Monitoring systemic immune responses to checkpoint inhibition in breast cancer reveals host responses and mechanisms of resistance
作者:Ann Hanna, Xiaopeng Sun, Quanhu Sheng, Paula I. González-Ericsson, Elizabeth C. Wescott, Brandie C. Taylor, James R. Marshall, Susan R. Opalenik, Abigail Toren, Violeta Sánchez, Carly M. Fielder, Melinda E. Sanders, Justin M. Balko · 发表于:Journal for ImmunoTherapy of Cancer · 年份:2025 · DOI:10.1136/jitc-2025-012606 · 被引用次数:3 · 研究领域:Cancer Immunotherapy and Biomarkers、Immunotherapy and Immune Responses、Immune cells in cancer
BACKGROUND: Immune checkpoint inhibitors (ICI) have improved survival in various cancers, but their success in breast cancer, specifically triple-negative breast cancer, remains limited, benefiting less than 10% of patients. METHODS: We modeled ICI response in vivo to unravel the mechanisms underlying immunotherapy efficacy, identify mechanisms of resistance in non-responsive tumors, and ascertain the therapeutic benefits of different chemotherapeutic combinations with ICI in breast cancer. We investigated the impact of ICI as monotherapy and in combination with other therapeutics in mouse models of mammary cancer, which we found robustly suppressed primary tumor growth and extended survival. RESULTS: Interestingly, even within a single model, responses to ICI were highly variable. Resistance was not reliably retained by transplantation into syngeneic hosts, suggesting a role for systemic host immunity rather than tumor-autonomous mechanisms. Transcriptomic analysis of the primary tumor landscape by fine-needle aspiration revealed that upregulated cytotoxic T-cell response and inflammatory interferon signaling (both at baseline and post anti-programmed death-ligand 1 administration) corresponded to favorable response to ICI. Longitudinal analysis of the peripheral blood uncovered enhanced myeloid cell recruitment in resistant mice, prior to therapy initiation. Similar effects were observed through longitudinal assessment of peripheral blood in patients with ICI-treated human ...