Gene expression profiling in an in vitro model of angiogenesis.

In the present study we have used a novel, comprehensive mRNA profiling technique (GeneCalling) for determining differential gene expression profiles of human endothelial cells undergoing differentiation into tubelike structures. One hundred fifteen cDNA fragments were identified and shown to repres...

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Main Authors: Kahn, J, Mehraban, F, Ingle, G, Xin, X, Bryant, J, Vehar, G, Schoenfeld, J, Grimaldi, C, Peale, F, Draksharapu, A, Lewin, D, Gerritsen, M
Format: Journal article
Language:English
Published: 2000
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author Kahn, J
Mehraban, F
Ingle, G
Xin, X
Bryant, J
Vehar, G
Schoenfeld, J
Grimaldi, C
Peale, F
Draksharapu, A
Lewin, D
Gerritsen, M
author_facet Kahn, J
Mehraban, F
Ingle, G
Xin, X
Bryant, J
Vehar, G
Schoenfeld, J
Grimaldi, C
Peale, F
Draksharapu, A
Lewin, D
Gerritsen, M
author_sort Kahn, J
collection OXFORD
description In the present study we have used a novel, comprehensive mRNA profiling technique (GeneCalling) for determining differential gene expression profiles of human endothelial cells undergoing differentiation into tubelike structures. One hundred fifteen cDNA fragments were identified and shown to represent 90 distinct genes. Although some of the genes identified have previously been implicated in angiogenesis, potential roles for many new genes, including OX-40, white protein homolog, KIAA0188, a homolog of angiopoietin-2, ADAMTS-4 (aggrecanase-1), and stanniocalcin were revealed. Support for the biological significance was confirmed by the abrogation of the changes in the expression of angiogenesis inhibitors and in situ hybridization studies. This study has significantly extends the molecular fingerprint of the changes in gene expression that occur during endothelial differentiation and provides new insights into the potential role of a number of new molecules in angiogenesis.
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spelling oxford-uuid:57042418-4253-403a-97b0-a654c067da592022-03-26T16:54:02ZGene expression profiling in an in vitro model of angiogenesis.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:57042418-4253-403a-97b0-a654c067da59EnglishSymplectic Elements at Oxford2000Kahn, JMehraban, FIngle, GXin, XBryant, JVehar, GSchoenfeld, JGrimaldi, CPeale, FDraksharapu, ALewin, DGerritsen, MIn the present study we have used a novel, comprehensive mRNA profiling technique (GeneCalling) for determining differential gene expression profiles of human endothelial cells undergoing differentiation into tubelike structures. One hundred fifteen cDNA fragments were identified and shown to represent 90 distinct genes. Although some of the genes identified have previously been implicated in angiogenesis, potential roles for many new genes, including OX-40, white protein homolog, KIAA0188, a homolog of angiopoietin-2, ADAMTS-4 (aggrecanase-1), and stanniocalcin were revealed. Support for the biological significance was confirmed by the abrogation of the changes in the expression of angiogenesis inhibitors and in situ hybridization studies. This study has significantly extends the molecular fingerprint of the changes in gene expression that occur during endothelial differentiation and provides new insights into the potential role of a number of new molecules in angiogenesis.
spellingShingle Kahn, J
Mehraban, F
Ingle, G
Xin, X
Bryant, J
Vehar, G
Schoenfeld, J
Grimaldi, C
Peale, F
Draksharapu, A
Lewin, D
Gerritsen, M
Gene expression profiling in an in vitro model of angiogenesis.
title Gene expression profiling in an in vitro model of angiogenesis.
title_full Gene expression profiling in an in vitro model of angiogenesis.
title_fullStr Gene expression profiling in an in vitro model of angiogenesis.
title_full_unstemmed Gene expression profiling in an in vitro model of angiogenesis.
title_short Gene expression profiling in an in vitro model of angiogenesis.
title_sort gene expression profiling in an in vitro model of angiogenesis
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