The CD83 axis between Tregs and CCR7+ dendritic cells governs anti-tumor immune responses 2309951

R Ruparoshni Jayabalan (University of Texas MD Anderson Cancer Center UT Health Graduate School of Biomedical Sciences) R Ricardo Gonzalez-Delgado (University of Texas MD Anderson Cancer Center) L Luis Castillo Montanez (University of Texas MD Anderson Cancer Center) J Jing Pan R Raphael Kfuri-Rubens (TUM University Hospital, Technical University Munich) R Ruoxing Li J Jinsam Chang (University of Texas MD Anderson Cancer Center) F Fernanda G Kugeratski (University of Texas MD Anderson Cancer Center) S Shajedul Islam J Jose Martínez Magdaleno (University of Texas MD Anderson Cancer Center) J Jiarui Li S Sakuni Rankothgedera (University of Texas MD Anderson Cancer Center) V Valentina Zappulli V Vera Elisabeth Assmann (Universitätsklinikum Erlangen, Friedrich—Alexander Universität Erlangen—Nürnberg) T Tabitha Joyee Rozario (University of Texas MD Anderson Cancer Center) M Marini Thian (University of Texas MD Anderson Cancer Center) A Andreas B Wild (Universitätsklinikum Erlangen, Friedrich—Alexander Universität Erlangen—Nürnberg) M Marianna Trakala (University of Texas MD Anderson Cancer Center) A Alexander Steinkasserer (Universitätsklinikum Erlangen, Friedrich—Alexander Universität Erlangen—Nürnberg) Z Ziyi Li M Mauro Di Pilato

Abstract

Abstract Introduction Immune checkpoint blockade (ICB) has advanced the treatment of melanoma and other cancer types. Despite its success, only about half of the treated patients respond, with many developing resistances. One contributing factor is the poor infiltration of effector T cells in the solid tumors, along with the immunosuppression caused by regulatory T (Treg) cells. CCR7+ dendritic cells (DC) interact with T cells, by either supporting the survival of CD8 T cells or promoting the migration of Tregs. While they are known to play a role in mediating tumor immune responses, their specific functions in controlling tumors and T cell responses remain poorly understood. Methods We generated innovative mouse models such as the inducible CCR7+DC conditional knock out (cKO), to defined how CCR7+DC use CD83 to restrain CD8 T cell effector responses and promote tumor growth. Results Reducing the expression of the activation maker CD83 on CCR7+DC, either directly or via blocking its soluble form expressed by Tregs, enhanced intratumoral CD8 T cell accumulation and controlled tumor growth in mice. Genetic perturbation of CD83 retains a pro-inflammatory IL-12+ CCR7+DC state, which is associated with the expansion of effector-like CD8 T cells and improved tumor control. Mechanistically, Tregs regulate IL-12 expression on CCR7+DC via STAT signaling in a CD83 dependent manner in vitro. Furthermore, we also show that CD83 levels on CCR7+DC negatively correlate with intratumoral CD8 T cell infiltration in several human cancers. Conclusion This study demonstrates that the ablation of interaction of CD83 molecule between CCR7+DC and Tregs results in increased anti-tumor immune response. Our findings identify CD83 as a cellular and molecular checkpoint that restrains T cell responses and can be targeted therapeutically. Funding Source This work was supported by funding for M.D.P from Cancer Prevention and Research Institute of Texas (CPRIT; RR210017) Robert J. Kleberg, Jr. and Helen C. Foundation Melanoma SPORE Developmental Research Program (DRP; P50CA221703) American Association of I 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 (21)

R

Ruparoshni Jayabalan

University of Texas MD Anderson Cancer Center UT Health Graduate School of Biomedical Sciences

R

Ricardo Gonzalez-Delgado

University of Texas MD Anderson Cancer Center

L

Luis Castillo Montanez

University of Texas MD Anderson Cancer Center

J

Jing Pan

R

Raphael Kfuri-Rubens

TUM University Hospital, Technical University Munich

R

Ruoxing Li

J

Jinsam Chang

University of Texas MD Anderson Cancer Center

F

Fernanda G Kugeratski

University of Texas MD Anderson Cancer Center

S

Shajedul Islam

J

Jose Martínez Magdaleno

University of Texas MD Anderson Cancer Center

J

Jiarui Li

S

Sakuni Rankothgedera

University of Texas MD Anderson Cancer Center

V

Valentina Zappulli

V

Vera Elisabeth Assmann

Universitätsklinikum Erlangen, Friedrich—Alexander Universität Erlangen—Nürnberg

T

Tabitha Joyee Rozario

University of Texas MD Anderson Cancer Center

M

Marini Thian

University of Texas MD Anderson Cancer Center

A

Andreas B Wild

Universitätsklinikum Erlangen, Friedrich—Alexander Universität Erlangen—Nürnberg

M

Marianna Trakala

University of Texas MD Anderson Cancer Center

A

Alexander Steinkasserer

Universitätsklinikum Erlangen, Friedrich—Alexander Universität Erlangen—Nürnberg

Z

Ziyi Li

M

Mauro Di Pilato