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PMID: 24439582 Published · ppublish English Journal Article

Pressure induced lung injury in a novel in vitro model of the alveolar interface: protective effect of dexamethasone.

Journal of pediatric surgery ·Vol. 49 ·No. 1 ·2014-01-00 ·Pages 61-5; discussion 65

Nalayanda DD, Fulton WB, Colombani PM, Wang TH, Abdullah F

Abstract

The lungs of infants born with congenital diaphragmatic hernia suffer from immaturity as well as the short and long term consequences of ventilator-induced lung injury, including chronic lung disease. Antenatal and postnatal steroids are among current strategies promoted to treat premature lungs and limit long term morbidity. Although studied in whole-animal models, insight into ventilator-induced injury at the alveolar-capillary interface as well as the benefits of steroids, remains limited. The present study utilizes a multi-fluidic in vitro model of the alveolar-interface to analyze membrane disruption from compressive aerodynamic forces in dexamethasone-treated cultures. Human alveolar epithelial cell lines, H441 and A549, were cultured in a custom-built chamber under constant aerodynamic shear followed by introduction of pressure stimuli with and without dexamethasone (0.1μM). On-chip bioelectrical measurements were noted to track changes to the cellular surface and live-dead assay to ascertain cellular viability. Pressure-exposed alveolar cultures demonstrated a significant drop in TEER that was less prominent with an underlying extracellular-matrix coating. Addition of dexamethasone resulted in increased alveolar layer integrity demonstrated by higher TEER values. Furthermore, dexamethasone-treated cells exhibited faster recovery, and the effects of pressure appeared to be mitigated in both cell types. Using a novel in vitro model of the alveolus, we demonstrate a dose-response relationship between pressure application and loss of alveolar layer integrity. This effect appears to be alleviated by dexamethasone and matrix sub-coating.

Keywords
Air-interface culture Alveolar cells Dexamethasone Pressure-induced injury
MeSH Terms
Air Air Pressure Barotrauma/prevention & control Basement Membrane/drug effects Cell Culture Techniques/instrumentation Cell Line Cell Membrane/drug effects Cell Survival Collagen Dexamethasone/administration & dosage,pharmacology Dose-Response Relationship, Drug Drug Combinations Drug Evaluation, Preclinical Epithelial Cells/cytology,drug effects Humans Laminin Proteoglycans Pulmonary Alveoli/cytology,drug effects Rheology/instrumentation Surface Properties Ventilator-Induced Lung Injury/prevention & control
Chemicals
Drug Combinations Laminin Proteoglycans matrigel Dexamethasone Collagen
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Nalayanda Divya D
Division Pediatric Surgery, Johns Hopkins Medical Institutions, Baltimore MD; Department of Biomedical Engineering, Johns Hopkins University, Baltimore MD.
Fulton William B
Division Pediatric Surgery, Johns Hopkins Medical Institutions, Baltimore MD.
Colombani Paul M
Division Pediatric Surgery, Johns Hopkins Medical Institutions, Baltimore MD.
Wang Tza-Huei
Department of Biomedical Engineering, Johns Hopkins University, Baltimore MD; Department of Mechanical Engineering, Johns Hopkins University, Baltimore MD.
Abdullah Fizan
Division Pediatric Surgery, Johns Hopkins Medical Institutions, Baltimore MD. Electronic address: [email protected].
Article Info
Journal
Journal of pediatric surgery
Abbr.
J Pediatr Surg
ISSN
1531-5037
Published
2014-01-00
Epub
2013-00-08
Pages
61-5; discussion 65
Language
English
Region
United States
NLM ID
0052631
Subset
IM
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