The evolution of influenza virus: studies of within host and between host evolution to improve pandemic risk assessment and vaccine updates.
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AI plain-English summaryEvery year, influenza viruses mutate just enough to slip past our immune defences, forcing a new vaccine update. This project aims to understand exactly how those mutations happen—both inside a single infected person and as the virus spreads through a population—so that public health officials can better predict which strains pose the greatest pandemic threat. The problem is that transmissibility, the key trait that turns a bird flu into a human pandemic, is currently measured using ferret experiments that have known limitations. The researchers will develop new laboratory, mathematical, and bioinformatic methods to quantify transmissibility more accurately. They will compare H7N9 viruses circulating in poultry with the 1968 H3N2 pandemic virus, reconstructing the avian precursor and testing how key genetic changes altered its ability to spread. They will also track how the H3N2 virus evolved seasonally between 2007 and 2009, comparing that to its pandemic emergence. If successful, this work will provide a probabilistic framework for predicting antigenic drift—the process that forces annual vaccine updates. That could make vaccine strain selection faster and more reliable, and improve risk assessments for non-human influenza strains before they jump to people.
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