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In situ generation of micrometer-sized tumor cell-derived vesicles as autologous cancer vaccines for boosting systemic immune responses

Yuxin Guo, Shao-Zhe Wang, Xinping Zhang, Hao‐Ran Jia, Ya‐Xuan Zhu, Xiaodong Zhang, Ge Gao, Yao‐Wen Jiang, Chengcheng Li, Xiaokai Chen, Shun‐Yu Wu, Yi Liu, Fu‐Gen Wu

2022Nature Communications111 citationsDOIOpen Access PDF

Abstract

Cancer vaccine, which can promote tumor-specific immunostimulation, is one of the most important immunotherapeutic strategies and holds tremendous potential for cancer treatment/prevention. Here, we prepare a series of nanoparticles composed of doxorubicin- and tyrosine kinase inhibitor-loaded and hyaluronic acid-coated dendritic polymers (termed HDDT nanoparticles) and find that the HDDT nanoparticles can convert various cancer cells to micrometer-sized vesicles (1.6-3.2 μm; termed HMVs) with ~100% cell-to-HMV conversion efficiency. We confirm in two tumor-bearing mouse models that the nanoparticles can restrain tumor growth, induce robust immunogenic cell death, and convert the primary tumor into an antigen depot by producing HMVs in situ to serve as personalized vaccines for cancer immunotherapy. Furthermore, the HDDT-healed mice show a strong immune memory effect and the HDDT treatment can realize long-term protection against tumor rechallenge. Collectively, the present work provides a general strategy for the preparation of tumor-associated antigen-containing vesicles and the development of personalized cancer vaccines.

Topics & Concepts

Cancer immunotherapyImmune systemCancer researchImmunotherapyCancer vaccineCancerCancer cellAntigenNanotechnologyImmunologyMedicineMaterials scienceInternal medicineNanoplatforms for cancer theranosticsImmunotherapy and Immune ResponsesExtracellular vesicles in disease
In situ generation of micrometer-sized tumor cell-derived vesicles as autologous cancer vaccines for boosting systemic immune responses | Litcius