破伤风
佐剂
免疫
免疫
毒素
类毒素
重组DNA
体外
体内
接种疫苗
病毒学
生物
微生物学
免疫学
免疫系统
生物化学
基因
遗传学
作者
Qinggang He,Yuan Chen,Yuhang Li,Xin Cheng,Xiaoyan Li,Meilin Wu,Jiqing Wan,Ping Luo,Yi Wang,Jiang Gu,Yi Zhang
出处
期刊:Vaccine
[Elsevier BV]
日期:2024-05-31
卷期号:42 (20): 125976-125976
被引量:1
标识
DOI:10.1016/j.vaccine.2024.05.024
摘要
The conventional inactivated tetanus toxin plays an instrumental role in preventing tetanus. Nevertheless, the challenges associated with its production process, the potential for adverse reactions, and reduced effectiveness in vulnerable populations such as neonates and the elderly rise the need for a novel tetanus toxin vaccine. Recombinant subunit vaccine offer a viable solution, and the tetanus toxin fragment C (TTFC) is emerging as a promising candidate. In this study, through spontaneous isopeptide bond formation we conjugated the recombinant TTFC to self-assembled mi3 nanoparticle, which derived from an optimized KDPG aldolase, and generated the TTFC-mi3 protein nanoparticle vaccine. We found that TTFC-mi3 is stable, uniform spherical nanoparticles. Comparing with the free TTFC alone, TTFC-mi3 enhances the uptake and subsequent activation of dendric cells (DCs). In addition, a single dose of adjuvant-free TTFC-mi3 elicited a more rapid and potent protective immunity in mice. Moreover, TTFC-mi3 is of favorable safety in vitro and in vivo. Our findings indicate that TTFC-mi3 is a rapid-response, non-aluminum-adjuvanted vaccine against tetanus.
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