Stimulating the resolution of inflammation overcomes CD8+ T cell exhaustion and boosts immunotherapy 2255409

M Maria Tredicine (Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti) S Simona D’Orazio (Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti) N Nunzia Coletta (Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti) A Anna Gaimari G Giacomo Miserocchi (IRCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) “Dino Amadori”) F Federico Anaclerio (Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti) M Matteo Mucci (Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti) P Patricia Borges de Sousa (RCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) “Dino Amadori”) S Susanna Chiocca (European Institute of Oncology) L Lavinia Ghiani (European Institute of Oncology) M Maja Čemažar Živa Modic (Institute of Oncology Ljubljana) V Valentina Gatta M Maria Teresa Viscomi M Massimiliano Mazza A Antonio Recchiuti (2Department of Medical, Oral, and Biotechnology Science; Center for Advanced Studies and Technology, G. d’Annunzio University of Chieti, Pescara, Italy) D Domenico Mattoscio (2Department of Medical, Oral, and Biotechnology Science; Center for Advanced Studies and Technology, G. d’Annunzio University of Chieti, Pescara, Italy)

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

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (17)

M

Maria Tredicine

Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti

S

Simona D’Orazio

Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti

N

Nunzia Coletta

Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti

A

Anna Gaimari

G

Giacomo Miserocchi

IRCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) “Dino Amadori”

F

Federico Anaclerio

Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti

M

Matteo Mucci

Center for Advanced Studies and Technologies (CAST), “G. d’Annunzio” University of Chieti

P

Patricia Borges de Sousa

RCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) “Dino Amadori”

S

Susanna Chiocca

European Institute of Oncology

L

Lavinia Ghiani

European Institute of Oncology

M

Maja Čemažar

Živa Modic

Institute of Oncology Ljubljana

V

Valentina Gatta

M

Maria Teresa Viscomi

M

Massimiliano Mazza

A

Antonio Recchiuti

2Department of Medical, Oral, and Biotechnology Science; Center for Advanced Studies and Technology, G. d’Annunzio University of Chieti, Pescara, Italy

D

Domenico Mattoscio

2Department of Medical, Oral, and Biotechnology Science; Center for Advanced Studies and Technology, G. d’Annunzio University of Chieti, Pescara, Italy