Heterologous prime-boost with an mRNA vaccine and an oncolytic virus enhances tumor regression through overcoming intratumoral immune suppression
作者:Kuan Zhang, Dong Zuo, Zhenglong Wang, Jun Ding, Jiang Xu, Yin Liu, Yu Zhong, William Jia · 发表于:Cell Reports · 年份:2025 · DOI:10.1016/j.celrep.2025.115745 · 被引用次数:8 · 研究领域:Virus-based gene therapy research、Cancer Research and Treatments、CAR-T cell therapy research
Therapeutic mRNA vaccines are limited in inducing tumor shrinkage in advanced cancers due to their inability to overcome immune-suppressive mechanisms within tumors. In this study, we developed an HPV-immunogen-expressing oncolytic virus (OV) using HSV-1 for HPV-related cancer treatment. A mouse syngeneic tumor model evaluates the effectiveness of intratumoral OV application for E6 + E7 + tumors. Comparative analysis of OV and mRNA vaccines reveals distinct mechanisms in tumor treatment. Single-cell RNA sequencing and flow cytometry show that OV enhances cytotoxic T cell infiltration, polarizes neutrophils and macrophages toward anti-tumor phenotypes, and promotes immune activation within the tumor. In contrast, the mRNA vaccine more effectively activates peripheral antigen-specific T cell responses. A heterologous prime-boost strategy using the mRNA vaccine to prime systemic T cells, followed by OV therapy to direct these cells into the tumor, leads to significant tumor regression. This combination optimizes both systemic and intratumoral immune responses for advanced HPV-related cancers.