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PMID: 21752437 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Defective epithelial barrier function in asthma.

The Journal of allergy and clinical immunology ·Vol. 128 ·No. 3 ·2011-09-00 ·Pages 549-56.e1-12

Xiao C, Puddicombe SM, Field S, Haywood J, Broughton-Head V, Puxeddu I, Haitchi HM, Vernon-Wilson E, Sammut D, Bedke N, Cremin C, Sones J, Djukanović R, Howarth PH, Collins JE, Holgate ST, Monk P, Davies DE

Abstract

Asthma is a complex disease involving gene and environment interactions. Although atopy is a strong predisposing risk factor for asthma, local tissue susceptibilities are required for disease expression. The bronchial epithelium forms the interface with the external environment and is pivotally involved in controlling tissue homeostasis through provision of a physical barrier controlled by tight junction (TJ) complexes. To explain the link between environment exposures and airway vulnerability, we hypothesized that epithelial TJs are abnormal in asthma, leading to increased susceptibility to environmental agents. Localization of TJs in bronchial biopsies and differentiated epithelial cultures was assessed by electron microscopy or immunostaining. Baseline permeability and the effect of cigarette smoke and growth factor were assessed by measurement of transepithelial electrical resistance and passage of fluorescently labeled dextrans. By using immunostaining, we found that bronchial biopsies from asthmatic subjects displayed patchy disruption of TJs. In differentiated bronchial epithelial cultures, TJ formation and transepithelial electrical resistance were significantly lower (P < .05) in cultures from asthmatic donors (n = 43) than from normal controls (n = 40) and inversely correlated with macromolecular permeability. Cultures from asthmatic donors were also more sensitive to disruption by cigarette smoke extract. Epidermal growth factor enhanced basal TJ formation in cultures from asthmatic subjects (P < .01) and protected against cigarette smoke-induced barrier disruption (P < .01). Our results show that the bronchial epithelial barrier in asthma is compromised. This defect may facilitate the passage of allergens and other agents into the airway tissue, leading to immune activation and may thus contribute to the end organ expression of asthma.

MeSH Terms
Animals Asthma/pathology Biopsy Bronchi/cytology,metabolism,pathology Cell Membrane Permeability/drug effects Cells, Cultured Dextrans/metabolism Epidermal Growth Factor/metabolism Epithelial Cells/metabolism,pathology Humans Mice Microscopy, Electron Smoking Tight Junctions/metabolism,pathology Tobacco
Chemicals
Dextrans Epidermal Growth Factor
Authors & Affiliations
18 authors, click to expand affiliations / ORCID
Xiao Chang
Synairgen Research Ltd, Southampton General Hospital, Southampton, United Kingdom.
Puddicombe Sarah M
Field Sarah
Haywood Joel
Broughton-Head Victoria
Puxeddu Ilaria
Haitchi Hans Michael
Vernon-Wilson Elizabeth
Sammut David
Bedke Nicole
Cremin Catherine
Sones Jody
Djukanović Ratko
Howarth Peter H
Collins Jane E
Holgate Stephen T
Monk Phillip
Davies Donna E
Article Info
Journal
The Journal of allergy and clinical immunology
Abbr.
J Allergy Clin Immunol
ISSN
1097-6825
Published
2011-09-00
Epub
2011-00-12
Pages
549-56.e1-12
Language
English
Region
United States
NLM ID
1275002
Subset
IM
Grants
Medical Research Council · G0800766 · United Kingdom
Medical Research Council · G19/34 · United Kingdom
Corrections
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