4.5 Article

Gene expression profile of angiogenic factors in pulmonary arteries in COPD: relationship with vascular remodeling

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajplung.00261.2015

关键词

angiopoietin; pulmonary artery; COPD; vascular remodeling; gene expression profile

资金

  1. Fondo de Investigacion Sanitaria, Instituto de Salud Carlos III [FIS PI10/02175, PI13/00836]
  2. Fundacio la Marato de TV3 [081310]
  3. Beca Ferrer FUCAP
  4. Instituto de Salud Carlos III
  5. Hospital Clinic [R5-HCPB]
  6. Institut d'Investigacions Biomediques August Pi i Sunyer-Biotrack postdoctoral fellowship

向作者/读者索取更多资源

Pulmonary vessel remodeling in chronic obstructive pulmonary disease (COPD) involves changes in smooth muscle cell proliferation, which are highly dependent on the coordinated interaction of angiogenic-related growth factors. The purpose of the study was to investigate, in isolated pulmonary arteries (PA) from patients with COPD, the gene expression of 46 genes known to be modulators of the angiogenic process and/or involved in smooth muscle cell proliferation and to relate it to vascular remodeling. PA segments were isolated from 29 patients and classified into tertiles, according to intimal thickness. After RNA extraction, the gene expression was assessed by RT-PCR using TaqMan low-density arrays. The univariate analysis only showed upregulation of angiopoietin-2 (ANGPT-2) in remodeled PA (P < 0.05). The immunohistochemical expression of ANGPT-2 correlated with intimal enlargement (r = 0.42, P < 0.05). However, a combination of 10 factors in a multivariate discriminant analysis model explained up to 96% of the classification of the arteries. A network analysis of 46 genes showed major decentralization. In this network, the metalloproteinase-2 (MMP-2) was shown to be the bridge between intimal enlargement and fibrogenic factors. In COPD patients, plasma levels of ANGPT-2 were higher in current smokers or those with pulmonary hypertension. We conclude that an imbalance in ANGPT-2, combined with related factors such as VEGF, beta-catenin, and MMP-2, may partially explain the structural derangements of the arterial wall. MMP-2 may act as a bridge channeling actions from the main fibrogenic factors.

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