病毒学
免疫系统
铁蛋白
免疫
病毒
接种疫苗
减毒疫苗
佐剂
生物
免疫学
基因
生物化学
毒力
作者
S Z Chen,Xinghai Zhang,Yanfeng Yao,Xia Chuai,Kangyin Li,Baoyue Zhang,Tianxi Ye,Yan Wu,Yong Ran,Li Chen,Shengdong Wang,Weiqi Wang,Rui Gong,Huajun Zhang,Sandra Chiu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-06-02
卷期号:19 (23): 21319-21332
被引量:1
标识
DOI:10.1021/acsnano.4c17906
摘要
Nipah virus (NiV) is a serious hazard to human health since it can cause severe respiratory infections and viral encephalitis with a high fatality rate. Given the lack of a licensed NiV vaccine, there is an urgent need to develop one to protect public health. Previously, we developed NiV G protein nanoparticle vaccines by loading G protein onto ferritin nanoparticles (FeNP) via SpyCatcher/SpyTag technology, resulting in nanoparticles with three layers (FeNP-SC/ST-Ghead), including the inner core of ferritin (20 kDa), the intermediate layer of covalently linked SpyCatcher/SpyTag (11.2 kDa) and the outer layer of G protein. The intermediate layer is unnecessary in terms of immunization and occupies immune resources in the body. In this study, we used a split-intein to conjugate NiV Ghead onto FeNP, yielding FeNP-Ghead with two layers. In BALB/c mice, FeNP-Ghead could avoid immune response against SpyCatcher, elicit high levels of specific humoral immune responses for up to 217 days and long-lasting Th1-biased cellular immune responses. Furthermore, FeNP-Ghead showed potent protection efficacy in the hamster model, with immunization of 1 μg providing 100% protection against challenge with 1000 LD50 of NiV, and even as low as 0.2 μg being partially protective (83% survival). Since FeNP-Ghead has a lower protein content than FeNP-SC/ST-Ghead, it will occupy fewer immune resources in vivo, thereby reduce the potential for adverse immune side effect.
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