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Immunotherapy using IgE or CAR T cells for cancers expressing the tumor antigen SLC3A2
Giulia Pellizzari1, Olivier Martinez2, Silvia Crescioli1
1St John's Institute of Dermatology, School of Basic and Medical Biosciences, King's College London, London, England, UK.
Background:
Cancer immunotherapy with monoclonal antibodies and chimeric antigen receptor (CAR) T cell therapies can benefit from selection of new targets with high levels of tumor specificity and from early assessments of efficacy and safety to derisk potential therapies.
Methods:
Employing mass spectrometry, bioinformatics, immuno-mass spectrometry and CRISPR/Cas9 we identified the target of the tumor-specific SF-25 antibody. We engineered IgE and CAR T cell immunotherapies derived from the SF-25 clone and evaluated potential for cancer therapy.
Results:
We identified the target of the SF-25 clone as the tumor-associated antigen SLC3A2, a cell surface protein with key roles in cancer metabolism. We generated IgE monoclonal antibody, and CAR T cell immunotherapies each recognizing SLC3A2. In concordance with preclinical and, more recently, clinical findings with the first-in-class IgE antibody MOv18 (recognizing the tumor-associated antigen Folate Receptor alpha), SF-25 IgE potentiated Fc-mediated effector functions against cancer cells in vitro and restricted human tumor xenograft growth in mice engrafted with human effector cells. The antibody did not trigger basophil activation in cancer patient blood ex vivo, suggesting failure to induce type I hypersensitivity, and supporting safe therapeutic administration. SLC3A2-specific CAR T cells demonstrated cytotoxicity against tumor cells, stimulated interferon-γ and interleukin-2 production in vitro. In vivo SLC3A2-specific CAR T cells significantly increased overall survival and reduced growth of subcutaneous PC3-LN3-luciferase xenografts. No weight loss, manifestations of cytokine release syndrome or graft-versus-host disease, were detected.
Conclusions:
These findings identify efficacious and potentially safe tumor-targeting of SLC3A2 with novel immune-activating antibody and genetically modified cell therapies.
Insights
Researchers identified SLC3A2 as a novel cancer target. New immunotherapies using antibodies and CAR T cells targeting SLC3A2 show promising efficacy and safety in preclinical models.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Cancer immunotherapy, including monoclonal antibodies and chimeric antigen receptor (CAR) T cell therapies, requires novel targets with high tumor specificity.
- Early assessment of therapeutic efficacy and safety is crucial for derisking new cancer treatments.
Purpose of the Study:
- To identify the target of the tumor-specific SF-25 antibody.
- To engineer and evaluate IgE antibody and CAR T cell immunotherapies targeting the identified antigen for cancer therapy.
Main Methods:
- Mass spectrometry, bioinformatics, immuno-mass spectrometry, and CRISPR/Cas9 were employed to identify the SF-25 antibody target.
- Engineered IgE monoclonal antibody and CAR T cell immunotherapies targeting SLC3A2 were generated.
- In vitro and in vivo studies were conducted to assess the efficacy and safety of the developed immunotherapies.
Main Results:
- The tumor-associated antigen SLC3A2 was identified as the target of the SF-25 antibody.
- SF-25 IgE demonstrated Fc-mediated effector functions against cancer cells and restricted tumor xenograft growth in mice, with no ex vivo basophil activation observed in patient blood.
- SLC3A2-specific CAR T cells exhibited cytotoxicity, cytokine production (IFN-γ, IL-2) in vitro, and significantly improved survival and reduced tumor growth in vivo without adverse effects.
Conclusions:
- SLC3A2 is a viable and potentially safe target for cancer therapy.
- Novel immune-activating antibody (IgE) and genetically modified cell (CAR T) therapies targeting SLC3A2 demonstrate significant therapeutic potential.
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