Texas Biomedical Research Institute, San Antonio, TX 78245, USA.
Department of Veterinary Microbiology, University of Ilorin, Ilorin P.M.B. 1515, Nigeria.
Viruses. 2021 Aug 20;13(8):1657. doi: 10.3390/v13081657.
Equine influenza virus (EIV) is a constantly evolving viral pathogen that is responsible for yearly outbreaks of respiratory disease in horses termed equine influenza (EI). There is currently no evidence of circulation of the original H7N7 strain of EIV worldwide; however, the EIV H3N8 strain, which was first isolated in the early 1960s, remains a major threat to most of the world's horse populations. It can also infect dogs. The ability of EIV to constantly accumulate mutations in its antibody-binding sites enables it to evade host protective immunity, making it a successful viral pathogen. Clinical and virological protection against EIV is achieved by stimulation of strong cellular and humoral immunity in vaccinated horses. However, despite EI vaccine updates over the years, EIV remains relevant, because the protective effects of vaccines decay and permit subclinical infections that facilitate transmission into susceptible populations. In this review, we describe how the evolution of EIV drives repeated EI outbreaks even in horse populations with supposedly high vaccination coverage. Next, we discuss the approaches employed to develop efficacious EI vaccines for commercial use and the existing system for recommendations on updating vaccines based on available clinical and virological data to improve protective immunity in vaccinated horse populations. Understanding how EIV biology can be better harnessed to improve EI vaccines is central to controlling EI.
马流感病毒(EIV)是一种不断进化的病毒病原体,可导致马的呼吸道疾病(称为马流感)每年爆发。目前,全球范围内没有 EIV 原始 H7N7 株循环的证据;然而,EIV H3N8 株于 20 世纪 60 年代初首次分离出来,仍然是世界上大多数马群的主要威胁。它也可以感染狗。EIV 能够在其抗体结合部位不断积累突变,从而使其能够逃避宿主保护性免疫,使其成为一种成功的病毒病原体。通过刺激接种马的强烈细胞和体液免疫,可实现对 EIV 的临床和病毒学保护。然而,尽管多年来对 EI 疫苗进行了更新,但 EIV 仍然很重要,因为疫苗的保护作用会减弱,并允许亚临床感染,从而促进传播到易感人群。在这篇综述中,我们描述了 EIV 的进化如何导致即使在接种疫苗的马群中也会反复爆发 EI。接下来,我们讨论了用于开发有效 EI 疫苗的方法,并讨论了现有的根据现有临床和病毒学数据更新疫苗的建议系统,以提高接种马群的保护性免疫。了解如何更好地利用 EIV 生物学来改进 EI 疫苗是控制 EI 的关键。