免疫原性
免疫系统
矿化(土壤科学)
类病毒颗粒
病毒学
甲型流感病毒
化学
微生物学
病毒复制
锰
病毒
生物
免疫学
生物化学
重组DNA
基因
生态学
土壤水分
有机化学
作者
Pan‐Deng Shi,Yan‐Peng Xu,Zhu Zhu,Chao Zhou,Mei Wu,Yangzhige He,Hui Zhao,Liying Liu,Linqing Zhao,Xiaofeng Li,Cheng‐Feng Qin
标识
DOI:10.1002/advs.202303615
摘要
Biomimetic viral mineralization improves viral vaccine stability and immunogenicity using inorganic metals such as Ca, Al, or Fe. Mn is a metal found in high concentrations in mammalian tissues; however, under natural or laboratory conditions, Mn mineralization by medical viruses has yet to be established. Herein, a single IAV particle is successfully encapsulated with manganese phosphate (MnP) under specific conditions using the human influenza A virus (IAV). MnP-mineralized IAVs (IAV@Mn) exhibited physiochemical and in vitro properties similar to Ca-mineralized IAVs. In animal models, IAV@Mn shows limited replication in immune-competent cells and a significant attenuation compared to naïve cells. Moreover, a single-dose vaccination with IAV@Mn induced robust humoral and cellular immune responses and conferred significant protection against a wild-type IAV challenge in mice. Thus, Mn mineralization in pathogenic viruses provides a rapid and universal strategy for generating an emergency vaccine in response to emerging viruses.
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