Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth

<p>Abstract</p> <p>Although blood vessel growth occurs readily in the systemic bronchial circulation, angiogenesis in the pulmonary circulation is rare. Compensatory lung growth after pneumonectomy is an experimental model with presumed alveolar capillary angiogenesis. To investiga...

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Main Authors: Konerding Moritz A, Houdek Jan, Collings-Simpson Dinee, Lee Grace S, Gibney Barry C, Chamoto Kenji, Lin Miao, Tsuda Akira, Mentzer Steven J
Format: Article
Language:English
Published: BMC 2011-07-01
Series:Respiratory Research
Online Access:http://respiratory-research.com/content/12/1/98
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spelling doaj-3b97be9869c0496cb74a286e975fd0282020-11-25T02:28:17ZengBMCRespiratory Research1465-99212011-07-011219810.1186/1465-9921-12-98Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growthKonerding Moritz AHoudek JanCollings-Simpson DineeLee Grace SGibney Barry CChamoto KenjiLin MiaoTsuda AkiraMentzer Steven J<p>Abstract</p> <p>Although blood vessel growth occurs readily in the systemic bronchial circulation, angiogenesis in the pulmonary circulation is rare. Compensatory lung growth after pneumonectomy is an experimental model with presumed alveolar capillary angiogenesis. To investigate the genes participating in murine neoalveolarization, we studied the expression of angiogenesis genes in lung endothelial cells. After left pneumonectomy, the remaining right lung was examined on days 3, 6, 14 and 21days after surgery and compared to both no surgery and sham thoracotomy controls. The lungs were enzymatically digested and CD31<sup>+ </sup>endothelial cells were isolated using flow cytometry cell sorting. The transcriptional profile of the CD31<sup>+ </sup>endothelial cells was assessed using quantitative real-time polymerase chain reaction (PCR) arrays. Focusing on 84 angiogenesis-associated genes, we identified 22 genes with greater than 4-fold regulation and significantly enhanced transcription (p <.05) within 21 days of pneumonectomy. Cluster analysis of the 22 genes indicated that changes in gene expression did not occur in a single phase, but in at least four waves of gene expression: a wave demonstrating decreased gene expression more than 3 days after pneumonectomy and 3 sequential waves of increased expression on days 6, 14, and 21 after pneumonectomy. These findings indicate that a network of gene interactions contributes to angiogenesis during compensatory lung growth.</p> http://respiratory-research.com/content/12/1/98
collection DOAJ
language English
format Article
sources DOAJ
author Konerding Moritz A
Houdek Jan
Collings-Simpson Dinee
Lee Grace S
Gibney Barry C
Chamoto Kenji
Lin Miao
Tsuda Akira
Mentzer Steven J
spellingShingle Konerding Moritz A
Houdek Jan
Collings-Simpson Dinee
Lee Grace S
Gibney Barry C
Chamoto Kenji
Lin Miao
Tsuda Akira
Mentzer Steven J
Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
Respiratory Research
author_facet Konerding Moritz A
Houdek Jan
Collings-Simpson Dinee
Lee Grace S
Gibney Barry C
Chamoto Kenji
Lin Miao
Tsuda Akira
Mentzer Steven J
author_sort Konerding Moritz A
title Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
title_short Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
title_full Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
title_fullStr Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
title_full_unstemmed Angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
title_sort angiogenesis gene expression in murine endothelial cells during post-pneumonectomy lung growth
publisher BMC
series Respiratory Research
issn 1465-9921
publishDate 2011-07-01
description <p>Abstract</p> <p>Although blood vessel growth occurs readily in the systemic bronchial circulation, angiogenesis in the pulmonary circulation is rare. Compensatory lung growth after pneumonectomy is an experimental model with presumed alveolar capillary angiogenesis. To investigate the genes participating in murine neoalveolarization, we studied the expression of angiogenesis genes in lung endothelial cells. After left pneumonectomy, the remaining right lung was examined on days 3, 6, 14 and 21days after surgery and compared to both no surgery and sham thoracotomy controls. The lungs were enzymatically digested and CD31<sup>+ </sup>endothelial cells were isolated using flow cytometry cell sorting. The transcriptional profile of the CD31<sup>+ </sup>endothelial cells was assessed using quantitative real-time polymerase chain reaction (PCR) arrays. Focusing on 84 angiogenesis-associated genes, we identified 22 genes with greater than 4-fold regulation and significantly enhanced transcription (p <.05) within 21 days of pneumonectomy. Cluster analysis of the 22 genes indicated that changes in gene expression did not occur in a single phase, but in at least four waves of gene expression: a wave demonstrating decreased gene expression more than 3 days after pneumonectomy and 3 sequential waves of increased expression on days 6, 14, and 21 after pneumonectomy. These findings indicate that a network of gene interactions contributes to angiogenesis during compensatory lung growth.</p>
url http://respiratory-research.com/content/12/1/98
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