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IFN-γ acts on the airway epithelium to inhibit local and systemic pathology in allergic airway disease

  • Charlotte Mitchell
  • , Karin Provost
  • , Naiqian Niu
  • , Robert Homer
  • , Lauren Cohn
  • Yale University

Research output: Contribution to journalArticlepeer-review

89 Scopus citations

Abstract

Inhibiting allergic airway inflammation is the goal of therapy in persistent asthma. Administration of medication via the airways delivers drug directly to the site of inflammation and avoids systemic side effects but often fails to modulate systemic features of asthma. We have shown that Th1 cells, through production of IFN-γ, inhibit many Th2-induced effector functions that promote disease. Using a newly generated mouse that expresses IFN-γR only on airway epithelial cells, we show that the airway epithelium controls a range of pathological responses in asthma. IFN-γ acting only through the airway epithelium inhibits mucus, chitinases, and eosinophilia, independent of Th2 cell activation. IFN-γ signaling through the airway epithelium inhibits eosinophil generation in the bone marrow, indicating that signals on the airway mucosal surface can regulate distant functions to inhibit disease. IFN-γactions through the airway epithelium will limit airway obstruction and inflammation and may be therapeutic in refractory asthma.

Original languageEnglish
Pages (from-to)3815-3820
Number of pages6
JournalJournal of Immunology
Volume187
Issue number7
DOIs
StatePublished - Oct 1 2011

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