[HTML][HTML] Landscape of coordinated immune responses to H1N1 challenge in humans

Z Rahil, R Leylek, CM Schürch, H Chen… - The Journal of …, 2020 - Am Soc Clin Investig
Z Rahil, R Leylek, CM Schürch, H Chen, Z Bjornson-Hooper, SR Christensen, PF Gherardini
The Journal of clinical investigation, 2020Am Soc Clin Investig
Influenza is a significant cause of morbidity and mortality worldwide. Here we show changes
in the abundance and activation states of more than 50 immune cell subsets in 35
individuals over 11 time points during human A/California/2009 (H1N1) virus challenge
monitored using mass cytometry along with other clinical assessments. Peak change in
monocyte, B cell, and T cell subset frequencies coincided with peak virus shedding, followed
by marked activation of T and NK cells. Results led to the identification of CD38 as a critical …
Influenza is a significant cause of morbidity and mortality worldwide. Here we show changes in the abundance and activation states of more than 50 immune cell subsets in 35 individuals over 11 time points during human A/California/2009 (H1N1) virus challenge monitored using mass cytometry along with other clinical assessments. Peak change in monocyte, B cell, and T cell subset frequencies coincided with peak virus shedding, followed by marked activation of T and NK cells. Results led to the identification of CD38 as a critical regulator of plasmacytoid dendritic cell function in response to influenza virus. Machine learning using study-derived clinical parameters and single-cell data effectively classified and predicted susceptibility to infection. The coordinated immune cell dynamics defined in this study provide a framework for identifying novel correlates of protection in the evaluation of future influenza therapeutics.
The Journal of Clinical Investigation