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IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk

BACKGROUND: Mast cell localization within the airway smooth muscle (ASM)-bundle plays an important role in the development of airway hyper-responsiveness (AHR). Genomewide association studies implicate the ‘alarmin’ IL-33 in asthma, but its role in mast cell–ASM interactions is unknown. OBJECTIVES:...

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Autores principales: Kaur, D, Gomez, E, Doe, C, Berair, R, Woodman, L, Saunders, R, Hollins, F, Rose, FR, Amrani, Y, May, R, Kearley, J, Humbles, A, Cohen, ES, Brightling, CE
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4418379/
https://www.ncbi.nlm.nih.gov/pubmed/25683166
http://dx.doi.org/10.1111/all.12593
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author Kaur, D
Gomez, E
Doe, C
Berair, R
Woodman, L
Saunders, R
Hollins, F
Rose, FR
Amrani, Y
May, R
Kearley, J
Humbles, A
Cohen, ES
Brightling, CE
author_facet Kaur, D
Gomez, E
Doe, C
Berair, R
Woodman, L
Saunders, R
Hollins, F
Rose, FR
Amrani, Y
May, R
Kearley, J
Humbles, A
Cohen, ES
Brightling, CE
author_sort Kaur, D
collection PubMed
description BACKGROUND: Mast cell localization within the airway smooth muscle (ASM)-bundle plays an important role in the development of airway hyper-responsiveness (AHR). Genomewide association studies implicate the ‘alarmin’ IL-33 in asthma, but its role in mast cell–ASM interactions is unknown. OBJECTIVES: We examined the expression and functional role of IL-33 in bronchial biopsies of patients with and without asthma, ex vivo ASM, mast cells, cocultured cells and in a mouse model system. METHODS: IL-33 protein expression was assessed in human bronchial tissue from 9 healthy controls, and 18 mild-to-moderate and 12 severe asthmatic patients by immunohistochemistry. IL-33 and ST2 mRNA and protein expression in human-derived ASM, epithelial and mast cells were assessed by qPCR, immunofluorescence and/or flow cytometry and ELISA. Functional assays were used to assess calcium signalling, wound repair, proliferation, apoptosis and contraction. AHR and inflammation were assessed in a mouse model. RESULTS: Bronchial epithelium and ASM expressed IL-33 with the latter in asthma correlating with AHR. ASM and mast cells expressed intracellular IL-33 and ST2. IL-33 stimulated mast cell IL-13 and histamine secretion independent of FcεR1 cross-linking and directly promoted ASM wound repair. Coculture of mast cells with ASM activated by IL-33 increased agonist-induced ASM contraction, and in vivo IL-33 induced AHR in a mouse cytokine installation model; both effects were IL-13 dependent. CONCLUSION: IL-33 directly promotes mast cell activation and ASM wound repair but indirectly promotes ASM contraction via upregulation of mast cell-derived IL-13. This suggests that IL-33 may present an important target to modulate mast cell–ASM crosstalk in asthma.
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spelling pubmed-44183792015-05-06 IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk Kaur, D Gomez, E Doe, C Berair, R Woodman, L Saunders, R Hollins, F Rose, FR Amrani, Y May, R Kearley, J Humbles, A Cohen, ES Brightling, CE Allergy Original Articles BACKGROUND: Mast cell localization within the airway smooth muscle (ASM)-bundle plays an important role in the development of airway hyper-responsiveness (AHR). Genomewide association studies implicate the ‘alarmin’ IL-33 in asthma, but its role in mast cell–ASM interactions is unknown. OBJECTIVES: We examined the expression and functional role of IL-33 in bronchial biopsies of patients with and without asthma, ex vivo ASM, mast cells, cocultured cells and in a mouse model system. METHODS: IL-33 protein expression was assessed in human bronchial tissue from 9 healthy controls, and 18 mild-to-moderate and 12 severe asthmatic patients by immunohistochemistry. IL-33 and ST2 mRNA and protein expression in human-derived ASM, epithelial and mast cells were assessed by qPCR, immunofluorescence and/or flow cytometry and ELISA. Functional assays were used to assess calcium signalling, wound repair, proliferation, apoptosis and contraction. AHR and inflammation were assessed in a mouse model. RESULTS: Bronchial epithelium and ASM expressed IL-33 with the latter in asthma correlating with AHR. ASM and mast cells expressed intracellular IL-33 and ST2. IL-33 stimulated mast cell IL-13 and histamine secretion independent of FcεR1 cross-linking and directly promoted ASM wound repair. Coculture of mast cells with ASM activated by IL-33 increased agonist-induced ASM contraction, and in vivo IL-33 induced AHR in a mouse cytokine installation model; both effects were IL-13 dependent. CONCLUSION: IL-33 directly promotes mast cell activation and ASM wound repair but indirectly promotes ASM contraction via upregulation of mast cell-derived IL-13. This suggests that IL-33 may present an important target to modulate mast cell–ASM crosstalk in asthma. Blackwell Publishing Ltd 2015-05 2015-03-16 /pmc/articles/PMC4418379/ /pubmed/25683166 http://dx.doi.org/10.1111/all.12593 Text en © 2015 The Authors. © Journal compilation 2015 Blackwell Munksgaard. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Kaur, D
Gomez, E
Doe, C
Berair, R
Woodman, L
Saunders, R
Hollins, F
Rose, FR
Amrani, Y
May, R
Kearley, J
Humbles, A
Cohen, ES
Brightling, CE
IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk
title IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk
title_full IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk
title_fullStr IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk
title_full_unstemmed IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk
title_short IL-33 drives airway hyper-responsiveness through IL-13-mediated mast cell: airway smooth muscle crosstalk
title_sort il-33 drives airway hyper-responsiveness through il-13-mediated mast cell: airway smooth muscle crosstalk
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4418379/
https://www.ncbi.nlm.nih.gov/pubmed/25683166
http://dx.doi.org/10.1111/all.12593
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