Targeting Carcinoembryonic Antigen with DNA Vaccination: On-Target Adverse Events Link with Immunologic and Clinical

Katy J McCann1, Ann Mander1, Angelica Cazaly1

  • 1Southampton Experimental Cancer Medicine Centre, Cancer Sciences Unit, University of Southampton, Southampton, UK.

Abstract

Insights

This DNA fusion vaccine successfully stimulated immune responses against cancer antigen CAP-1. Diarrhea, an adverse event, correlated with improved tumor marker decreases and survival, suggesting a therapeutic mechanism.

Area of Science:

  • Oncology
  • Immunology
  • Vaccine Development

Background:

  • Carcinogenic Embryonic Antigen (CEA) is a tumor-associated antigen expressed in various carcinomas.
  • Targeting CEA with immunotherapies holds promise for cancer treatment.
  • Overcoming peripheral tolerance to self-antigens like CEA is a challenge in cancer vaccination.

Purpose of the Study:

  • To evaluate a DNA fusion vaccine encoding the HLA-A*0201-binding peptide CAP-1 from CEA linked to a tetanus toxin-derived immunostimulatory domain (DOM).
  • To assess the clinical and immunological responses in patients with CEA-expressing carcinomas.

Main Methods:

  • Twenty-seven patients with CEA-expressing carcinomas received six intramuscular vaccinations of 1 mg naked DNA.
  • Patients were divided into two arms: those with measurable disease and those without radiological evidence of disease.
  • Clinical and immunological follow-up was conducted up to week 64.

Main Results:

  • DOM-specific immune responses confirmed successful vaccine delivery.
  • Immunological responses were observed in all patients without measurable disease and 60% with advanced disease.
  • CAP-1-specific CD8+ T cells were expanded in 58% and 20% of patients in the respective arms.
  • Diarrhea, a gastrointestinal adverse event, was linked to decreased CEA levels and improved global immune responses.
  • In advanced disease patients, decreased CEA was associated with better overall survival.

Conclusions:

  • DNA vaccination can overcome peripheral tolerance in normal and tumor tissues.
  • The vaccine demonstrated the ability to induce antigen-specific T cell responses.
  • Further investigation in combination studies, such as with anti-PD1 antibodies, is warranted.

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