Immunogenic cell death unlocks the potential for combined radiation and immunotherapy

S Somiya Rauf (Department of Mathematics and Statistics) A Alexandra Smirnova (Department of Mathematics and Statistics) A Andres Chang (Department of Hematology and Medical Oncology) Y Yuan Liu Y Yi Jiang

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

Volume / Issue Vol. 122, Issue 48
Published December 02, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

S

Somiya Rauf

Department of Mathematics and Statistics

A

Alexandra Smirnova

Department of Mathematics and Statistics

A

Andres Chang

Department of Hematology and Medical Oncology

Y

Yuan Liu

Y

Yi Jiang