IFN-γ-driven iNOS induction in macrophages mediates CAR T cell resistance in B cell lymphoma
Abstract
Chimeric antigen receptor (CAR) T cell therapies have revolutionized B cell malignancy treatment, but many patients with large B cell lymphoma (LBCL) experience primary resistance or relapse. To uncover resistance mechanisms, here we examine pre-infusion tumor biopsies and observe that increased immunoregulatory macrophages correlate with poor clinical responses. In murine models, CAR T cell-produced interferon-gamma (IFN-γ) upregulates inducible nitric oxide synthase (iNOS, NOS2) in immunoregulatory macrophages, impairing CAR T cell function. Proteomic profiling reveals that iNOS-expressing macrophages promote apoptosis and cell cycle arrest while downregulating protein synthesis machinery in CAR T cells. Metabolically, CAR T cells exhibit reduced glycolytic intermediates and altered tricarboxylic acid (TCA) cycle activity. Pharmacological inhibition of iNOS enhances CAR T cell treatment efficacy in vivo. Elevated levels of iNOS+CD14+ monocytes in leukaphereses are associated with non-durable responses to CAR T cells. Targeting iNOS in immunoregulatory macrophages, potentially by modulating CAR T-produced IFN-γ, could improve LBCL outcomes. Tumor associated macrophages can support cancer progression by suppressing T cell effector functions. Here the authors report that induction of iNOS in tumor-associated macrophages by IFN-gamma secreted from CAR T cells contributes to the development of CAR-T resistance in B cell lymphoma.