Influenza A continues to circulate widely in the human population and causes significant morbidity and mortality. Current vaccines have variable effectiveness year-to-year, with observable breakthrough infections each season, and have limited effectiveness in certain at-risk members of the population. Although basic and clinical influenza research has broadened our understanding of viral immunology, transmission, and pathogenesis, important questions, particularly concerning correlates of protection, viral evolution, and transmission, remain unanswered. Many of these questions can only be approached through studies in humans.
As more broadly protective vaccines are developed, efficient and comprehensive methods of determining their value will be imperative. One of the key components and gap-filling measures in the National Institute of Allergy and Infectious Diseases (NIAID) strategic plan for universal influenza vaccines is to expand our capacity to conduct human challenge studies with relevant influenza challenge viruses to facilitate early evaluation of new vaccines and to further our understanding of flu pathogenesis and immunity. The goal of this study is to conduct a human challenge study to build upon our success at establishing the influenza challenge model at Emory to better understand influenza pathogenesis, immunity, transmission, and evolution using an H3N2 challenge stock.
Human challenge studies for influenza are a particularly attractive modality for the development of a universal influenza vaccine. As outlined by NIAID's strategic plan, a universal flu vaccine would be at least 75% effective, maintain protection for at least one year, protect against group I (e.g., H1, H5) and II (e.g., H3, H7) influenza A virus strains, and be effective for all age groups. ix The strategic plan also states that a human challenge model could offer unique benefits to better understand the concept of imprinting, determine correlates of protection against influenza, and evaluate different universal influenza vaccine candidates. The development of universal vaccine strategies that reduce transmission potential and can protect from infection by aerosolized viruses will be a strategic advantage for reducing the public health burden from influenza viruses.