These results support the value of HER3 as a tumor antigen and the effector mechanisms of HER3-specific therapeutic MAbs, while suggesting the potential of the proposed vaccine candidate for the treatment of HER3-expressing carcinomas.
Insights
A novel vaccine targeting the HER3 receptor successfully generated polyclonal antibodies (PAbs) that demonstrated antitumor effects in preclinical models. This HER3 vaccine shows promise for treating HER3-expressing carcinomas.
Area of Science:
- Oncology
- Immunology
- Vaccine Development
Background:
- HER3 is a validated target for cancer therapy, but no HER3-targeting agents are currently approved.
- Existing HER3-targeting agents are primarily monoclonal antibodies (MAbs), with limited exploration of active immunotherapy.
- Polyclonal antibodies (PAbs) from vaccines can mimic MAb effector functions like ligand neutralization and receptor degradation.
Purpose of the Study:
- To develop and evaluate a protein subunit-based vaccine targeting the extracellular domain (ECD) of HER3.
- To assess the immunogenicity and antitumor efficacy of the HER3 vaccine and induced PAbs.
Main Methods:
- Developed a monovalent vaccine targeting the murine ErbB3-ECD.
- Immunized mice to overcome self-tolerance and induce ErbB3-specific PAbs.
- Evaluated vaccine and PAb efficacy in vitro and in vivo using an ErbB3-overexpressing tumor model.
Main Results:
- The HER3-ECD vaccine successfully induced high titers of ErbB3-specific PAbs in mice.
- Induced PAbs exhibited cytotoxicity against human epithelial tumor cell lines in vitro.
- The vaccine and induced PAbs demonstrated significant antitumor effects in vivo.
Conclusions:
- HER3 is a viable tumor antigen, and its targeting via PAbs can replicate MAb mechanisms.
- The developed HER3-ECD vaccine candidate is immunogenic and shows therapeutic potential for HER3-expressing carcinomas.
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