bioRxiv · 10.1101/2023.08.14.553271
Mucus physically restricts influenza A viral particle access to the epithelium
Abstract
Prior work suggests influenza A virus (IAV) crosses the airway mucus barrier in a sialic acid-dependent manner through the actions of the viral envelope glycoproteins, hemagglutinin and neuraminidase. However, host and viral factors that influence how efficiently mucus traps IAV remain poorly defined. In this work, we assessed how the physicochemical properties of mucus influence its ability to effectively capture IAV using fluorescence video microscopy and multiple particle tracking. We found an airway mucus gel layer must be produced with virus-sized pores to physically constrain IAV. While sialic acid binding by IAV may improve mucus trapping efficiency, sialic acid binding preference was found to have little impact on IAV mobility and the fraction of viral particles expected to penetrate the mucus barrier. Further, we demonstrate synthetic polymeric hydrogels engineered with mucus-like architecture are similarly protective against IAV infection despite their lack of sialic acid decoy receptors. Together, this work provides new insights on mucus barrier function toward IAV with important implications on innate host defense and interspecies transmission.
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Kaler, L., Engle, E. M., Iverson, E., Boboltz, A., Ignacio, M. A., Rife, M., Scull, M. A., Duncan, G.. 2023-08-14. Mucus physically restricts influenza A viral particle access to the epithelium. https://doi.org/10.1101/2023.08.14.553271
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