免疫系统
免疫学
卵清蛋白
粘液
鼻腔给药
生物
抗原
病毒
霍乱毒素
病毒学
免疫
跨细胞
呼吸系统
微生物学
微熔池
粘膜免疫学
粘膜免疫
抗体
甲型流感病毒
免疫球蛋白A
淋巴系统
CCL19型
抗体效价
医学
呼吸道
呼吸上皮
炎症
体液免疫
趋化因子
获得性免疫系统
佐剂
作者
ZY Zhang,Haolin Chen,Beibei Xu,Zeyu Yang,Liyan Li,Zhan Gao,Bo Yang,Xuanli Jin,Hong Liu,Longlong Si,Kai Deng,Lixin Liu,Yongming Chen
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-03-13
卷期号:20 (11): 9237-9249
被引量:1
标识
DOI:10.1021/acsnano.5c19489
摘要
Eliciting mucosal immunity is crucial for protecting against respiratory pathogen infections. However, the intricate structure of mucosal tissues and their immune tolerance environment pose great challenges for the development of mucosal vaccines. To avoid being expelled by the ciliary clearance system, mucosal adhesion materials, such as chitosan, have been applied to efficiently deliver antigens to the immune system. However, the antigen showed poor mucus penetration due to chitosan’s strong adhesion to mucin. Herein, we applied hyaluronic acid (HA)-coated nanoparticulate vaccine, named NHC F, containing Pre-F protein of respiratory syncytial virus (RSV) formulated with chitosan. Compared with the vaccine without HA coating (NC), NHC by intranasal administration (I.N.) to mice exhibited an enhanced penetration of the mucus layer, which was confirmed by a respiratory organoid chip. Moreover, when agonists were cofabricated with Pre-F in NHC, compared to CpG or cholera toxin B (CTB), the vaccines with 2,3-cGAMP (NHC F-GAMP ) can overcome the mucosal immune tolerance microenvironment and produce the highest titer of IgA in mucosal and IgG in serum. Aside from the arousing humoral immunity, NHC F-GAMP can recruit the most abundant immune cells to nasal-associated lymphoid tissue from circulation. Notably, the mice that received NHC F-GAMP significantly reduced mucosal damage and viral load upon RSV challenge from mucus. Thus, this study demonstrates that a rational design delivery system of antigen and agonist can effectively enhance mucosal vaccine efficacy.
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