Cortese Mario, Sherman Amy C, Rouphael Nadine G, Pulendran Bali
Institute for Immunity, Transplantation and Infection, School of Medicine, Stanford University, Stanford, California 94305, USA.
Hope Clinic of the Emory Vaccine Center, Decatur, Georgia 30030, USA.
Cold Spring Harb Perspect Med. 2021 Jun 1;11(6):a038596. doi: 10.1101/cshperspect.a038596.
The last decade has witnessed tremendous progress in immunology and vaccinology, owing to several scientific and technological breakthroughs. Systems vaccinology is a field that has emerged at the forefront of vaccine research and development and provides a unique way to probe immune responses to vaccination in humans. The goals of systems vaccinology are to use systems-based approaches to define signatures that can be used to predict vaccine immunogenicity and efficacy and to delineate the molecular mechanisms driving protective immunity. The application of systems biological approaches in influenza vaccination studies has enabled the discovery of early signatures that predict immunogenicity to vaccination and yielded novel mechanistic insights about vaccine-induced immunity. Here we review the contributions of systems vaccinology to influenza vaccine development and critically examine the potential of systems vaccinology toward enabling the development of a universal influenza vaccine that provides robust and durable immunity against diverse influenza viruses.
过去十年见证了免疫学和疫苗学取得的巨大进展,这得益于多项科技突破。系统疫苗学是一个已出现在疫苗研发前沿的领域,它提供了一种独特的方式来探究人类对疫苗接种的免疫反应。系统疫苗学的目标是使用基于系统的方法来定义可用于预测疫苗免疫原性和效力的特征,并阐明驱动保护性免疫的分子机制。系统生物学方法在流感疫苗接种研究中的应用,使得发现了预测疫苗接种免疫原性的早期特征,并对疫苗诱导的免疫产生了新的机制性见解。在此,我们回顾系统疫苗学对流感疫苗研发的贡献,并批判性地审视系统疫苗学在推动开发一种能针对多种流感病毒提供强大而持久免疫力的通用流感疫苗方面的潜力。