Personalized cancer vaccines (PCVs) represent a promising frontier in cancer immunotherapy; however, challenges in neoantigen prediction and treatment optimization persist. This study aims to introduce an innovative mRNA-based PCV platform that addresses these limitations. Co-administration of our major histocompatibility complex (MHC)-I and MHC-II-restricted neoantigens increases antigen-specific T cell responses and exhibits strong anti-cancer efficacy, significantly inducing antigen-specific CD8(+) T cell-immune responses. The mRNA-based vaccine targeting the novel antigens demonstrates anti-tumor efficacy in a murine model of colorectal cancer and reduces post-surgery recurrence in mRNA-vaccinated mice. Notably, early-stage vaccination induces a striking anti-cancer effect, underscoring the critical role of MHC-II neoantigens alongside MHC-I antigen prediction in shaping effective anti-tumor immunity, in the activation of antigen-specific CD8(+) T cells. In addition, the combination of immune checkpoint inhibitors and the vaccine synergistically inhibits tumor growth by inducing robust T cell responses and promoting favorable alterations in the tumor microenvironment. Taken together, the results provide a strong rationale for the clinical investigation of rapid-turnaround co-administration of MHC-I/II-restricted neoantigens-based mRNA vaccines in colorectal cancer, as supported by the anti-tumor efficacy of early-stage application and combination immunotherapy approaches.
Rapid-Turnaround Co-Administration of mRNA-Based MHC-I and MHC-II-Restricted Neoantigens Enhances Immune Responses of Antigen-Specific CD8(+) T Cells and Anti-Cancer Efficacy in Colorectal Cancer.
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作者:Cho Seongje, Kwak Woori, Yoon Hyunho, Lee Jisun, Lee Seonghyun, Park Hyo-Jung, Jo Sohee, Lee Yu-Sun, Seo Yu-Jeong, Cho Youngran, Bae Seo-Hyeon, Yoon Subin, Roh Gahyun, Ha Dahyeon, Oh Ayoung, Choi Eun-Jin, Lee Soo-Yeon, Choi Huijeong, Kim Jungmin, Lee Yeeun, Lee Sowon, Park Sang-In, Kim Dae-Keun, Chang Jun, Kim Ki Tae, Kim Kwoneel, Nam Jae-Hwan
| 期刊: | Advanced Science | 影响因子: | 14.100 |
| 时间: | 2025 | 起止号: | 2025 Oct;12(39):e06426 |
| doi: | 10.1002/advs.202506426 | ||
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