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VEGF in the lung: a role for novel isoforms

Vascular endothelial cell growth factor (VEGF) is a potent mitogen and permogen that increases in the plasma and decreases in the alveolar space in respiratory diseases such as acute respiratory distress syndrome (ARDS). This observation has led to controversy over the role of this potent molecule i...

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Autores principales: Varet, Julia, Douglas, Samantha K., Gilmartin, Laura, Medford, Andrew R. L., Bates, David O., Harper, Steven J., Millar, Ann B.
Formato: Texto
Lenguaje:English
Publicado: American Physiological Society 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2886605/
https://www.ncbi.nlm.nih.gov/pubmed/20228180
http://dx.doi.org/10.1152/ajplung.00353.2009
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author Varet, Julia
Douglas, Samantha K.
Gilmartin, Laura
Medford, Andrew R. L.
Bates, David O.
Harper, Steven J.
Millar, Ann B.
author_facet Varet, Julia
Douglas, Samantha K.
Gilmartin, Laura
Medford, Andrew R. L.
Bates, David O.
Harper, Steven J.
Millar, Ann B.
author_sort Varet, Julia
collection PubMed
description Vascular endothelial cell growth factor (VEGF) is a potent mitogen and permogen that increases in the plasma and decreases in the alveolar space in respiratory diseases such as acute respiratory distress syndrome (ARDS). This observation has led to controversy over the role of this potent molecule in lung physiology and disease. We hypothesized that some of the VEGF previously detected in normal lung may be of the anti-angiogenic family (VEGF(xxx)b) with significant potential effects on VEGF bioactivity. VEGF(xxx)b protein expression was assessed by indirect immunohistochemistry in normal and ARDS tissue. Expression of VEGF(xxx)b was also detected by immunoblotting in normal lung tissue, primary human alveolar type II (ATII) cells, and bronchoalveolar lavage (BAL) fluid in normal subjects and by ELISA in normal, “at risk,” and ARDS subjects. The effect of VEGF(165) and VEGF(165)b on both human primary endothelial cells and alveolar epithelial cell proliferation was assessed by [(3)H]thymidine uptake. We found that VEGF(165)b was widely expressed in normal healthy lung tissue but is reduced in ARDS lung. VEGF(121)b and VEGF(165)b were present in whole lung, BAL, and ATII lysate. The proliferative effect of VEGF(165) on both human primary endothelial cells and human alveolar epithelial cells was significantly inhibited by VEGF(165)b (P < 0.01). These data demonstrate that the novel VEGF(xxx)b family members are expressed in normal lung and are reduced in ARDS. A specific functional effect on primary human endothelial and alveolar epithelial cells has also been shown. These data suggest that the VEGF(xxx)b family may have a role in repair after lung injury.
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spelling pubmed-28866052010-11-11 VEGF in the lung: a role for novel isoforms Varet, Julia Douglas, Samantha K. Gilmartin, Laura Medford, Andrew R. L. Bates, David O. Harper, Steven J. Millar, Ann B. Am J Physiol Lung Cell Mol Physiol Articles Vascular endothelial cell growth factor (VEGF) is a potent mitogen and permogen that increases in the plasma and decreases in the alveolar space in respiratory diseases such as acute respiratory distress syndrome (ARDS). This observation has led to controversy over the role of this potent molecule in lung physiology and disease. We hypothesized that some of the VEGF previously detected in normal lung may be of the anti-angiogenic family (VEGF(xxx)b) with significant potential effects on VEGF bioactivity. VEGF(xxx)b protein expression was assessed by indirect immunohistochemistry in normal and ARDS tissue. Expression of VEGF(xxx)b was also detected by immunoblotting in normal lung tissue, primary human alveolar type II (ATII) cells, and bronchoalveolar lavage (BAL) fluid in normal subjects and by ELISA in normal, “at risk,” and ARDS subjects. The effect of VEGF(165) and VEGF(165)b on both human primary endothelial cells and alveolar epithelial cell proliferation was assessed by [(3)H]thymidine uptake. We found that VEGF(165)b was widely expressed in normal healthy lung tissue but is reduced in ARDS lung. VEGF(121)b and VEGF(165)b were present in whole lung, BAL, and ATII lysate. The proliferative effect of VEGF(165) on both human primary endothelial cells and human alveolar epithelial cells was significantly inhibited by VEGF(165)b (P < 0.01). These data demonstrate that the novel VEGF(xxx)b family members are expressed in normal lung and are reduced in ARDS. A specific functional effect on primary human endothelial and alveolar epithelial cells has also been shown. These data suggest that the VEGF(xxx)b family may have a role in repair after lung injury. American Physiological Society 2010-06 2010-03-12 /pmc/articles/PMC2886605/ /pubmed/20228180 http://dx.doi.org/10.1152/ajplung.00353.2009 Text en Copyright © 2010 the American Physiological Society This document may be redistributed and reused, subject to www.the-aps.org/publications/journals/funding_addendum_policy.htm (http://www.the-aps.org/publications/journals/funding_addendum_policy.htm) .
spellingShingle Articles
Varet, Julia
Douglas, Samantha K.
Gilmartin, Laura
Medford, Andrew R. L.
Bates, David O.
Harper, Steven J.
Millar, Ann B.
VEGF in the lung: a role for novel isoforms
title VEGF in the lung: a role for novel isoforms
title_full VEGF in the lung: a role for novel isoforms
title_fullStr VEGF in the lung: a role for novel isoforms
title_full_unstemmed VEGF in the lung: a role for novel isoforms
title_short VEGF in the lung: a role for novel isoforms
title_sort vegf in the lung: a role for novel isoforms
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2886605/
https://www.ncbi.nlm.nih.gov/pubmed/20228180
http://dx.doi.org/10.1152/ajplung.00353.2009
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