Little is known about the impact of viral infections on lung matrix despite its important contribution to mechanical stability and structural support. The composition of matrix also indirectly controls inflammation by influencing cell adhesion, migration, survival, proliferation and differentiation. Hyaluronan is a significant component of the lung extracellular matrix and production and degradation must be carefully balanced. We have discovered an imbalance in hyaluronan production following resolution of a severe lung influenza virus infection, driven by hyaluronan synthase 2 from epithelial cells, endothelial cells and fibroblasts. Furthermore hyaluronan is complexed with inter-α-inhibitor heavy chains due to elevated TNF-stimulated gene 6 expression and sequesters CD44-expressing macrophages. We show that intranasal administration of exogenous hyaluronidase is sufficient to release inter-α-inhibitor heavy chains, reduce lung hyaluronan content and restore lung function. Hyaluronidase is already used to facilitate dispersion of co-injected materials in the clinic. It is therefore feasible that fibrotic changes following severe lung infection and inflammation could be overcome by targeting abnormal matrix production.
Defective lung function following influenza virus is due to prolonged, reversible hyaluronan synthesis.
流感病毒感染后肺功能受损是由于透明质酸合成延长所致,且该过程可逆
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作者:Bell Thomas J, Brand Oliver J, Morgan David J, Salek-Ardakani Samira, Jagger Christopher, Fujimori Toshifumi, Cholewa Lauren, Tilakaratna Viranga, Ãstling Jörgen, Thomas Matt, Day Anthony J, Snelgrove Robert J, Hussell Tracy
| 期刊: | Matrix Biology | 影响因子: | 4.800 |
| 时间: | 2019 | 起止号: | 2019 Jul;80:14-28 |
| doi: | 10.1016/j.matbio.2018.06.006 | 研究方向: | 炎症/感染 |
| 疾病类型: | 流感 | ||
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