Personalized neoantigen viro-immunotherapy platform for triple-negative breast cancer

Renato Brito Baleeiro1, Peng Liu1, Louisa S Chard Dunmall1

  • 1Centre for Cancer Biomarkers and Biotherapeutics, Queen Mary University of London, London, UK.

Abstract

Insights

This study developed a novel platform for triple-negative breast cancer (TNBC) immunotherapy. Oncolytic vaccinia virus (VV) delivered immunogenic neoantigens, successfully inducing anti-tumor CD8+ T-cells, slowing tumor growth, and improving survival in preclinical models.

Area of Science:

  • Oncology
  • Immunology
  • Virology

Background:

  • Triple-negative breast cancer (TNBC) has a poor prognosis and high metastatic potential.
  • TNBC's high mutational load presents an opportunity for neoantigen-based immunotherapy.
  • A key challenge is identifying potent, tumor-specific neoantigens for vaccine development.

Purpose of the Study:

  • To establish a platform for identifying and delivering immunogenic neoantigens for TNBC.
  • To utilize oncolytic vaccinia virus (VV) as a delivery system for a TNBC neoantigen vaccine.
  • To assess the therapeutic potential of this neoantigen-based vaccine strategy.

Main Methods:

  • Bioinformatic analysis and cell-based assays were used to identify immunogenic neoantigens in TNBC samples.
  • In vitro and ex vivo T-cell assays evaluated neoantigen immunogenicity.
  • Preclinical TNBC models were used to assess the efficacy of neoantigen vaccination with oncolytic VV.

Main Results:

  • Immunogenic neoantigens were identified, generating neoantigen-specific CD8+ T-cells.
  • Oncolytic VV modulated the tumor microenvironment, enhancing dendritic cells and T-cells.
  • A prime/boost regimen with neoantigens and oncolytic VV slowed tumor growth and increased survival.

Conclusions:

  • The study presents a promising neoantigen-based immunotherapy approach for TNBC.
  • The developed platform effectively induces neoantigen-specific CD8+ T-cell responses.
  • Further clinical trials are warranted to evaluate safety and efficacy.

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