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Dysregulation of pulmonary elastin synthesis and assembly in preterm lambs with chronic lung disease

  • Richard D. Bland
  • , Liwen Xu
  • , Robert Ertsey
  • , Marlene Rabinovitch
  • , Kurt H. Albertine
  • , Karen A. Wynn
  • , Vasanth H. Kumar
  • , Rita M. Ryan
  • , Daniel D. Swartz
  • , Katalin Csiszar
  • , Keith S.K. Fong
  • Stanford University
  • University of Utah
  • SUNY Buffalo
  • University of Hawai'i at Mānoa

Research output: Contribution to journalArticlepeer-review

106 Scopus citations

Abstract

Failed alveolar formation and excess, disordered elastin are key features of neonatal chronic lung disease (CLD). We previously found fewer alveoli and more elastin in lungs of preterm compared with term lambs that had mechanical ventilation (MV) with O2-rich gas for 3 wk (MV-3 wk). We hypothesized that, in preterm more than in term lambs, MV-3 wk would reduce lung expression of growth factors that regulate alveolarization (VEGF, PDGF-A) and increase lung expression of growth factors [transforming growth factor (TGF)-α, TGF-β1] and matrix molecules (tropoelastin, fibrillin-1, fibulin-5, lysyl oxidases) that regulate elastin synthesis and assembly. We measured lung expression of these genes in preterm and term lambs after MV for 1 day, 3 days, or 3 wk, and in fetal controls. Lung mRNA for VEGF, PDGF-A, and their receptors (VEGF-R2, PDGF-Rα) decreased in preterm and term lambs after MV-3 wk, with reduced lung content of the relevant proteins in preterm lambs with CLD. TGF-α and TGF-β1 expression increased only in lungs of preterm lambs. Tropoelastin mRNA increased more with MV of preterm than term lambs, and expression levels remained high in lambs with CLD. In contrast, fibrillin-1 and lysyl oxidaselike-1 mRNA increased transiently, and lung abundance of other elastin-assembly genes/proteins was unchanged (fibulin-5) or reduced (lysyl oxidase) in preterm lambs with CLD. Thus MV-3 wk reduces lung expression of growth factors that regulate alveolarization and differentially alters expression of growth factors and matrix proteins that regulate elastin assembly. These changes, coupled with increased lung elastase activity measured in preterm lambs after MV for 1-3 days, likely contribute to CLD.

Original languageEnglish
Pages (from-to)L1370-L1384
JournalAmerican Journal of Physiology - Lung Cellular and Molecular Physiology
Volume292
Issue number6
DOIs
StatePublished - Jun 2007

Keywords

  • Alveolar, lung capillary, and elastic fiber formation
  • Bronchopulmonary dysplasia
  • Lung development
  • Mechanical ventilation
  • PDGF
  • TGF-α
  • TGF-β1
  • VEGF

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