鼻腔给药
粘膜免疫
病毒学
免疫
免疫学
呼吸系统
抗体
蛋白质亚单位
医学
生物
免疫系统
基因
遗传学
内科学
作者
Aina Karen Anthi,Anette Kolderup,Eline Benno Vaage,Malin Bern,Sopisa Benjakul,Elias Tjärnhage,Fulgencio Ruso‐Julve,Kirk D.C. Jensen,Heidrun Elisabeth Lode,Marina Vaysburd,Jeannette Nilsen,Marie Leangen Herigstad,Siri Aastedatter Sakya,Lisa Tietze,Diego Pilati,Mari Nyquist-Andersen,Mirjam Dürkoop,Torleif Tollefsrud Gjølberg,Linghang Peng,Stian Foss
标识
DOI:10.1038/s41467-025-59353-6
摘要
Abstract Although vaccines are usually given intramuscularly, the intranasal delivery route may lead to better mucosal protection and limit the spread of respiratory virus while easing administration and improving vaccine acceptance. The challenge, however, is to achieve delivery across the selective epithelial cell barrier. Here we report on a subunit vaccine platform, in which the antigen is genetically fused to albumin to facilitate FcRn-mediated transport across the mucosal barrier in the presence of adjuvant. Intranasal delivery in conventional and transgenic mouse models induces both systemic and mucosal antigen-specific antibody responses that protect against challenge with SARS-CoV-2 or influenza A. When benchmarked against an intramuscularly administered mRNA vaccine or an intranasally administered antigen fused to an alternative carrier of similar size, only the albumin-based intranasal vaccine yields robust mucosal IgA antibody responses. Our results thus suggest that this needle-free, albumin-based vaccine platform may be suited for vaccination against respiratory pathogens.
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