TNFR2 blockade promotes anti-tumoral immune response in PDAC by targeting activated Treg and reducing T cell exhaustion
Debesset, A.; Pilon, C.; Meunier, S.; Bonizec, O.; Richer, W.; Thiolat, A.; Houppe, C.; Ponzo, M.; Magnan, J.; Caudana, P.; Tosello boari, J.; Baulande, S.; To, N. H.; Salomon, B. L.; Piaggio, E.; Cascone, I.; Cohen, J. L.
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BackgroundPancreatic ductal adenocarcinoma (PDAC) is one of the most aggressive cancers, highly resistant to standard chemotherapy and immunotherapy. Regulatory T cells (Tregs) expressing TNF receptor 2 (TNFR2) contribute to immunosuppression in PDAC. Treg infiltration correlates with poor survival and tumor progression in PDAC patients. We hypothesized that TNFR2 inhibition using a blocking monoclonal antibody (mAb) could shift the Treg-effector T cell balance in PDAC, thus enhancing anti-tumoral responses. MethodTo support this hypothesis, we first described TNFR2 expression in a cohort of 24 PDAC patients from publicly available single-cell analysis data. In orthotopic and immunocompetent mouse models of PDAC, we also described the immune environment of PDAC after immune cell sorting and single-cell analysis. The modifications of the immune environment before and after anti-TNFR2 mAb treatment were evaluated as well as effect on tumor progression. ResultsPDAC patients exhibited elevated TNFR2 expression in Treg, myeloid cells and endothelial cells but low level in ductal cells. By flow cytometry and single cell RNAseq analysis, we identified two Treg populations in orthotopic mouse models: resting and activated Tregs. The anti-TNFR2 mAb selectively targeted activated tumor-infiltrating Tregs, reducing T cell exhaustion markers in CD8+ T cells. However, anti-TNFR2 treatment alone had limited efficacy in activating CD8+ T cells and only slightly reduced the tumor growth. The combination of the anti-TNFR2 mAb with agonistic anti-CD40 mAbs promoted stronger T cell activation, tumor growth inhibition, and improved survival and immunological memory in PDAC-bearing mice. ConclusionOur data suggest that combining a CD40 agonist with a TNFR2 antagonist represents a promising therapeutic strategy for PDAC patients.
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