Niu Yixin, Yan Yao, Hu Ying, Yang Xi, Shi Hongyang, Zhou Ping, Zhu Caihong, Xing Man, Zhou Dongming, Wang Xiang
Shanghai Public Health Clinical Center, Fudan University, Shanghai 201508, China.
Department of Pathogen Biology, School of Basic Medical Sciences, Tianjin Medical University, Tianjin, 300070, China.
Vaccine. 2025 Apr 19;53:126959. doi: 10.1016/j.vaccine.2025.126959. Epub 2025 Mar 1.
Highly effective and broad-spectrum influenza vaccines are urgently required to prevent influenza outbreaks. Hemagglutinin (HA), M2 ectodomain (M2e), and nucleoprotein (NP) are crucial target antigens for the development of universal influenza vaccines. To generate a novel multivalent influenza vaccine, the HA genes of influenza B Yamagata (BY) and Victoria (BV) strains, and the NP gene of H1N1 were cloned into the E1 region of the chimpanzee adenoviral vector, AdC68, and M2e epitopes of H1N1 and H3N2 were fused to the loop region of the AdC68 fiber, resulting in the recombinant adenoviral vector vaccine, AdC-Flu-Tet. The immunoprotective effects of AdC-Flu-Tet were evaluated in the mouse models. The results showed that AdC-Flu-Tet successfully induced robust humoral and cellular immune responses and conferred full protection against H1N1, H3N2, BY, and BV infections. In conclusion, AdC-Flu-Tet is a promising candidate as a novel influenza vaccine with high protective efficacy.
迫切需要高效、广谱的流感疫苗来预防流感爆发。血凝素(HA)、M2 胞外域(M2e)和核蛋白(NP)是通用流感疫苗研发的关键靶抗原。为制备一种新型多价流感疫苗,将乙型流感病毒山形株(BY)和维多利亚株(BV)的 HA 基因以及甲型 H1N1 流感病毒的 NP 基因克隆到黑猩猩腺病毒载体 AdC68 的 E1 区域,并将 H1N1 和 H3N2 的 M2e 表位融合到 AdC68 纤维的环区,从而得到重组腺病毒载体疫苗 AdC-Flu-Tet。在小鼠模型中评估了 AdC-Flu-Tet 的免疫保护作用。结果表明,AdC-Flu-Tet 成功诱导了强烈的体液免疫和细胞免疫反应,并对 H1N1、H3N2、BY 和 BV 感染提供了完全保护。总之,AdC-Flu-Tet 作为一种具有高保护效力的新型流感疫苗,是一个有前景的候选疫苗。