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Virus-like structures for combination antigen protein mRNA vaccination

  • Jingjing Zhang,
  • Yanmei Li,
  • Fengyuan Zeng,
  • Changyong Mu,
  • Change Liu,
  • Lichun Wang,
  • Xiaowu Peng,
  • Liping He,
  • Yanrui Su,
  • Hongbing Li,
  • An Wang,
  • Lin Feng,
  • Dongxiu Gao,
  • Zhixiao Zhang,
  • Gang Xu,
  • Yixuan Wang,
  • Rong Yue,
  • Junbo Si,
  • Lichun Zheng,
  • Xiong Zhang,
  • Fuyun He,
  • Hongkun Yi,
  • Zhongshu Tang,
  • Gaocan Li,
  • Kaili Ma,
  • Qihan Li

摘要

Improved vaccination requires better delivery of antigens and activation of the natural immune response. Here we report a lipid nanoparticle system with the capacity to carry antigens, including mRNA and proteins, which is formed into a virus-like structure by surface decoration with spike proteins, demonstrating application against SARS-CoV-2 variants. The strategy uses S1 protein from Omicron BA.1 on the surface to deliver mRNA of S1 protein from XBB.1. The virus-like particle enables specific augmentation of mRNAs expressed in human respiratory epithelial cells and macrophages via the interaction the surface S1 protein with ACE2 or DC-SIGN receptors. Activation of macrophages and dendritic cells is demonstrated by the same receptor binding. The combination of protein and mRNA increases the antibody response in BALB/c mice compared with mRNA and protein vaccines alone. Our exploration of the mechanism of this robust immunity suggests it might involve cross-presentation to diverse subsets of dendritic cells ranging from activated innate immune signals to adaptive immune signals.