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A vaccine-based nanosystem for initiating innate immunity and improving tumor immunotherapy

Author

Listed:
  • Di-Wei Zheng

    (Wuhan University)

  • Fan Gao

    (Wuhan University)

  • Qian Cheng

    (Wuhan University)

  • Peng Bao

    (Wuhan University)

  • Xue Dong

    (Wuhan University)

  • Jin-Xuan Fan

    (Wuhan University)

  • Wen Song

    (Wuhan University)

  • Xuan Zeng

    (Wuhan University)

  • Si-Xue Cheng

    (Wuhan University)

  • Xian-Zheng Zhang

    (Wuhan University)

Abstract

The unsatisfactory response rate of immune checkpoint blockade (ICB) immunotherapy severely limits its clinical application as a tumor therapy. Here, we generate a vaccine-based nanosystem by integrating siRNA for Cd274 into the commercial human papillomavirus (HPV) L1 (HPV16 L1) protein. This nanosystem has good biosafety and enhances the therapeutic response rate of anti-tumor immunotherapy. The HPV16 L1 protein activates innate immunity through the type I interferon pathway and exhibits an efficient anti-cancer effect when cooperating with ICB therapy. For both resectable and unresectable breast tumors, the nanosystem decreases 71% tumor recurrence and extends progression-free survival by 67%. Most importantly, the nanosystem successfully induces high response rates in various genetically modified breast cancer models with different antigen loads. The strong immune stimulation elicited by this vaccine-based nanosystem might constitute an approach to significantly improve current ICB immunotherapy.

Suggested Citation

  • Di-Wei Zheng & Fan Gao & Qian Cheng & Peng Bao & Xue Dong & Jin-Xuan Fan & Wen Song & Xuan Zeng & Si-Xue Cheng & Xian-Zheng Zhang, 2020. "A vaccine-based nanosystem for initiating innate immunity and improving tumor immunotherapy," Nature Communications, Nature, vol. 11(1), pages 1-15, December.
  • Handle: RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-15927-0
    DOI: 10.1038/s41467-020-15927-0
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