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Analysis of Pulmonary Dendritic Cell Maturation and Migration during Allergic Airway Inflammation
Published on: July 23, 2012
Frontline Science: RIP2 promotes house dust mite-induced allergic airway inflammation
Madelyn H Miller1, Michael G Shehat1, Karel P Alcedo2
1Immunity and Pathogenesis Division, Burnett School of Biomedical Sciences, University of Central Florida, Orlando, Florida, USA.
Abstract:
House dust mites (HDMs) are one of the most significant environmental allergens in the establishment of the so-called "Atopic March." It is known that the immune response to HDM is Th2 dominant, but the innate mechanisms leading to HDM-induced type 2 responses are still not completely understood. A number of innate immune receptors have been implicated in the response to HDM including toll-like receptors, C-type lectin receptors, and protease activated receptors. NOD2 is a member of the NOD-like receptor family, which has been reported to be involved in the establishment of type 2 immunity and in blocking respiratory tolerance. NOD2 mediates its effects through its downstream effector kinase, receptor interacting protein (RIP2). It has not been shown if RIP2 is involved in the innate response to HDM and in the resulting generation of type 2 immunity. Furthermore, the role of RIP2 in modulating allergic airway inflammation has been controversial. In this study, we show that RIP2 is activated in airway epithelial cells in response to HDM and is important for the production of CCL2. Using a murine HDM asthma model, we demonstrate that lung pathology, local airway inflammation, inflammatory cytokines, HDM-specific IgG1 antibody production, and HDM-specific Th2 responses are all reduced in RIP2 knockout mice compared to WT animals. These data illustrate that RIP2 can be activated by a relevant allergic stimulus and that such activation can contribute to allergic airway inflammation. These findings also suggest that RIP2 inhibitors might have some efficacy in down-regulating the inflammatory response in type 2 dominated diseases.
Insights
Receptor interacting protein 2 (RIP2) activation by house dust mites (HDM) drives allergic airway inflammation. RIP2 knockout mice show reduced lung pathology and immune responses, suggesting RIP2 inhibitors could treat type 2 allergic diseases.
Area of Science:
- Immunology
- Allergology
- Respiratory Medicine
Background:
- House dust mites (HDMs) are major allergens triggering the "Atopic March."
- The innate immune mechanisms underlying HDM-induced type 2 responses remain unclear.
- NOD2-receptor interacting protein 2 (RIP2) signaling is implicated in type 2 immunity.
Purpose of the Study:
- To investigate the role of RIP2 in the innate immune response to HDM.
- To determine RIP2's involvement in HDM-induced allergic airway inflammation.
- To assess RIP2's contribution to type 2 immunity generation.
Main Methods:
- Activation of RIP2 in airway epithelial cells by HDM.
- Murine model of HDM-induced asthma.
- Comparison of wild-type (WT) and RIP2 knockout (KO) mice.
Main Results:
- RIP2 activation in airway epithelial cells was observed in response to HDM.
- CCL2 production was dependent on RIP2 activation.
- RIP2 KO mice exhibited significantly reduced lung pathology, airway inflammation, inflammatory cytokines, HDM-specific IgG1, and Th2 responses compared to WT mice.
Conclusions:
- RIP2 activation by HDM contributes to allergic airway inflammation.
- RIP2 plays a crucial role in initiating and sustaining type 2 immune responses to HDM.
- Targeting RIP2 may offer a therapeutic strategy for type 2 allergic diseases.
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