Development of mesothelioma-specific oncolytic immunotherapy enabled by immunopeptidomics of murine and human mesothelioma tumors.
Jacopo ChiaroGabriella AntignaniSara FeolaMichaela FeodoroffBeatriz MartinsHanne CojocSalvatore RussoManlio FuscielloFiras HamdanValentina FerrariDaniele CiampiIlkka IlonenJari RäsänenMikko I MäyränpääJukka PartanenSatu KoskelaJarno HonkanenJussi HalonenLukasz KurykMaria RescignoMikaela GrönholmRui Mamede BrancaJanne LehtiöVincenzo CerulloPublished in: Nature communications (2023)
Malignant pleural mesothelioma (MPM) is an aggressive tumor with a poor prognosis. As the available therapeutic options show a lack of efficacy, novel therapeutic strategies are urgently needed. Given its T-cell infiltration, we hypothesized that MPM is a suitable target for therapeutic cancer vaccination. To date, research on mesothelioma has focused on the identification of molecular signatures to better classify and characterize the disease, and little is known about therapeutic targets that engage cytotoxic (CD8+) T cells. In this study we investigate the immunopeptidomic antigen-presented landscape of MPM in both murine (AB12 cell line) and human cell lines (H28, MSTO-211H, H2452, and JL1), as well as in patients' primary tumors. Applying state-of-the-art immuno-affinity purification methodologies, we identify MHC I-restricted peptides presented on the surface of malignant cells. We characterize in vitro the immunogenicity profile of the eluted peptides using T cells from human healthy donors and cancer patients. Furthermore, we use the most promising peptides to formulate an oncolytic virus-based precision immunotherapy (PeptiCRAd) and test its efficacy in a mouse model of mesothelioma in female mice. Overall, we demonstrate that the use of immunopeptidomic analysis in combination with oncolytic immunotherapy represents a feasible and effective strategy to tackle untreatable tumors.
Keyphrases
- poor prognosis
- endothelial cells
- mouse model
- induced pluripotent stem cells
- end stage renal disease
- pluripotent stem cells
- long non coding rna
- induced apoptosis
- type diabetes
- amino acid
- ejection fraction
- single cell
- peritoneal dialysis
- dna methylation
- signaling pathway
- young adults
- cell proliferation
- single molecule
- patient reported outcomes
- squamous cell