Neoantigens as potential vaccines in hepatocellular carcinoma
David Repáraz1,2,3, Marta Ruiz1,2,3, Diana Llopiz1,2,3
1Immunology and Immunotherapy, Centro de Investigación Médica Aplicada (CIMA), Universidad de Navarra, Pamplona, Spain.
Background:
Neoantigens, new immunogenic sequences arising from tumor mutations, have been associated with response to immunotherapy and are considered potential targets for vaccination. Hepatocellular carcinoma (HCC) is a moderately mutated tumor, where the neoantigen repertoire has not been investigated. Our aim was to analyze whether tumors in HCC patients contain immunogenic neoantigens suitable for future use in therapeutic vaccination.
Methods:
Whole-exome sequencing and RNAseq were performed in a cohort of fourteen HCC patients submitted to surgery or liver transplant. To identify mutations, single-nucleotide variants (SNV) originating non-synonymous changes that were confirmed at the RNA level were analyzed. Immunogenicity of putative neoAgs predicted by HLA binding algorithms was confirmed by using in vitro HLA binding assays and T-cell stimulation experiments, the latter in vivo, by immunizing HLA-A*02.01/HLA-DRB1*01 (HHD-DR1) transgenic mice, and in in vitro, using human lymphocytes.
Results:
Sequencing led to the identification of a median of 1217 missense somatic SNV per patient, narrowed to 30 when filtering by using RNAseq data. A median of 13 and 5 peptides per patient were predicted as potential binders to HLA class I and class II molecules, respectively. Considering only HLA-A*02.01- and HLA-DRB1*01-predicted binders, 70% demonstrated HLA-binding capacity and about 50% were immunogenic when tested in HHD-DR1 mice. These peptides induced polyfunctional T cells that specifically recognized the mutated but not the wild-type sequence as well as neoantigen-expressing cells. Moreover, coimmunization experiments combining CD8 and CD4 neoantigen epitopes resulted in stronger CD8 T cell responses. Finally, responses against neoantigens were also induced in vitro using human cells.
Conclusion:
These results show that mutations in HCC tumors may generate immunogenic neoantigens with potential applicability for future combinatorial therapeutic strategies.
Insights
Hepatocellular carcinoma (HCC) tumors harbor immunogenic neoantigens derived from mutations. These neoantigens can stimulate T cells and hold promise for developing novel cancer vaccines and combinatorial therapies.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Neoantigens, arising from tumor mutations, are linked to immunotherapy response and vaccination targets.
- Hepatocellular carcinoma (HCC) is a moderately mutated tumor with an uninvestigated neoantigen repertoire.
- This study aimed to identify immunogenic neoantigens in HCC for potential therapeutic vaccination.
Purpose of the Study:
- To investigate the presence and immunogenicity of neoantigens in hepatocellular carcinoma (HCC) tumors.
- To assess the potential of HCC-derived neoantigens for future therapeutic vaccination strategies.
Main Methods:
- Whole-exome sequencing and RNAseq were performed on fourteen HCC patients.
- Mutations were identified, and potential neoantigens were predicted using HLA binding algorithms.
- Immunogenicity was confirmed through in vitro HLA binding assays and T-cell stimulation experiments in mice and human lymphocytes.
Main Results:
- A median of 1217 missense somatic SNVs per patient were identified, reduced to 30 with RNAseq filtering.
- A median of 13 and 5 peptides per patient were predicted as HLA class I and class II binders, respectively.
- Approximately 70% of predicted binders showed HLA-binding capacity, and 50% were immunogenic in mice, inducing polyfunctional T cells recognizing mutated sequences.
Conclusions:
- Mutations in HCC tumors can generate immunogenic neoantigens.
- These findings suggest potential applications for neoantigens in future combinatorial therapeutic strategies for HCC.
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