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Published on: June 12, 2021
Mutation-derived Neoantigen-specific T-cell Responses in Multiple Myeloma
Deepak Perumal1,2, Naoko Imai1,2, Alessandro Laganà3,4
1Department of Hematology and Medical Oncology, Icahn School of Medicine at Mount Sinai, New York, New York.
Purpose:
Somatic mutations in cancer cells can give rise to novel protein sequences that can be presented by antigen-presenting cells as neoantigens to the host immune system. Tumor neoantigens represent excellent targets for immunotherapy, due to their specific expression in cancer tissue. Despite the widespread use of immunomodulatory drugs and immunotherapies that recharge T and NK cells, there has been no direct evidence that neoantigen-specific T-cell responses are elicited in multiple myeloma.
Experimental Design:
Using next-generation sequencing data we describe the landscape of neo-antigens in 184 patients with multiple myeloma and successfully validate neoantigen-specific T cells in patients with multiple myeloma and support the feasibility of neoantigen-based therapeutic vaccines for use in cancers with intermediate mutational loads such as multiple myeloma.
Results:
In this study, we demonstrate an increase in neoantigen load in relapsed patients with multiple myeloma as compared with newly diagnosed patients with multiple myeloma. Moreover, we identify shared neoantigens across multiple patients in three multiple myeloma oncogenic driver genes (KRAS, NRAS, and IRF4). Next, we validate neoantigen T-cell response and clonal expansion in correlation with clinical response in relapsed patients with multiple myeloma. This is the first study to experimentally validate the immunogenicity of predicted neoantigens from next-generation sequencing in relapsed patients with multiple myeloma.
Conclusions:
Our findings demonstrate that somatic mutations in multiple myeloma can be immunogenic and induce neoantigen-specific T-cell activation that is associated with antitumor activity in vitro and clinical response in vivo. Our results provide the foundation for using neoantigen targeting strategies such as peptide vaccines in future trials for patients with multiple myeloma.
Insights
Somatic mutations in multiple myeloma can trigger neoantigen-specific T-cell responses, demonstrating their immunogenicity. This validates neoantigen-based vaccines as a potential therapeutic strategy for multiple myeloma patients.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Somatic mutations in cancer cells create neoantigens, which are presented to the immune system.
- Tumor neoantigens are specific to cancer tissue, making them ideal immunotherapy targets.
- Direct evidence of neoantigen-specific T-cell responses in multiple myeloma was lacking despite immunotherapy use.
Purpose of the Study:
- To investigate the landscape of neoantigens in multiple myeloma.
- To validate neoantigen-specific T-cell responses in multiple myeloma patients.
- To assess the feasibility of neoantigen-based therapeutic vaccines for multiple myeloma.
Main Methods:
- Analysis of next-generation sequencing data from 184 multiple myeloma patients.
- Validation of neoantigen-specific T cells.
- Correlation of T-cell response and clonal expansion with clinical outcomes.
Main Results:
- Neoantigen load is increased in relapsed multiple myeloma compared to newly diagnosed.
- Shared neoantigens were identified in key multiple myeloma driver genes (KRAS, NRAS, IRF4).
- Neoantigen immunogenicity and T-cell activation correlated with antitumor activity and clinical response.
Conclusions:
- Somatic mutations in multiple myeloma are immunogenic, inducing neoantigen-specific T-cell activation.
- Neoantigen-specific T-cell responses are associated with antitumor activity and clinical response.
- Findings support neoantigen targeting strategies, like peptide vaccines, for future multiple myeloma trials.
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