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基于 RNA 的嵌合抗原纳米颗粒组装作为一种有效的 H5N1 大流行前疫苗平台。

RNA-dependent assembly of chimeric antigen nanoparticles as an efficient H5N1 pre-pandemic vaccine platform.

机构信息

Department of Biotechnology, College of Life Sciences and Biotechnology, Yonsei University, Seoul, Republic of Korea.

Department of Integrated OMICS for Biomedical Science, College of Life Sciences and Biotechnology, Yonsei University, Seoul, Republic of Korea.

出版信息

Nanomedicine. 2021 Oct;37:102438. doi: 10.1016/j.nano.2021.102438. Epub 2021 Jul 10.

Abstract

Highly pathogenic avian influenza viruses (HPAIVs) pose a significant threat to human health, with high mortality rates, and require effective vaccines. We showed that, harnessed with novel RNA-mediated chaperone function, hemagglutinin (HA) of H5N1 HPAIV could be displayed as an immunologically relevant conformation on self-assembled chimeric nanoparticles (cNP). A tri-partite monomeric antigen was designed including: i) an RNA-interaction domain (RID) as a docking tag for RNA to enable chaperna function (chaperna: chaperone + RNA), ii) globular head domain (gd) of HA as a target antigen, and iii) ferritin as a scaffold for 24 mer-assembly. The immunization of mice with the nanoparticles (~46 nm) induced a 25-30 fold higher neutralizing capacity of the antibody and provided cross-protection from homologous and heterologous lethal challenges. This study suggests that cNP assembly is conducive to eliciting antibodies against the conserved region in HA, providing potent and broad protective efficacy.

摘要

高致病性禽流感病毒(HPAIV)对人类健康构成重大威胁,其死亡率高,需要有效的疫苗。我们表明,利用新型 RNA 介导的伴侣功能,H5N1 HPAIV 的血凝素(HA)可以作为一种具有免疫相关性的构象在自组装嵌合纳米颗粒(cNP)上展示。设计了一个三部分单体抗原,包括:i)RNA 相互作用结构域(RID)作为 RNA 的对接标记,以实现伴侣功能(伴侣:伴侣+RNA),ii)HA 的球状头部结构域(gd)作为靶抗原,iii)铁蛋白作为 24 聚体组装的支架。用纳米颗粒(~46nm)免疫小鼠,诱导抗体的中和能力提高 25-30 倍,并提供同源和异源致死性挑战的交叉保护。这项研究表明,cNP 组装有利于诱导针对 HA 保守区域的抗体,提供强大和广泛的保护效果。

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