Wang Yunfei, Cao Han, Lin Kangyang, Hu Jingping, Luan Ning, Liu Cunbao
Institute of Medical Biology, Chinese Academy of Medical Sciences and Peking Union Medical College, Kunming 650118, China.
Vaccines (Basel). 2023 Sep 11;11(9):1475. doi: 10.3390/vaccines11091475.
Cell-mediated immunity (CMI) plays a key role in the effectiveness of varicella zoster virus (VZV) vaccines, and mRNA vaccines have an innate advantage in inducing CMI. Glycoprotein E (gE) has been used widely as an antigen for VZV vaccines, and carboxyl-terminal mutations of gE are associated with VZV titer and infectivity. In addition, the untranslated regions (UTRs) of mRNA affect the stability and half-life of mRNA in the cell and are crucial for protein expression and antigenic translational efficiency. In this study, three UTRs were designed and connected to the nucleic acid sequence of gE-M, which is double mutated in the extracellular region of gE. Then, mRNA with different nucleic acids was encapsulated in lipid nanoparticles (LNPs), forming three LNP-mRNA VZV vaccines, named gE-M-Z, gE-M-M, and gE-M-P. The immune response elicited by these vaccines in mice was evaluated at intervals of 4 weeks, and the mice were sacrificed 2 weeks after the final immunization. In the results, the gE-M-P group, which retains the nucleic acid sequence of gE-M and is connected to Pfizer/BioNTech's BNT162b2 UTRs, induced the strongest humoral immune response and CMI. Because CMI is crucial for protection against VZV and for the design of VZV vaccines, this study provides a feasible strategy for improving the effectiveness and economy of future VZV vaccines.
细胞介导的免疫(CMI)在水痘带状疱疹病毒(VZV)疫苗的有效性中起关键作用,而mRNA疫苗在诱导CMI方面具有先天优势。糖蛋白E(gE)已被广泛用作VZV疫苗的抗原,gE的羧基末端突变与VZV滴度和感染性相关。此外,mRNA的非翻译区(UTR)影响mRNA在细胞中的稳定性和半衰期,对蛋白质表达和抗原翻译效率至关重要。在本研究中,设计了三个UTR并连接到gE-M的核酸序列上,gE-M在gE的细胞外区域发生了双突变。然后,将具有不同核酸的mRNA封装在脂质纳米颗粒(LNP)中,形成三种LNP-mRNA VZV疫苗,分别命名为gE-M-Z、gE-M-M和gE-M-P。每隔4周评估这些疫苗在小鼠体内引发的免疫反应,并在最后一次免疫后2周处死小鼠。结果显示,保留gE-M核酸序列并连接辉瑞/ BioNTech的BNT162b2 UTR的gE-M-P组诱导了最强的体液免疫反应和CMI。由于CMI对于预防VZV和VZV疫苗的设计至关重要,本研究为提高未来VZV疫苗的有效性和经济性提供了一种可行的策略。