A Synergistic Lipid Nanoparticle Encapsulating mRNA Shingles Vaccine Induces Potent Immune Responses and Protects Guinea Pigs from Viral Challenges

Author:

Cheng Xingdi12,Liu Sujia3,Sun Jing4,Liu Lin3,Ma Xinghuan3,Li Jingjiao12,Fan Bangda3,Yang Chen12,Zhao Yuanyuan12,Liu Shuai1,Wen Yixing12,Li Wei12,Sun Simin1,Mi Shiwei12,Huo Haonan12,Miao Lei5,Pan Hao6,Cui Xiaolan4,Lin Jiaqi3,Lu Xueguang12ORCID

Affiliation:

1. Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Colloid Interface and Chemical Thermodynamics Institute of Chemistry Chinese Academy of Sciences Beijing 100190 China

2. University of Chinese Academy of Sciences Beijing 100049 China

3. MOE Key Laboratory of Bio‐Intelligent Manufacturing School of Bioengineering Dalian University of Technology Dalian 116024 China

4. Institute of Chinese Materia Medica China Academy of Chinese Medical Sciences Beijing 100029 China

5. State Key Laboratory of Natural and Biomimetic Drugs School of Pharmaceutical Sciences Peking University Beijing 100191 China

6. Proxybio Therapeutics Co., Ltd. Shenzhen 518001 China

Abstract

AbstractShingles is caused by the reactivation of varicella zoster virus (VZV) and manifests as painful skin rashes. While the recombinant protein‐based vaccine proves highly effective, it encounters supply chain challenges due to a shortage of the necessary adjuvant. Messenger RNA (mRNA)‐based vaccines can be rapidly produced on a large scale, but their effectiveness relies on efficient delivery and sequence design. Here, an mRNA‐based VZV vaccine using a synergistic lipid nanoparticle (Syn‐LNP) containing two different ionizable lipids is developed. Syn‐LNP shows superior mRNA expression compared to LNPs formulated with either type of ionizable lipid and to a commercialized LNP. After encapsulating VZV glycoprotein E (gE)‐encoding mRNA, mgE@Syn‐LNP induces robust humoral and cellular immune responses in two strains of mice. The magnitude of these responses is similar to that induced by adjuvanted recombinant gE proteins and significantly higher than that observed with live‐attenuated VZV. mgE@Syn‐LNP exhibits durable humoral responses for over 7 months without obvious adverse effects. In addition, mgE@Syn‐LNP protects vaccinated guinea pigs against live VZV challenges. Preliminary studies on the mRNA antigen design reveal that the removal of glycosylation sites of gE greatly reduces its immune responses. Collectively, Syn‐LNP encapsulating gE‐encoded mRNA holds great promise as a shingles vaccine.

Funder

Institute of Chemistry, Chinese Academy of Sciences

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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