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Quiescent tumor cells shape the immunosuppressive microenvironment in pancreatic cancer

Jul 2026 · Nature Communications · Vol 17 · 0 citations · 66 references
Medicine

Abstract

Immunotherapy, including chimeric antigen receptor (CAR) T-cell therapy, has limited activity in pancreatic ductal adenocarcinoma (PDAC). Using orthotopic PDAC mouse models, we identified a rare population of quiescent PDAC cells that increases after CAR-T cell therapy and exhibits relatively higher clonogenic growth and self-renewal potential than bulk tumor cells. These quiescent cells express high levels of Epiregulin (EREG), a secreted ligand for EGFR and ErbB4, and induce an immunosuppressive tumor microenvironment by increasing the frequency of ErbB4-expressing tumor-associated macrophages. Using complementary genetic and pharmacologic approaches, we demonstrate that targeting EREG enhances the sensitivity of quiescent tumor cells and PDAC tumors to CAR T-cell therapy, resulting in reduced relapse and improved overall survival. These findings support a model in which rare quiescent tumor cells contribute to remodeling of the PDAC tumor microenvironment through EREG-associated signaling and suggest that EREG inhibition may enhance the efficacy of adoptive cellular immunotherapy in this disease. CAR T cell therapy remains largely ineffective in solid tumors, where quiescent cancer cells contribute to treatment resistance. Here, the authors identify a population of quiescent pancreatic cancer cells that upregulate epiregulin (EREG) and mediate immunosuppression upon CAR T treatment.

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