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IKK? in intestinal epithelial cells regulates allergen-specific IgA and allergic inflammation at distant mucosal sites.


ABSTRACT: Regulation of allergic responses by intestinal epithelial cells (IECs) remains poorly understood. Using a model of oral allergen sensitization in the presence of cholera toxin as adjuvant and mice with cell-specific deletion of inhibitor-?B kinase (IKK?) in IECs (IKK?(?IEC)), we addressed the contribution of IECs to allergic sensitization to ingested antigens and allergic manifestations at distant mucosal site of the airways. Cholera toxin induced higher pro-inflammatory responses and altered the profile of the gut microbiota in IKK?(?IEC) mice. Antigen-specific immunoglobulin E (IgE) responses were unaltered in IKK?(?IEC) mice, but their IgA antibodies (Abs), T helper type 1 (Th1) and Th17 responses were enhanced. Upon nasal antigen challenge, these mice developed lower levels of allergic lung inflammation, which correlated with higher levels of IgA Abs in the airways. The IKK?(?IEC) mice also recruited a higher number of gut-sensitized T cells in the airways after nasal antigen challenge and developed airway hyper-responsiveness, which were suppressed by treatment with anti-interleukin-17A. Fecal microbiota transplant during allergic sensitization reduced Th17 responses in IKK?(?IEC) mice, but did not affect IgA Ab responses. In summary, we show that IKK? in IECs shapes the gut microbiota and immune responses to ingested antigens and influences allergic responses in the airways via regulation of IgA Ab responses.

SUBMITTER: Bonnegarde-Bernard A 

PROVIDER: S-EPMC4053573 | biostudies-literature | 2014 Mar

REPOSITORIES: biostudies-literature

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IKKβ in intestinal epithelial cells regulates allergen-specific IgA and allergic inflammation at distant mucosal sites.

Bonnegarde-Bernard A A   Jee J J   Fial M J MJ   Aeffner F F   Cormet-Boyaka E E   Davis I C IC   Lin M M   Tomé D D   Karin M M   Sun Y Y   Boyaka P N PN  

Mucosal immunology 20130710 2


Regulation of allergic responses by intestinal epithelial cells (IECs) remains poorly understood. Using a model of oral allergen sensitization in the presence of cholera toxin as adjuvant and mice with cell-specific deletion of inhibitor-κB kinase (IKKβ) in IECs (IKKβ(ΔIEC)), we addressed the contribution of IECs to allergic sensitization to ingested antigens and allergic manifestations at distant mucosal site of the airways. Cholera toxin induced higher pro-inflammatory responses and altered th  ...[more]

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