Allergic diseases continue to pose a significant public health burden in modernized societies. Although the etiology of allergic diseases is unknown, they are thought to develop as a result of aberrant Th2 immune responses in genetically susceptible individuals. Despite this recognition, the factors driving Th2-mediated immune responses have remained elusive. Our preliminary data suggests the novel paradigm that allergen exposure induces epithelial cell injury which results in the release of an epithelial-derived factor, trefoil factor 2. Tff2, in turn induces the release of the alarmin IL-33, which drives Th2 cytokine production in innate immune cells. The production of Th2 cytokines, amplifies and perpetuates the response by driving additional Tff2 release. Importantly, we show that TFF2 levels are elevated in epithelial cells from asthmatic children undergoing an acute attack as compared to cells from healthy controls. Thus the goal of this proposal is to test the novel hypothesis that aberrant epithelial cell production of TFF2 is important in the induction and expression of Th2-mediated allergic responses in an IL-33-dependent manner. Moreover, we propose that genetic variation in the genes controlling this pathway (TFF2, IL-33, IL-1RL1) enhances the risk of developing allergic diseases (allergic asthma, atopic dermatitis, allergic rhinitis, eosinophilic esphagitis) in children. To test this hypothesis, we propose the following specific aims: 1) To determine the contribution of the Tff2/IL-33 pathway to the initiation of Th2-mediated allergic airway responses; 2) To determine the mechanism by which TFF2 mediates IL-13-dependent AHR and mucus cell metaplasia; and 3) To determine whether dysregulation of the TFF2/IL-33 pathway contributes to the risk of developing allergic disorders in cohorts of children recruited from the Cincinnati Area. The studies in this Project are closely aligned with and benefit from the resources and information generated in Projects 1 and 2 of this U19, which are also focused on defining the contribution of altered mucosal epithelial function in the etiology of allergic diseases. Identification of the Tff2/IL-33 pathway as an important driver and amplifier of the allergic response should lead to the development of disease modifying therapies for the treatment of allergic disorders.

Public Health Relevance

Although allergic diseases have long posed a significant public health burden, the factors predisposing some individuals to the development of these disorders are unknown. Herein, we will test the novel hypothesis that dysregulation of the production of an epithelial-derived factor. Trefoil factor 2, drives susceptibility to allergic disorders through a pathway involving the 'alarmin', IL-33. These studies will greatly inform the development nf novel treatment mnrJalitifis fr^r these dfihilitatino disorders .

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19AI070235-10
Application #
8895233
Study Section
Special Emphasis Panel (ZAI1)
Project Start
Project End
Budget Start
2015-09-01
Budget End
2016-08-31
Support Year
10
Fiscal Year
2015
Total Cost
Indirect Cost
Name
Cincinnati Children's Hospital Medical Center
Department
Type
DUNS #
071284913
City
Cincinnati
State
OH
Country
United States
Zip Code
45229
Jensen, Elizabeth T; Kuhl, Jonathan T; Martin, Lisa J et al. (2018) Early-life environmental exposures interact with genetic susceptibility variants in pediatric patients with eosinophilic esophagitis. J Allergy Clin Immunol 141:632-637.e5
Biagini Myers, Jocelyn M; Schauberger, Eric; He, Hua et al. (2018) A Pediatric Asthma Risk Score to better predict asthma development in young children. J Allergy Clin Immunol :
O'Shea, Kelly M; Aceves, Seema S; Dellon, Evan S et al. (2018) Pathophysiology of Eosinophilic Esophagitis. Gastroenterology 154:333-345
Ghandikota, Sudhir; Hershey, Gurjit K Khurana; Mersha, Tesfaye B (2018) GENEASE: real time bioinformatics tool for multi-omics and disease ontology exploration, analysis and visualization. Bioinformatics 34:3160-3168
Rosenberg, C E; Mingler, M K; Caldwell, J M et al. (2018) Esophageal IgG4 levels correlate with histopathologic and transcriptomic features in eosinophilic esophagitis. Allergy 73:1892-1901
Martin, Lisa J; He, Hua; Collins, Margaret H et al. (2018) Eosinophilic esophagitis (EoE) genetic susceptibility is mediated by synergistic interactions between EoE-specific and general atopic disease loci. J Allergy Clin Immunol 141:1690-1698
Gour, Naina; Lajoie, Stephane; Smole, Ursula et al. (2018) Dysregulated invertebrate tropomyosin-dectin-1 interaction confers susceptibility to allergic diseases. Sci Immunol 3:
Perez Ramirez, Leilanie; Wendroth, Heepke; Martin, Lisa J et al. (2018) High number of early respiratory infections in association with allergic sensitization to mold promotes childhood asthma. J Allergy Clin Immunol 141:1921-1924.e4
Herr, Andrew B (2018) Evolution of an allosteric ""off switch"" in apoptotic caspases. J Biol Chem 293:5462-5463
Johansson, Elisabet; Hershey, Gurjit K Khurana (2018) Contribution of an impaired epithelial barrier to the atopic march. Ann Allergy Asthma Immunol 120:118-119

Showing the most recent 10 out of 112 publications