Immune regulation of the hyaluronan matrix in the lung during infection, injury and repair
In plain English
AI plain-English summaryA single molecule called hyaluronan, a giant sugar that gives lung tissue its bounce and structure, is being reshaped by the immune system in ways that can either heal the lungs or drive them into disease. This matters because the same molecule that helps repair lung damage after a worm infection also thickens airways in asthma and worsens flu and COVID-19. Researchers know that the immune signal IL-13 triggers hyaluronan production, but they do not understand why the resulting matrix sometimes helps and sometimes harms. Without that knowledge, doctors cannot tell whether boosting or blocking hyaluronan formation is the right move for a given patient. This project will map the hyaluronan matrix in three distinct settings—viral infection, allergic airway remodelling, and repair after parasite migration—to see exactly how its composition and location differ. The team will then manipulate the matrix in mouse models to test whether changing it alters immune responses and disease outcomes. If successful, this work could reveal new targets for therapies that steer hyaluronan toward repair and away from pathology, potentially improving treatment for asthma, severe respiratory infections, and lung injury.
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