免疫系统
表位
病毒学
病毒
抗原
类病毒颗粒
生物
抗体
抗体效价
免疫
纳米颗粒
免疫原性
dna疫苗
中和抗体
肽疫苗
接种疫苗
效价
病菌
疫苗效力
肽
作者
Nan Cao,Yamei Li,Qiongqiong Zhao,Manman Yao,Xujiao Ren,Linxing Tian,Zihui Hu,Feifei Diao,Hehai Li,Zengjun Lu,Guibo Rao,Huawei Zhang,Kun Li,Sheng Cao,Xiangmin Li,Ping Qian
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-09-10
卷期号:19 (37): 33134-33155
被引量:3
标识
DOI:10.1021/acsnano.5c04881
摘要
Foot-and-mouth disease virus (FMDV), a critical pathogen in the global livestock industry, has long been a focal point of international disease control strategies. This study developed a nanoparticle-based FMDV vaccine platform. We fused the FMDV immunodominant epitope (VP1-G-H-loop) and T-cell epitope (T3D) with the nanoparticle scaffold lumazine synthase (LS), efficiently producing the T3D-LS-LOOP nanoparticle vaccine using the prokaryotic expression system Escherichia coli (BL21). Mouse experiments showed that the T3D-LS-LOOP nanoparticle vaccine induced a more robust immune response than the LS-LOOP nanoparticle vaccine. To evaluate the role of different scaffolds in FMDV antigen presentation, we substituted the LS scaffold with Ferritin (Ft) and β-annulus peptide (β) nanoparticles, generating T3D-β-LOOP and T3D-Ft-LOOP nanoparticle proteins. The results demonstrated that the LS scaffold-mediated T3D-LS-LOOP nanoparticle vaccine induced the highest neutralizing antibody (NAb) titers (1:28.5) and an effective T-cell immune response, providing 100% protection in mice, outperforming T3D-Ft-LOOP (66.7%) and T3D-β-LOOP (83.3%) nanoparticle vaccines. Encouragingly, the T3D-LS-LOOP nanoparticle vaccine also induced high NAb titers against different lineages (Mya98/Cathay/PanAsia) of type O FMDV and a strong Th2-biased cellular immune response in swine, with no adverse reactions observed postvaccination, achieving complete protection against a type O FMDV challenge in swine.
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