A synthetic virus-like assembly unlocks dual-antigen presentation for broad-spectrum anti-SARS-CoV-2 immunity

J Jingjing Zhang F Fengyuan Zeng Y Yanmei Li Y Yixuan Wang (Dr. Li Dak Sum and Yip Yio Chin Center for Stem Cells and Regenerative Medicine, Zhejiang University School of Medicine) Z Zhenxiao Zhang C Changyong Mu C Change Liu Y Yanrui Su X Xiaowu Peng L Lin Feng D Dongxiu Gao L Lichun Wang A An Wang M Miaomiao Xing L Lihong Sun Z Zixiong Guo H Huijuan Li (Center for Medical Genetics, Hunan Key Laboratory of Medical Genetics, Ministry of Education Key Lab of Rare Pediatric Diseases, School of Life Sciences, Central South University) H Hui Zhang (The Fourth Hospital of Hebei Medical University Shijiazhuang China) X Xiaoxia Yu (Institute of Solid State Chemistry, Beijing Advanced Innovation Center for Materials Genome Engineering) B Bing Xie L Lu Liu L Liping He Z Zhixiao Zhang D Dongbao Wang F Fang Zhang (Key Laboratory of Evolution and Marine Biodiversity (Ministry of Education) and Institute of Evolution and Marine Biodiversity, Ocean University of China, Qingdao, China.) L Lichun Zheng F Fuyun He H Hongkun Yi K KaiLi Ma Q Qihan Li

Abstract

Abstract In the present study, by building on the previous development of a DC-SIGN-targeting virus-like structure (VLS) vaccine platform and a comprehensive characterization of SARS-CoV-2 structural biology, particularly insights into the role of the nucleocapsid (N) protein in eliciting cytotoxic T lymphocyte (CTL) responses during infection, we designed a SARS-CoV-2 virion-mimetic structural vaccine that encapsulates an mRNA encoding the spike S1 antigen complexed with N protein complexes, with S1 proteins loaded on its surface. This characterized virion-mimetic structural vaccine not only induces the production of high-efficiency antibodies against both the spike and N proteins but also elicits robust S1-specific and N-specific CTL responses in animal models. Furthermore, the generated antibodies exhibit cross-reactive neutralizing activity against multiple SARS-CoV-2 variants and provide protective immunity against challenge with mutant viruses in immunized hosts. This SARS-CoV-2 virion-mimetic structure effectively recapitulates natural infection pathways, comprehensively activating the innate immune system and thereby creating an optimal microenvironment for eliciting potent and broad-spectrum adaptive immune responses.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 22, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (30)

J

Jingjing Zhang

F

Fengyuan Zeng

Y

Yanmei Li

Y

Yixuan Wang

Dr. Li Dak Sum and Yip Yio Chin Center for Stem Cells and Regenerative Medicine, Zhejiang University School of Medicine

Z

Zhenxiao Zhang

C

Changyong Mu

C

Change Liu

Y

Yanrui Su

X

Xiaowu Peng

L

Lin Feng

D

Dongxiu Gao

L

Lichun Wang

A

An Wang

M

Miaomiao Xing

L

Lihong Sun

Z

Zixiong Guo

H

Huijuan Li

Center for Medical Genetics, Hunan Key Laboratory of Medical Genetics, Ministry of Education Key Lab of Rare Pediatric Diseases, School of Life Sciences, Central South University

H

Hui Zhang

The Fourth Hospital of Hebei Medical University Shijiazhuang China

X

Xiaoxia Yu

Institute of Solid State Chemistry, Beijing Advanced Innovation Center for Materials Genome Engineering

B

Bing Xie

L

Lu Liu

L

Liping He

Z

Zhixiao Zhang

D

Dongbao Wang

F

Fang Zhang

Key Laboratory of Evolution and Marine Biodiversity (Ministry of Education) and Institute of Evolution and Marine Biodiversity, Ocean University of China, Qingdao, China.

L

Lichun Zheng

F

Fuyun He

H

Hongkun Yi

K

KaiLi Ma

Q

Qihan Li