Population of sensory neurons essential for asthmatic hyperreactivity of inflamed airways

D Tränkner, N Hahne, K Sugino… - Proceedings of the …, 2014 - National Acad Sciences
D Tränkner, N Hahne, K Sugino, MA Hoon, C Zuker
Proceedings of the National Academy of Sciences, 2014National Acad Sciences
Asthma is a common debilitating inflammatory lung disease affecting over 200 million
people worldwide. Here, we investigated neurogenic components involved in asthmatic-like
attacks using the ovalbumin-sensitized murine model of the disease, and identified a
specific population of neurons that are required for airway hyperreactivity. We show that
ablating or genetically silencing these neurons abolished the hyperreactive broncho-
constrictions, even in the presence of a fully developed lung inflammatory immune …
Asthma is a common debilitating inflammatory lung disease affecting over 200 million people worldwide. Here, we investigated neurogenic components involved in asthmatic-like attacks using the ovalbumin-sensitized murine model of the disease, and identified a specific population of neurons that are required for airway hyperreactivity. We show that ablating or genetically silencing these neurons abolished the hyperreactive broncho-constrictions, even in the presence of a fully developed lung inflammatory immune response. These neurons are found in the vagal ganglia and are characterized by the expression of the transient receptor potential vanilloid 1 (TRPV1) ion channel. However, the TRPV1 channel itself is not required for the asthmatic-like hyperreactive airway response. We also demonstrate that optogenetic stimulation of this population of TRP-expressing cells with channelrhodopsin dramatically exacerbates airway hyperreactivity of inflamed airways. Notably, these cells express the sphingosine-1-phosphate receptor 3 (S1PR3), and stimulation with a S1PR3 agonist efficiently induced broncho-constrictions, even in the absence of ovalbumin sensitization and inflammation. Our results show that the airway hyperreactivity phenotype can be physiologically dissociated from the immune component, and provide a platform for devising therapeutic approaches to asthma that target these pathways separately.
National Acad Sciences