Stimulating the resolution of inflammation overcomes CD8+ T cell exhaustion and boosts immunotherapy 2255409
Abstract
Abstract Introduction PD-1 inhibition has revolutionized cancer therapy. However, despite the initial success of immune checkpoint inhibitors (ICIs) across several cancer types, this approach remains ineffective for most patients. Studies indicate that T cell exhaustion (Tex) is epigenetically encoded, and PD-1 blockade can only partially restore T cell activity. Chronic, non-resolving inflammation fosters an immunosuppressive tumor microenvironment (TME) that promotes T cell exhaustion and contributes to immunotherapy resistance. Our goal is to promote the resolution of inflammation through the administration of D-series resolvins (RvDs) to restore leukocyte antitumor activity and reverse immunosuppression and immunotherapy resistance within the TME. Methods We employed in vitro and in vivo models of HPV-positive head and neck cancer (HNC). Activated CD8+ T cells, isolated from human peripheral blood, were co-cultured with either tumor cell lines or primary tumor cells derived from patient biopsies. Cultures were stimulated with RvD5, a pro-resolving lipid mediator that promotes the resolution of inflammation. Syngeneic and NGS mouse models were treated with RvD5, anti-PD-1, and/or anti-CTLA-4 immunotherapies. Samples were analyzed by flow cytometry, cytokine profiling, lipidomics, bulk RNA sequencing, and single-cell RNA sequencing. Results We found that RvD5 reduced PD-1 expression on T cells and PD-L1 expression on cancer cells, thereby restoring T cell antitumor functions by delaying their differentiation into Tex. In vivo, RvD5 inhibited tumor growth. Notably, when combined with anti-PD-1 therapy, RvD5 enhanced tumor response rates, suggesting that shifting cancer-associated inflammation toward resolution can improve ICI efficacy. Conclusion Thus, RvD5 suppresses tumor growth by dampening inflammation and delaying T cell exhaustion within the TME. By reshaping CD8+ T cell responses, RvDs may represent a promising therapeutic strategy to strengthen antitumor immunity and overcome resistance to immunotherapy. Funding Source AIRC (MFAG 2022 — ID. 27060) Topic Categories Tumor Immunology: Cellular Responses and Tumor Microevironment (TIME)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (17)
Maria Tredicine
Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti
Simona D’Orazio
Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti
Nunzia Coletta
Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti
Anna Gaimari
Giacomo Miserocchi
IRCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) “Dino Amadori”
Federico Anaclerio
Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti
Matteo Mucci
Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti
Patricia Borges de Sousa
RCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) “Dino Amadori”
Susanna Chiocca
European Institute of Oncology
Lavinia Ghiani
European Institute of Oncology
Maja Čemažar
Živa Modic
Institute of Oncology Ljubljana
Valentina Gatta
Maria Teresa Viscomi
Massimiliano Mazza
Antonio Recchiuti
2Department of Medical, Oral, and Biotechnology Science; Center for Advanced Studies and Technology, G. d’Annunzio University of Chieti, Pescara, Italy
Domenico Mattoscio
2Department of Medical, Oral, and Biotechnology Science; Center for Advanced Studies and Technology, G. d’Annunzio University of Chieti, Pescara, Italy