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Metastasis enables immunogenicity through migrasome-mediated antigen release

Dong Jiang, Jinzhao He, Renxiang Xie, Minghui Shi, Siyuan Liu, Haohao Jia, Bingjie Yang, Xiaojie Ruan, Xiaoyu Tao, Yuhan Xiang, Yining Chen, Lin Jiao, Xiaoyu Feng, Li Yu

Peer-reviewed journal

In the authors' words

Antigen release is a critical step in initiating antitumor immune responses, yet its regulation during metastasis is not well understood. Here we show that circulating tumor cells undergoing vascular migration produce migrasomes that serve as a metastasis-specific mechanism of antigen release. These migrasomes are enriched in tumor-associated antigens, including cancer-testis and mutated antigens, and are captured efficiently by antigen-presenting cells in secondary lymphoid organs, where they undergo cross-presentation to elicit CD8+ T cell-mediated immune responses that constrain metastatic progression. Genetic inhibition of migrasome formation enhances metastasis, while administration of purified cancer-derived migrasomes restores immune-mediated suppression of metastatic growth. These findings show paradoxically that metastasis can enhance tumor immunogenicity through migrasome-mediated antigen release, highlighting a link between cancer dissemination and immune activation and establishing migrasomes as a distinct and potent platform for endogenous tumor antigen delivery. Here the authors show that circulating tumor cells shed migrasomes that carry tumor antigens, which in turn can activate CD8+ T cells through cross-presentation to restrict metastasis.

Main resultThe abstract does not state a limitation.

Appeared: Thursday, September 24. Nature Immunology. Peer-reviewed journal.

DOI: 10.1038/s41590-026-02641-0