Bullard Brianna L, DeBeauchamp Jennifer, Pekarek Matthew J, Petro-Turnquist Erika, Vogel Peter, Webby Richard J, Weaver Eric A
School of Biological Sciences, Nebraska Center for Virology, University of Nebraska, Lincoln, NE, 68503, USA.
Department of Infectious Diseases, St. Jude Children's Research Hospital, Memphis, TN, 38105, USA.
NPJ Vaccines. 2022 Jun 23;7(1):65. doi: 10.1038/s41541-022-00492-y.
There is a crucial need for an improved H3N2 influenza virus vaccine due to low vaccine efficacy rates and increased morbidity and mortality associated with H3N2-dominated influenza seasons. Here, we utilize a computational design strategy to produce epitope-optimized, broadly cross-reactive H3 hemagglutinins in order to create a universal H3N2 influenza vaccine. The Epigraph immunogens are designed to maximize the viral population frequency of epitopes incorporated into the immunogen. We compared our Epigraph H3 vaccine to the traditional egg-based inactivated influenza vaccine from 2018-19, FluZone. Epigraph vaccination-induced stronger cross-reactive antibody responses than FluZone against 18 H3N2 viruses isolated from 1968 to 2019 in both mice and ferrets, with protective hemagglutination inhibition titers against 93-100% of the contemporary H3N2 strains compared to only 27% protection measured from FluZone. In addition, Epigraph vaccination-induced strong cross-reactive T-cell immunity which significantly contributes to protection against lethal influenza virus infection. Finally, Epigraph vaccination protected ferrets from influenza disease after challenge with two H3N2 viruses. The superior cross-reactive immunity induced by these Epigraph immunogens supports their development as a universal H3N2 influenza vaccine.
由于疫苗效力低下以及与以H3N2为主的流感季节相关的发病率和死亡率增加,迫切需要改进H3N2流感病毒疫苗。在此,我们采用一种计算设计策略来生产表位优化的、具有广泛交叉反应性的H3血凝素,以创建一种通用的H3N2流感疫苗。Epigraph免疫原的设计旨在使纳入免疫原的表位的病毒群体频率最大化。我们将我们的Epigraph H3疫苗与2018 - 19年传统的基于鸡蛋的灭活流感疫苗FluZone进行了比较。在小鼠和雪貂中,Epigraph疫苗接种诱导的针对1968年至2019年分离的18种H3N2病毒的交叉反应性抗体反应比FluZone更强,针对93 - 100%的当代H3N2毒株具有保护性血凝抑制效价,而FluZone仅为27%。此外,Epigraph疫苗接种诱导了强烈的交叉反应性T细胞免疫,这对预防致命性流感病毒感染有显著作用。最后,Epigraph疫苗接种使雪貂在受到两种H3N2病毒攻击后免受流感疾病。这些Epigraph免疫原诱导的卓越交叉反应性免疫支持它们作为通用H3N2流感疫苗的开发。