Immunogenic cell death unlocks the potential for combined radiation and immunotherapy
Abstract
Immunogenic cell death (ICD) enhances antitumor immunity by releasing tumor-associated antigens and activating the antitumor immune system response. Here, we develop a mathematical model to quantify the role of ICD in optimizing the efficacy of combined radiotherapy (RT) and macrophage-based immunotherapy. Using preclinical murine data targeting the SIRP α -CD47 checkpoint, we show that RT alone induces minimal ICD, whereas disrupting the SIRP α -CD47 axis significantly enhances both phagocytosis and systemic immune activation. Our model predicts an optimal RT dose (6 to 8 Gy) for maximizing ICD, a dose-dependent abscopal effect, and a hierarchy of treatment efficacy, with SIRP α -knockout macrophages exhibiting the strongest tumoricidal activity. These findings provide a quantitative framework for designing more effective combination therapies, leveraging ICD to enhance immune checkpoint inhibition and radiotherapy synergy.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (5)
Somiya Rauf
Department of Mathematics and Statistics
Alexandra Smirnova
Department of Mathematics and Statistics
Andres Chang
Department of Hematology and Medical Oncology
Yuan Liu
Yi Jiang