Madsen Anders, Okba Nisreen M A, Pholcharee Tossapol, Matz Hanover C, Lv Huibin, Ibanez Trullen Maria, Zhou Julian Q, Turner Jackson S, Schmitz Aaron J, Han Fangjie, Horvath Stephen C, Malladi Sameer Kumar, Krammer Florian, Wu Nicholas C, Ellebedy Ali H
Influenza Centre, Department of Clinical Science, University of Bergen, Bergen, Norway.
Department of Microbiology, Haukeland University Hospital, Bergen, Norway.
J Exp Med. 2025 Jun 2;222(6). doi: 10.1084/jem.20241930. Epub 2025 Apr 3.
Seasonal influenza viruses cause significant global illness and death annually, and the potential spillover of avian H5N1 poses a serious pandemic threat. Traditional influenza vaccines target the variable hemagglutinin (HA) protein, necessitating annual vaccine updates, while the slower-evolving neuraminidase (NA) presents a promising target for broader protection. We investigated the breadth of anti-NA B cell responses to seasonal influenza vaccination in humans. We screened plasmablast-derived monoclonal antibodies (mAbs) from three donors, identifying 11 clonally distinct NA mAbs from 268 vaccine-specific mAbs. Among these, mAb-297 showed exceptionally broad NA inhibition, effectively protecting mice against lethal doses of influenza A and B viruses, including H5N1. We show that mAb-297 targets a common binding motif in the conserved NA active site. Our findings show that while B cell responses against NA following conventional, egg-derived influenza vaccines are rare, inducing broadly protective NA antibodies through such vaccination remains feasible, highlighting the importance of improving NA immunogens to develop a more broadly protective influenza vaccine.
季节性流感病毒每年在全球造成大量疾病和死亡,而禽H5N1病毒的潜在溢出构成了严重的大流行威胁。传统流感疫苗针对易变的血凝素(HA)蛋白,因此需要每年更新疫苗,而进化较慢的神经氨酸酶(NA)是提供更广泛保护的一个有前景的靶点。我们研究了人类对季节性流感疫苗接种产生的抗NA B细胞反应的广度。我们筛选了来自三名供体的浆母细胞衍生单克隆抗体(mAb),从268种疫苗特异性mAb中鉴定出11种克隆不同的NA mAb。其中,mAb-297表现出异常广泛的NA抑制作用,能有效保护小鼠免受致死剂量的甲型和乙型流感病毒(包括H5N1)感染。我们表明,mAb-297靶向保守的NA活性位点中的一个共同结合基序。我们的研究结果表明,虽然接种传统的鸡蛋衍生流感疫苗后针对NA的B细胞反应很少见,但通过这种疫苗接种诱导具有广泛保护作用的NA抗体仍然是可行的,这突出了改进NA免疫原以开发更具广泛保护作用的流感疫苗的重要性。