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IRF7-Associated Immunophenotypes Have Dichotomous Responses to Virus/Allergen Coexposure and OM-85-Induced Reprogramming

Emma de Jong, Jean‐François Lauzon‐Joset, Jonatan Leffler, Michael Serralha, Alexander N. Larcombe, C. Christophersen, Patrick G. Holt, Deborah H. Strickland, Anthony Bosco

2021Frontiers in Immunology26 citationsDOIOpen Access PDF

Abstract

High risk for virus-induced asthma exacerbations in children is associated with an IRF7lo immunophenotype, but the underlying mechanisms are unclear. Here, we applied a Systems Biology approach to an animal model comprising rat strains manifesting high (BN) versus low susceptibility (PVG) to experimental asthma, induced by virus/allergen coexposure, to elucidate the mechanism(s)-of-action of the high-risk asthma immunophenotype. We also investigated potential risk mitigation via pretreatment with the immune training agent OM-85. Virus/allergen coexposure in low-risk PVG rats resulted in rapid and transient airways inflammation alongside IRF7 gene network formation. In contrast, responses in high-risk BN rats were characterized by severe airways eosinophilia and exaggerated proinflammatory responses that failed to resolve, and complete absence of IRF7 gene networks. OM-85 had more profound effects in high-risk BN rats, inducing immune-related gene expression changes in lung at baseline and reducing exaggerated airway inflammatory responses to virus/allergen coexposure. In low-risk PVG rats, OM-85 boosted IRF7 gene networks in the lung but did not alter baseline gene expression or cellular influx. Distinct IRF7-associated asthma risk immunophenotypes have dichotomous responses to virus/allergen coexposure and respond differentially to OM-85 pretreatment. Extrapolating to humans, our findings suggest that the beneficial effects OM-85 pretreatment may preferentially target those in high-risk subgroups.

Topics & Concepts

IRF7ImmunologyEosinophiliaImmunophenotypingProinflammatory cytokineVirusImmune systemBiologyInflammationMedicineInnate immune systemFlow cytometryAsthma and respiratory diseasesIL-33, ST2, and ILC PathwaysChronic Obstructive Pulmonary Disease (COPD) Research
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