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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.
Abstract:
Progressive tumor growth is associated with deficits in the immunity generated against tumor antigens. Vaccines targeting tumor neoepitopes have the potential to address qualitative defects; however, additional mechanisms of immune failure may underlie tumor progression. In such cases, patients would benefit from additional immune-oncology agents targeting potential mechanisms of immune failure. This study explores the identification of neoepitopes in the MC38 colon carcinoma model by comparison of tumor to normal DNA and tumor RNA sequencing technology, as well as neoepitope delivery by both peptide- and adenovirus-based vaccination strategies. To improve antitumor efficacies, we combined the vaccine with a group of rationally selected immune-oncology agents. We utilized an IL15 superagonist to enhance the development of antigen-specific immunity initiated by the neoepitope vaccine, PD-L1 blockade to reduce tumor immunosuppression, and a tumor-targeted IL12 molecule to facilitate T-cell function within the tumor microenvironment. Analysis of tumor-infiltrating leukocytes demonstrated this multifaceted treatment regimen was required to promote the influx of CD8+ T cells and enhance the expression of transcripts relating to T-cell activation/effector function. Tumor-targeted IL12 resulted in a marked increase in clonality of T-cell repertoire infiltrating the tumor, which when sculpted with the addition of either a peptide or adenoviral neoepitope vaccine promoted efficient tumor clearance. In addition, the neoepitope vaccine induced the spread of immunity to neoepitopes expressed by the tumor but not contained within the vaccine. These results demonstrate the importance of combining neoepitope-targeting vaccines with a multifaceted treatment regimen to generate effective antitumor immunity.
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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