Induction of enhanced stem-directed neutralizing antibodies by HA2-16 ferritin nanoparticles with H3 influenza virus boost†

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Advances Pub Date : 2025-02-11 DOI:10.1039/D4NA00964A
Qingyu Wang, Jiaojiao Nie, Zejinxuan Liu, Yaotian Chang, Yangang Wei, Xin Yao, Lulu Sun, Xiaoxi Liu, Qicheng Liu, Xinyu Liang, Xinran Zhang, Yong Zhang, Weiheng Su, Qi Zhao, Yaming Shan, Yingwu Wang, Xianbin Cheng and Yuhua Shi
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Abstract

Current seasonal influenza vaccines offer limited protection against influenza viruses due to genetic drift. The urgent need for a universal influenza vaccine to combat highly mutated strains is evident. This study utilized the conserved HA2 subunit of hemagglutinin (HA) and a short linear epitope of HA2 (HA2-16) from the H3 influenza virus to conjugate with ferritin, resulting in the construction of recombinant immunogens termed HA2-F and HA2-16-F, respectively. In vitro characterization confirmed the self-assembly of prokaryotically expressed HA2-F and HA2-16-F into nanoparticles (NPs). To simulate natural virus infection in the vaccinated population, intranasal infection with the whole H3N2 virus was administered as a final boost. Enhanced binding activity to A/Hong Kong/4801/2014 (H3N2) and A/17/California/2009/38 (H1N1) virus was detected in the HA2-16 group induced by the A/Wisconsin/67/2005 (H3N2) virus boost (Titer >104). Furthermore, higher titers of neutralizing antibodies were elicited by HA2-16-F NP (ID50: 50.4–631.0) compared to those by HA2-F NP (ID50: 20.3–178.2). These results demonstrated that the H3N2 virus boost focused the antibody response on the HA2-16 epitope. Additionally, our immunization strategy was found to reduce serum ferritin reactive antibodies. In summary, HA2-16 not only holds promise as a vaccine candidate but also exhibits significant potential for influenza vaccine production, particularly in enhancing the levels of induced stem-directed antibodies. This study contributes to the development of recombinant immunogens for improved influenza vaccine efficacy.

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H3流感病毒增强的HA2-16铁蛋白纳米颗粒诱导增强的干细胞定向中和抗体
由于遗传漂变,目前的季节性流感疫苗对流感病毒提供的保护有限。显然,迫切需要一种通用流感疫苗来对抗高度变异的毒株。本研究利用来自H3流感病毒的血凝素(HA)的保守HA2亚基和HA2的短线性表位(HA2-16)与铁蛋白结合,分别构建了重组免疫原HA2- f和HA2-16- f。体外鉴定证实了原核表达的HA2-F和HA2-16-F自组装成纳米颗粒(NPs)。为了模拟接种疫苗人群中的自然病毒感染,将整个H3N2病毒的鼻内感染作为最后的促进。在A/Wisconsin/67/2005 (H3N2)病毒增强剂(滴度>104)诱导的HA2-16组中检测到对A/Hong Kong/4801/2014 (H3N2)和A/17/California/2009/38 (H1N1)病毒的结合活性增强。此外,HA2-16-F NP诱导的中和抗体滴度(ID50: 50.4-631.0)高于HA2-F NP (ID50: 20.3-178.2)。这些结果表明,H3N2病毒增强将抗体反应集中在HA2-16表位上。此外,我们的免疫策略被发现可以降低血清铁蛋白反应性抗体。总之,HA2-16不仅有望成为一种候选疫苗,而且在流感疫苗生产中也显示出巨大的潜力,特别是在提高诱导的干细胞定向抗体水平方面。本研究有助于开发重组免疫原以提高流感疫苗的效力。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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