Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma

Abstract Interleukin 33 (IL-33) represents a potential link between the airway epithelium and induction of Th2-type inflammatory responses associated with the development of asthma. This study investigated the potential of IL-33 to exacerbate antigen driven asthma responses. An ovalbumin (OVA) asthm...

Full description

Bibliographic Details
Main Authors: L. C. Sjöberg, A. Zoltowska Nilsson, Y. Lei, J. A. Gregory, M. Adner, G. P. Nilsson
Format: Article
Language:English
Published: Nature Publishing Group 2017-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-03674-0
id doaj-eec32b9086374a47a4dc5ec60dfead42
record_format Article
spelling doaj-eec32b9086374a47a4dc5ec60dfead422020-12-08T00:26:24ZengNature Publishing GroupScientific Reports2045-23222017-06-017111010.1038/s41598-017-03674-0Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthmaL. C. Sjöberg0A. Zoltowska Nilsson1Y. Lei2J. A. Gregory3M. Adner4G. P. Nilsson5Unit of Experimental Asthma and Allergy Research, Institute of Environmental Medicine, Karolinska University HospitalImmunology and Allergy Unit, Department of Medicine, Karolinska University HospitalImmunology and Allergy Unit, Department of Medicine, Karolinska University HospitalUnit of Experimental Asthma and Allergy Research, Institute of Environmental Medicine, Karolinska University HospitalUnit of Experimental Asthma and Allergy Research, Institute of Environmental Medicine, Karolinska University HospitalImmunology and Allergy Unit, Department of Medicine, Karolinska University HospitalAbstract Interleukin 33 (IL-33) represents a potential link between the airway epithelium and induction of Th2-type inflammatory responses associated with the development of asthma. This study investigated the potential of IL-33 to exacerbate antigen driven asthma responses. An ovalbumin (OVA) asthma model was used in which sensitized C57BL/6 mice were exposed to IL-33 before each OVA challenge. IL-33 given to sensitized mice acted synergistically with antigen and aggravated airway inflammation, hyperresponsiveness and remodeling compared with mice that were only OVA sensitized and challenged and mice that were only exposed to IL-33. Elevated levels of local and systemic mast cell protease mMCP-1, as well as antigen-specific IgE production, were observed following IL-33 administration to sensitized mice. Similarly, exposing OVA-sensitized mice to IL-33 increased the Th2 cytokine levels, including IL-4, IL-5 and IL-13. Furthermore, IL-33 and OVA administration to OVA-sensitized mice increased ILC2s in the lung, suggesting a role for ILC2s in IL-33-mediated exacerbation of OVA-induced airway responses. Collectively, these findings show that IL-33 aggravates important features of antigen-driven asthma, which may have implications for asthma exacerbations.https://doi.org/10.1038/s41598-017-03674-0
collection DOAJ
language English
format Article
sources DOAJ
author L. C. Sjöberg
A. Zoltowska Nilsson
Y. Lei
J. A. Gregory
M. Adner
G. P. Nilsson
spellingShingle L. C. Sjöberg
A. Zoltowska Nilsson
Y. Lei
J. A. Gregory
M. Adner
G. P. Nilsson
Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
Scientific Reports
author_facet L. C. Sjöberg
A. Zoltowska Nilsson
Y. Lei
J. A. Gregory
M. Adner
G. P. Nilsson
author_sort L. C. Sjöberg
title Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
title_short Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
title_full Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
title_fullStr Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
title_full_unstemmed Interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
title_sort interleukin 33 exacerbates antigen driven airway hyperresponsiveness, inflammation and remodeling in a mouse model of asthma
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-06-01
description Abstract Interleukin 33 (IL-33) represents a potential link between the airway epithelium and induction of Th2-type inflammatory responses associated with the development of asthma. This study investigated the potential of IL-33 to exacerbate antigen driven asthma responses. An ovalbumin (OVA) asthma model was used in which sensitized C57BL/6 mice were exposed to IL-33 before each OVA challenge. IL-33 given to sensitized mice acted synergistically with antigen and aggravated airway inflammation, hyperresponsiveness and remodeling compared with mice that were only OVA sensitized and challenged and mice that were only exposed to IL-33. Elevated levels of local and systemic mast cell protease mMCP-1, as well as antigen-specific IgE production, were observed following IL-33 administration to sensitized mice. Similarly, exposing OVA-sensitized mice to IL-33 increased the Th2 cytokine levels, including IL-4, IL-5 and IL-13. Furthermore, IL-33 and OVA administration to OVA-sensitized mice increased ILC2s in the lung, suggesting a role for ILC2s in IL-33-mediated exacerbation of OVA-induced airway responses. Collectively, these findings show that IL-33 aggravates important features of antigen-driven asthma, which may have implications for asthma exacerbations.
url https://doi.org/10.1038/s41598-017-03674-0
work_keys_str_mv AT lcsjoberg interleukin33exacerbatesantigendrivenairwayhyperresponsivenessinflammationandremodelinginamousemodelofasthma
AT azoltowskanilsson interleukin33exacerbatesantigendrivenairwayhyperresponsivenessinflammationandremodelinginamousemodelofasthma
AT ylei interleukin33exacerbatesantigendrivenairwayhyperresponsivenessinflammationandremodelinginamousemodelofasthma
AT jagregory interleukin33exacerbatesantigendrivenairwayhyperresponsivenessinflammationandremodelinginamousemodelofasthma
AT madner interleukin33exacerbatesantigendrivenairwayhyperresponsivenessinflammationandremodelinginamousemodelofasthma
AT gpnilsson interleukin33exacerbatesantigendrivenairwayhyperresponsivenessinflammationandremodelinginamousemodelofasthma
_version_ 1724396404537819136