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.

Abstract

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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