Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD

<p>Abstract</p> <p>Background</p> <p>Chronic Obstructive Pulmonary Disease (COPD) is characterized by defective extracellular matrix (ECM) turnover as a result of prolonged cigarette smoking. Fibroblasts have a central role in ECM turnover. The TGFβ induced Smad pathway...

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Main Authors: Noordhoek Jacobien A, Jonker Marnix R, Postma Dirkje S, Zandvoort Andre, Vos Johannes TWM, Timens Wim
Format: Article
Language:English
Published: BMC 2008-12-01
Series:Respiratory Research
Online Access:http://respiratory-research.com/content/9/1/83
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spelling doaj-cec7cb9a147f4b2f966f31114687ca772020-11-24T21:40:04ZengBMCRespiratory Research1465-99212008-12-01918310.1186/1465-9921-9-83Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPDNoordhoek Jacobien AJonker Marnix RPostma Dirkje SZandvoort AndreVos Johannes TWMTimens Wim<p>Abstract</p> <p>Background</p> <p>Chronic Obstructive Pulmonary Disease (COPD) is characterized by defective extracellular matrix (ECM) turnover as a result of prolonged cigarette smoking. Fibroblasts have a central role in ECM turnover. The TGFβ induced Smad pathway provides intracellular signals to regulate ECM production. We address the following hypothesis: fibroblasts have abnormal expression of genes in the Smad pathway in COPD, resulting in abnormal proteoglycan modulation, the ground substance of ECM.</p> <p>Methods</p> <p>We compared gene expression of the Smad pathway at different time points after stimulation with TGFβ, TNF or cigarette smoke extract (CSE) in pulmonary fibroblasts of GOLD stage II and IV COPD patients, and controls.</p> <p>Results</p> <p>Without stimulation, all genes were similarly expressed in control and COPD fibroblasts. TGFβ stimulation: downregulation of Smad3 and upregulation of Smad7 occurred in COPD and control fibroblasts, indicating a negative feedback loop upon TGFβ stimulation. CSE hardly influenced gene expression of the TGFβ-Smad pathway in control fibroblasts, whereas it reduced Smad3 and enhanced Smad7 gene expression in COPD fibroblasts. Furthermore, decorin gene expression decreased by all stimulations in COPD but not in control fibroblasts.</p> <p>Conclusion</p> <p>Fibroblasts of COPD patients and controls differ in their regulation of the Smad pathway, the contrast being most pronounced under CSE exposure. This aberrant responsiveness of COPD fibroblasts to CSE might result in an impaired tissue repair capability and is likely important with regard to the question why only a subset of smokers demonstrates an excess ECM destruction under influence of cigarette smoking.</p> http://respiratory-research.com/content/9/1/83
collection DOAJ
language English
format Article
sources DOAJ
author Noordhoek Jacobien A
Jonker Marnix R
Postma Dirkje S
Zandvoort Andre
Vos Johannes TWM
Timens Wim
spellingShingle Noordhoek Jacobien A
Jonker Marnix R
Postma Dirkje S
Zandvoort Andre
Vos Johannes TWM
Timens Wim
Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD
Respiratory Research
author_facet Noordhoek Jacobien A
Jonker Marnix R
Postma Dirkje S
Zandvoort Andre
Vos Johannes TWM
Timens Wim
author_sort Noordhoek Jacobien A
title Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD
title_short Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD
title_full Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD
title_fullStr Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD
title_full_unstemmed Smad gene expression in pulmonary fibroblasts: indications for defective ECM repair in COPD
title_sort smad gene expression in pulmonary fibroblasts: indications for defective ecm repair in copd
publisher BMC
series Respiratory Research
issn 1465-9921
publishDate 2008-12-01
description <p>Abstract</p> <p>Background</p> <p>Chronic Obstructive Pulmonary Disease (COPD) is characterized by defective extracellular matrix (ECM) turnover as a result of prolonged cigarette smoking. Fibroblasts have a central role in ECM turnover. The TGFβ induced Smad pathway provides intracellular signals to regulate ECM production. We address the following hypothesis: fibroblasts have abnormal expression of genes in the Smad pathway in COPD, resulting in abnormal proteoglycan modulation, the ground substance of ECM.</p> <p>Methods</p> <p>We compared gene expression of the Smad pathway at different time points after stimulation with TGFβ, TNF or cigarette smoke extract (CSE) in pulmonary fibroblasts of GOLD stage II and IV COPD patients, and controls.</p> <p>Results</p> <p>Without stimulation, all genes were similarly expressed in control and COPD fibroblasts. TGFβ stimulation: downregulation of Smad3 and upregulation of Smad7 occurred in COPD and control fibroblasts, indicating a negative feedback loop upon TGFβ stimulation. CSE hardly influenced gene expression of the TGFβ-Smad pathway in control fibroblasts, whereas it reduced Smad3 and enhanced Smad7 gene expression in COPD fibroblasts. Furthermore, decorin gene expression decreased by all stimulations in COPD but not in control fibroblasts.</p> <p>Conclusion</p> <p>Fibroblasts of COPD patients and controls differ in their regulation of the Smad pathway, the contrast being most pronounced under CSE exposure. This aberrant responsiveness of COPD fibroblasts to CSE might result in an impaired tissue repair capability and is likely important with regard to the question why only a subset of smokers demonstrates an excess ECM destruction under influence of cigarette smoking.</p>
url http://respiratory-research.com/content/9/1/83
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