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Ozone exposure induces respiratory barrier biphasic injury and inflammation controlled by IL-33.
Michaudel, Chloé; Mackowiak, Claire; Maillet, Isabelle; Fauconnier, Louis; Akdis, Cezmi A; Sokolowska, Milena; Dreher, Anita; Tan, Hern-Tze Tina; Quesniaux, Valérie F; Ryffel, Bernhard; Togbe, Dieudonnée.
Afiliação
  • Michaudel C; Laboratory of Experimental and Molecular Immunology and Neurogenetics (INEM), UMR 7355 CNRS-University of Orleans, Orleans, France.
  • Mackowiak C; Laboratory of Experimental and Molecular Immunology and Neurogenetics (INEM), UMR 7355 CNRS-University of Orleans, Orleans, France.
  • Maillet I; Laboratory of Experimental and Molecular Immunology and Neurogenetics (INEM), UMR 7355 CNRS-University of Orleans, Orleans, France.
  • Fauconnier L; ArtImmune SAS, Orleans, France.
  • Akdis CA; Swiss Institute for Allergy and Asthma Research and Christine Kühne-Center for Allergy Research and Education (CK-CARE), Davos, Switzerland.
  • Sokolowska M; Swiss Institute for Allergy and Asthma Research and Christine Kühne-Center for Allergy Research and Education (CK-CARE), Davos, Switzerland.
  • Dreher A; Swiss Institute for Allergy and Asthma Research and Christine Kühne-Center for Allergy Research and Education (CK-CARE), Davos, Switzerland.
  • Tan HT; Swiss Institute for Allergy and Asthma Research and Christine Kühne-Center for Allergy Research and Education (CK-CARE), Davos, Switzerland; Department of Immunology, School of Medical Sciences, Universiti Sains Malaysia, Kubang Kerian, Malaysia.
  • Quesniaux VF; Laboratory of Experimental and Molecular Immunology and Neurogenetics (INEM), UMR 7355 CNRS-University of Orleans, Orleans, France.
  • Ryffel B; Laboratory of Experimental and Molecular Immunology and Neurogenetics (INEM), UMR 7355 CNRS-University of Orleans, Orleans, France; Institute of Infectious Diseases and Molecular Medicine (IDM), Division of Immunology and South African Medical Research Council (SAMRC), Immunology and Infectious Dise
  • Togbe D; Laboratory of Experimental and Molecular Immunology and Neurogenetics (INEM), UMR 7355 CNRS-University of Orleans, Orleans, France; ArtImmune SAS, Orleans, France. Electronic address: dtogbe@cnrs-orleans.fr.
J Allergy Clin Immunol ; 142(3): 942-958, 2018 09.
Article em En | MEDLINE | ID: mdl-29331644
BACKGROUND: IL-33 plays a critical role in regulation of tissue homeostasis, injury, and repair. Whether IL-33 regulates neutrophil recruitment and functions independently of airways hyperresponsiveness (AHR) in the setting of ozone-induced lung injury and inflammation is unclear. OBJECTIVE: We sought to examine the role of the IL-33/ST2 axis in lung inflammation on acute ozone exposure in mice. METHODS: ST2- and Il33-deficient, IL-33 citrine reporter, and C57BL/6 (wild-type) mice underwent a single ozone exposure (1 ppm for 1 hour) in all studies. Cell recruitment in lung tissue and the bronchoalveolar space, inflammatory parameters, epithelial barrier damage, and airway hyperresponsiveness (AHR) were determined. RESULTS: We report that a single ozone exposure causes rapid disruption of the epithelial barrier within 1 hour, followed by a second phase of respiratory barrier injury with increased neutrophil recruitment, reactive oxygen species production, AHR, and IL-33 expression in epithelial and myeloid cells in wild-type mice. In the absence of IL-33 or IL-33 receptor/ST2, epithelial cell injury with protein leak and myeloid cell recruitment and inflammation are further increased, whereas the tight junction proteins E-cadherin and zonula occludens 1 and reactive oxygen species expression in neutrophils and AHR are diminished. ST2 neutralization recapitulated the enhanced ozone-induced neutrophilic inflammation. However, myeloid cell depletion using GR-1 antibody reduced ozone-induced lung inflammation, epithelial cell injury, and protein leak, whereas administration of recombinant mouse IL-33 reduced neutrophil recruitment in Il33-deficient mice. CONCLUSION: Data demonstrate that ozone causes an immediate barrier injury that precedes myeloid cell-mediated inflammatory injury under the control of the IL-33/ST2 axis. Thus IL-33/ST2 signaling is critical for maintenance of intact epithelial barrier and inflammation.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ozônio / Oxidantes / Poluentes Atmosféricos / Lesão Pulmonar / Interleucina-33 / Proteína 1 Semelhante a Receptor de Interleucina-1 Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ozônio / Oxidantes / Poluentes Atmosféricos / Lesão Pulmonar / Interleucina-33 / Proteína 1 Semelhante a Receptor de Interleucina-1 Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article