Efficient Tumor Clearance and Diversified Immunity through Neoepitope Vaccines and Combinatorial Immunotherapy

Karin L Lee1, Stephen C Benz2, Kristin C Hicks1

  • 1Laboratory of Tumor Immunology and Biology, Center for Cancer Research, NCI, NIH, Bethesda, Maryland.

Insights

Combining neoepitope vaccines with immune-oncology agents like IL15 superagonists, PD-L1 blockade, and targeted IL12 enhances antitumor immunity. This multifaceted approach promotes T-cell infiltration and function, leading to efficient tumor clearance and broader immune responses.

Area of Science:

  • Oncology
  • Immunology
  • Cancer Research

Background:

  • Tumor progression often involves immune system deficits against tumor antigens.
  • While neoepitope vaccines can address some defects, other immune failure mechanisms may persist.
  • Additional immune-oncology agents are needed to overcome tumor progression.

Purpose of the Study:

  • Identify neoepitopes in the MC38 colon carcinoma model.
  • Evaluate peptide- and adenovirus-based neoepitope vaccine strategies.
  • Combine neoepitope vaccines with immune-oncology agents to enhance antitumor efficacy.

Main Methods:

  • Neoepitope identification using tumor and normal DNA/RNA sequencing.
  • Vaccination strategies using peptides and adenoviruses.
  • Combination therapy with IL15 superagonist, PD-L1 blockade, and tumor-targeted IL12.

Main Results:

  • Multifaceted treatment promoted CD8+ T cell infiltration and activation.
  • Tumor-targeted IL12 increased T cell repertoire clonality.
  • Neoepitope vaccines induced immunity to unincluded tumor neoepitopes.
  • Combination therapy led to efficient tumor clearance.

Conclusions:

  • Combining neoepitope vaccines with a strategic combination of immune-oncology agents is crucial for effective antitumor immunity.
  • This approach overcomes multiple mechanisms of immune failure during tumor progression.
  • The strategy elicits robust T cell responses and promotes tumor eradication.

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