IL-5 Receptor Alpha Positive Lungs Cells Protect Against Acute Lung Injury 2257777
Abstract
Abstract Introduction Acute Lung Injury (ALI) has a variety of etiologies that ultimately result in barrier dysfunction, which can lead to edema and hypoxemic respiratory failure. Previously, we demonstrated that IL-5 signaling has a protective effect on mice in the bleomycin mouse model of ALI. Mice lacking IL- 5Rα succumb to ALI and have more edema in the lung while treatment with IL-5 protects mice. Interestingly, these effects where independent of eosinophils suggesting a role for other IL-5 responding cells. We discovered that epithelial cells increased their expression of IL-5Rα seven days post bleomycin and that these IL-5Rα+ epithelial cells were highly proliferative. Additionally, IL-5Rα-positive B cells were increased in the lung tissue seven days post bleomycin administration, whereas eosinophil levels were comparable to uninjured mice. Methods To investigate the requirement of IL-5Rα in epithelial and B cells during bleomycin, a Cre-lox mouse model was utilized to specifically of delete IL-5Rα in these populations. These conditional knockouts were then subjected to bleomycin-induced ALI. Results While IL-5Rα+ epithelial cells are more proliferative, conditional depletion of IL-5Rα in lung epithelium did not impact survival during ALI. Depletion of IL-5Rα in B cells also did not have a difference in survival compared to controls however, B cell subsets were skewed towards B-2 cells. This suggests that multiple cell types are responding to IL-5 and their effect alone may not affect protection during bleomycin induced acute lung injury. Conclusion During bleomycin-induced ALI, exogenous IL-5 is protective, and we demonstrate that both lung epithelial cells and B cells respond to IL-5 through proliferation and subset differentiation, respectively. It is possible multiple IL-5 responding cells are together involved in protective mechanisms during ALI. As IL-5 signaling is a target in the clinic for reducing eosinophils, this novel IL-5 protective pathway during ALI should be considered in these patients. Funding Source T32 AI007046 Topic Categories Mucosal and Regional Immunology (MUC)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (6)
Christopher Pastore
University of Virginia
Cara Hrusch
University of Chicago
Kathleen Mills
University of Chicago
Brennan Stadler
University of Virginia
Tania Velez
University of Virginia
Anne Sperling
University of Virginia