Background: Anti-PD-1 monoclonal antibody (mAb) therapy promotes the emergence of new T cell clonotypes within tumors, suggesting de novo priming in the periphery. Yet, the mechanisms that mobilize these additional T cells remain poorly defined.
Methods: We investigated the impact of anti-PD-1 mAbs on circulating T cell dynamics and their recruitment into tumor-draining lymph nodes (TDLNs) using multiple transgenic mouse models, including FcγR-deficient and type I interferon receptor-deficient mice. To dissect the role of FcγR engagement, we compared an Fc-silent anti-PD-1 LALAPG variant alongside conventional anti-PD-1 antibodies, and further extended our study to an additional immune checkpoint inhibitor for comparison. These approaches were complemented by experiments in FcγR-humanized mice using a human IgG4 anti-PD-1 mAb. In parallel, the effects of the therapeutic IgG4 antibody nivolumab were evaluated in human cell-based assays using dynamic imaging.
Results: Here, we demonstrate that anti-PD-1 mAbs promote the recruitment of circulating T cells into TDLNs, resulting in an expanded anti-tumor T cell response. This influx was part of a general reactive lymphadenopathy that required FcγR engagement and type I IFN production, leading to a burst of chemokine release. These results were extended to FcgR-humanized mice treated with a human IgG4 variant of the anti-PD-1 mAb and were similarly observed with another immune checkpoint inhibitor, anti-TIM-3, broadening this mechanism as a major one during checkpoint blockade in the LN.
Conclusions: Our results reveal a previously unrecognized role for low to moderate FcγR engagement in TDLNs, which amplifies the anti-tumor T-cell response elicited during anti-PD-1 therapy.
Keywords: Clonality; Immune Checkpoint Inhibitor; Monoclonal antibody; Solid tumor; T cell.
© Author(s) (or their employer(s)) 2026. Re-use permitted under CC BY. Published by BMJ Group.