4.7 Article

Decreased Fibronectin Production Significantly Contributes to Dysregulated Repair of Asthmatic Epithelium

出版社

AMER THORACIC SOC
DOI: 10.1164/rccm.200907-1071OC

关键词

fibronectin; asthma; epithelium; wound repair; inflammation

资金

  1. National Health and Medical Research Council of Australia [303145, 458513]
  2. Child Health Research foundation of Western Australia
  3. Asthma Foundation of Western Australia
  4. National Institutes of Health [R01HL089215]
  5. University of Washington NIEHS sponsored Center for Ecogenetics and Environmental Health [P30ES07033]
  6. Canadian Institutes of Health research [MOP-82745]
  7. NHMRC
  8. Canada Research Chairs program
  9. Michael Smith Foundation for Health Research
  10. Wolfe and Gita Churg Foundation
  11. Corporate Office and Science and Technology at Johnson and Johnson

向作者/读者索取更多资源

Rationale: Damage to airway epithelium is followed by deposition of extracellular matrix (ECM) and migration of adjacent epithelial cells. We have shown that epithelial cells from children with asthma fail to heal a wound in vitro. Objectives: To determine whether dysregulated ECM production by the epithelium plays a role in aberrant repair in asthma. Methods: Airway epithelial cells (AEC) from children with asthma (n = 36), healthy atopic control subjects (n = 23), and healthy nonatopic control subjects (n = 53) were investigated by microarray, gene expression and silencing, transcript regulation analysis, and ability to close mechanical wounds. Measurements and Main Results: Time to repair a mechanical wound in vitro by AEC from healthy and atopic children was not significantly different and both were faster than AEC from children with asthma. Microarray analysis revealed differential expression of multiple gene sets associated with repair and remodeling in asthmatic AEC. Fibronectin (FN) was the only ECM component whose expression was significantly lower in asthmatic AEC. Expression differences were verified by quantitative polymerase chain reaction and ELISA, and reduced FN expression persisted in asthmatic cells over passage. Silencing of FN expression in nonasthmatic AEC inhibited wound repair, whereas addition of FN to asthmatic AEC restored reparative capacity. Asthmatic AEC failed to synthesize FN in response to wounding or cytokine/growth factor stimulation. Exposure to 5', 2'deoxyazacytidine had no effect on FN expression and subsequent analysis of the FN promoter did not show evidence of DNA methylation. Conclusions: These data show that the reduced capacity of asthmatic epithelial cells to secrete FN is an important contributor to the dysregulated AEC repair observed in these cells.

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