Platinum chemotherapy and oncolytic virotherapy as used to cooperatively sustain stem-like CD8⁺ T-cell immunity via type I interferon modulation.
Abstract
e14545 Background: Durable antitumor immunity depends on the maintenance of stem-like CD8⁺ T cells capable of sustaining long-term effector responses. Oncolytic viruses (OVs) are potent immunomodulatory agents that reshape the tumor microenvironment and augment antitumor immunity. We hypothesized that platinum-based chemotherapy alters tumor-intrinsic type I interferon (IFN-I) signaling in a manner that can be functionally restored by OV therapy, thereby promoting the generation and persistence of stem-like CD8⁺ T cells. Methods: Tumor cells treated with platinum chemotherapy were evaluated in vitro for changes in IFN-I pathway activity, OV replication, and markers of immunogenic cell death (ICD). Syngeneic mouse tumor models were used to assess antitumor efficacy and immune remodeling following combination therapy. Tumor-infiltrating lymphocytes were analyzed by single-cell RNA sequencing and multiparameter flow cytometry to define CD8⁺ T-cell states and functional programs. Guided by these preclinical findings, a clinical trial combining XELOX, PD-1 blockade, and OV therapy was initiated (ChiCTR2500107607). Results: Platinum chemotherapy significantly suppressed tumor-intrinsic IFN-I signaling, while OV therapy restored antiviral responses, enhanced viral replication, and increased ICD in vitro. In vivo, the combination strategy resulted in superior tumor control and profound remodeling of the tumor immune microenvironment. The most pronounced immunologic effect was observed within the stem-like CD8⁺ T-cell compartment. Combination therapy induced a distinct population of TCF7⁺ ISG15^high NFATC1^low AP-1^low CD8⁺ T cells, characterized by restrained activation, enhanced persistence, and reduced propensity toward terminal exhaustion. In IRF7-deficient tumors, this stem-like CD8⁺ T-cell population failed to emerge and antitumor efficacy was significantly diminished, indicating that moderate tumor-intrinsic IFN-I signaling is required for this immune state. Conclusions: Tumor-intrinsic type I interferon signaling is a critical determinant of synergy between platinum chemotherapy and oncolytic virotherapy, enabling the maintenance of durable stem-like CD8⁺ T-cell immunity. These findings establish a mechanistic rationale for combining platinum chemotherapy, oncolytic viruses, and immune checkpoint blockade and support ongoing clinical translation. Clinical trial information: ChiCTR2500107607.
Article Details
Journal Info
Journal of Clinical Oncology
Lippincott Williams & Wilkins
Authors (20)
Vivienne Yang
Department of Radiation Oncology, Mayo Clinic Florida, Jacksonville, FL
Zhongyi Dong
Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China
Tao Liu
Qisen Guo
Shanghai Cancer Institute, Shanghai, China
Haoyu Zhang
Bo Ni
Long Bai
Yiwen Chen
Jiasheng Zong
Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China
Xiang Xia
Ningbo Institute of Dalian University of Technology
Jiaojiao Zheng
State Key Laboratory of Systems Medicine for Cancer, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiao Tong University School of Medicine
Hoang Tran Pham
Department of Internal Medicine, Trinity Health Ann Arbor Hospital, Ann Arbor, Michigan, United States
Joseph Brandon Parker
Department of Internal Medicine, Mayo Clinic Florida, Jacksonville, FL
Renee Morecroft
HCA FL Orange Park Hospital, Orange Park, FL
Aya Elalfy
Mayo Clinic, Jacksonville, Florida, United States
Demarcus Ingram
Department of Internal Medicine, Mayo Clinic Florida, Jacksonville, FL
Ahmed Abdel-Hakeem
Department of Hematology & Oncology, Mayo Clinic Florida, Jacksonville, FL
Libardo Rueda Prada
Department of Internal Medicine, Mayo Clinic Florida, Jacksonville, FL
Muhammad Ali
Zizhen Zhang