Biophysics Program, University of Maryland, College Park, MD, USA.
Department of Cell Biology & Molecular Genetics, University of Maryland, College Park, MD, USA.
Commun Biol. 2022 Mar 22;5(1):249. doi: 10.1038/s42003-022-03204-3.
Mucus in the lung plays an essential role as a barrier to infection by viral pathogens such as influenza A virus (IAV). Previous work determined mucin-associated sialic acid acts as a decoy receptor for IAV hemagglutinin (HA) binding and the sialic-acid cleaving enzyme, neuraminidase (NA), facilitates virus passage through mucus. However, it has yet to be fully addressed how the physical structure of the mucus gel influences its barrier function and its ability to trap viruses via glycan mediated interactions to prevent infection. To address this, IAV and nanoparticle diffusion in human airway mucus and mucin-based hydrogels is quantified using fluorescence video microscopy. We find the mobility of IAV in mucus is significantly influenced by the mesh structure of the gel and in contrast to prior reports, these effects likely influence virus passage through mucus gels to a greater extent than HA and NA activity. In addition, an analytical approach is developed to estimate the binding affinity of IAV to the mucus meshwork, yielding dissociation constants in the mM range, indicative of weak IAV-mucus binding. Our results provide important insights on how the adhesive and physical barrier properties of mucus influence the dissemination of IAV within the lung microenvironment.
肺部的黏液在阻止流感病毒(IAV)等病毒病原体感染方面发挥着重要作用。之前的研究确定了粘蛋白相关的唾液酸作为 IAV 血凝素(HA)结合的诱饵受体,而唾液酸裂解酶(NA)则有助于病毒穿过黏液。然而,黏液凝胶的物理结构如何影响其屏障功能,以及通过糖基介导的相互作用捕获病毒以防止感染的机制仍未得到充分解决。为了解决这个问题,我们使用荧光视频显微镜定量研究了 IAV 和纳米颗粒在人呼吸道黏液和粘蛋白水凝胶中的扩散。我们发现,IAV 在黏液中的迁移能力受到凝胶的网格结构的显著影响,与之前的报道相反,这些影响可能比 HA 和 NA 活性更能影响病毒穿过黏液凝胶的能力。此外,我们还开发了一种分析方法来估计 IAV 与黏液网格的结合亲和力,得到的离解常数在毫摩尔范围内,表明 IAV 与黏液的结合较弱。我们的研究结果提供了关于黏液的黏附性和物理屏障特性如何影响 IAV 在肺部微环境中传播的重要见解。