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Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation

The epithelial lining of the airway tract and allergen-specific IgE are considered essential controllers of inflammatory responses to allergens. The human low affinity IgE receptor, CD23 (FcεRII), is capable of transporting IgE or IgE-allergen complexes across the polarized human airway epithelial c...

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Autores principales: Palaniyandi, Senthilkumar, Liu, Xiaoyang, Periasamy, Sivakumar, Ma, Aiying, Tang, Jin, Jenkins, Mark, Tuo, Wenbin, Song, Wenxia, Keegan, Achsah D., Conrad, Daniel H., Zhu, Xiaoping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4575230/
https://www.ncbi.nlm.nih.gov/pubmed/25783969
http://dx.doi.org/10.1038/mi.2015.16
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author Palaniyandi, Senthilkumar
Liu, Xiaoyang
Periasamy, Sivakumar
Ma, Aiying
Tang, Jin
Jenkins, Mark
Tuo, Wenbin
Song, Wenxia
Keegan, Achsah D.
Conrad, Daniel H.
Zhu, Xiaoping
author_facet Palaniyandi, Senthilkumar
Liu, Xiaoyang
Periasamy, Sivakumar
Ma, Aiying
Tang, Jin
Jenkins, Mark
Tuo, Wenbin
Song, Wenxia
Keegan, Achsah D.
Conrad, Daniel H.
Zhu, Xiaoping
author_sort Palaniyandi, Senthilkumar
collection PubMed
description The epithelial lining of the airway tract and allergen-specific IgE are considered essential controllers of inflammatory responses to allergens. The human low affinity IgE receptor, CD23 (FcεRII), is capable of transporting IgE or IgE-allergen complexes across the polarized human airway epithelial cell (AEC) monolayer in vitro. However, it remains unknown whether the CD23-dependent IgE transfer pathway in AECs initiates and facilitates allergic inflammation in vivo, and whether inhibition of this pathway attenuates allergic inflammation. To this end, we show that in wild-type (WT) mice, epithelial CD23 transcytosed both IgE and ovalbumin (OVA)-IgE complexes across the airway epithelial barrier, while neither type of transcytosis was observed in CD23 knockout (KO) mice. In chimeric mice, OVA sensitization and aerosol challenge of WT/WT (bone-marrow transfer from the WT to WT) or CD23KO/WT (CD23KO to WT) chimeric mice, which express CD23 on radioresistant airway structural cells (mainly epithelial cells) resulted in airway eosinophilia, including collagen deposition and a significant increase in goblet cells, and increased airway hyperreactivity. In contrast, the absence of CD23 expression on airway structural or epithelial cells, but not on hematopoietic cells, in WT/CD23KO (the WT to CD23KO) chimeric mice significantly reduced OVA-driven allergic airway inflammation. In addition, inhalation of the CD23-blocking B3B4 antibody in sensitized WT mice before or during airway challenge suppressed the salient features of asthma, including bronchial hyperreactivity. Taken together, these results identify a previously unproven mechanism in which epithelial CD23 plays a central role in the development of allergic inflammation. Further, our study suggests that functional inhibition of CD23 in the airway is a potential therapeutic approach with which to inhibit the development of asthma.
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spelling pubmed-45752302016-05-01 Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation Palaniyandi, Senthilkumar Liu, Xiaoyang Periasamy, Sivakumar Ma, Aiying Tang, Jin Jenkins, Mark Tuo, Wenbin Song, Wenxia Keegan, Achsah D. Conrad, Daniel H. Zhu, Xiaoping Mucosal Immunol Article The epithelial lining of the airway tract and allergen-specific IgE are considered essential controllers of inflammatory responses to allergens. The human low affinity IgE receptor, CD23 (FcεRII), is capable of transporting IgE or IgE-allergen complexes across the polarized human airway epithelial cell (AEC) monolayer in vitro. However, it remains unknown whether the CD23-dependent IgE transfer pathway in AECs initiates and facilitates allergic inflammation in vivo, and whether inhibition of this pathway attenuates allergic inflammation. To this end, we show that in wild-type (WT) mice, epithelial CD23 transcytosed both IgE and ovalbumin (OVA)-IgE complexes across the airway epithelial barrier, while neither type of transcytosis was observed in CD23 knockout (KO) mice. In chimeric mice, OVA sensitization and aerosol challenge of WT/WT (bone-marrow transfer from the WT to WT) or CD23KO/WT (CD23KO to WT) chimeric mice, which express CD23 on radioresistant airway structural cells (mainly epithelial cells) resulted in airway eosinophilia, including collagen deposition and a significant increase in goblet cells, and increased airway hyperreactivity. In contrast, the absence of CD23 expression on airway structural or epithelial cells, but not on hematopoietic cells, in WT/CD23KO (the WT to CD23KO) chimeric mice significantly reduced OVA-driven allergic airway inflammation. In addition, inhalation of the CD23-blocking B3B4 antibody in sensitized WT mice before or during airway challenge suppressed the salient features of asthma, including bronchial hyperreactivity. Taken together, these results identify a previously unproven mechanism in which epithelial CD23 plays a central role in the development of allergic inflammation. Further, our study suggests that functional inhibition of CD23 in the airway is a potential therapeutic approach with which to inhibit the development of asthma. 2015-03-18 2015-11 /pmc/articles/PMC4575230/ /pubmed/25783969 http://dx.doi.org/10.1038/mi.2015.16 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Palaniyandi, Senthilkumar
Liu, Xiaoyang
Periasamy, Sivakumar
Ma, Aiying
Tang, Jin
Jenkins, Mark
Tuo, Wenbin
Song, Wenxia
Keegan, Achsah D.
Conrad, Daniel H.
Zhu, Xiaoping
Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation
title Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation
title_full Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation
title_fullStr Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation
title_full_unstemmed Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation
title_short Inhibition of CD23-mediated IgE transcytosis suppresses the initiation and development of allergic airway inflammation
title_sort inhibition of cd23-mediated ige transcytosis suppresses the initiation and development of allergic airway inflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4575230/
https://www.ncbi.nlm.nih.gov/pubmed/25783969
http://dx.doi.org/10.1038/mi.2015.16
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