Cargando…

Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage

We used human fetal bone marrow-derived mesenchymal stromal cells (hfMSCs) differentiating towards chondrocytes as an alternative model for the human growth plate (GP). Our aims were to study gene expression patterns associated with chondrogenic differentiation to assess whether chondrocytes derived...

Descripción completa

Detalles Bibliográficos
Autores principales: van Gool, Sandy A., Emons, Joyce A. M., Leijten, Jeroen C. H., Decker, Eva, Sticht, Carsten, van Houwelingen, Johannes C., Goeman, Jelle J., Kleijburg, Carin, Scherjon, Sicco A., Gretz, Norbert, Wit, Jan Maarten, Rappold, Gudrun, Post, Janine N., Karperien, Marcel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3489884/
https://www.ncbi.nlm.nih.gov/pubmed/23144774
http://dx.doi.org/10.1371/journal.pone.0044561
_version_ 1782248805921456128
author van Gool, Sandy A.
Emons, Joyce A. M.
Leijten, Jeroen C. H.
Decker, Eva
Sticht, Carsten
van Houwelingen, Johannes C.
Goeman, Jelle J.
Kleijburg, Carin
Scherjon, Sicco A.
Gretz, Norbert
Wit, Jan Maarten
Rappold, Gudrun
Post, Janine N.
Karperien, Marcel
author_facet van Gool, Sandy A.
Emons, Joyce A. M.
Leijten, Jeroen C. H.
Decker, Eva
Sticht, Carsten
van Houwelingen, Johannes C.
Goeman, Jelle J.
Kleijburg, Carin
Scherjon, Sicco A.
Gretz, Norbert
Wit, Jan Maarten
Rappold, Gudrun
Post, Janine N.
Karperien, Marcel
author_sort van Gool, Sandy A.
collection PubMed
description We used human fetal bone marrow-derived mesenchymal stromal cells (hfMSCs) differentiating towards chondrocytes as an alternative model for the human growth plate (GP). Our aims were to study gene expression patterns associated with chondrogenic differentiation to assess whether chondrocytes derived from hfMSCs are a suitable model for studying the development and maturation of the GP. hfMSCs efficiently formed hyaline cartilage in a pellet culture in the presence of TGFβ3 and BMP6. Microarray and principal component analysis were applied to study gene expression profiles during chondrogenic differentiation. A set of 232 genes was found to correlate with in vitro cartilage formation. Several identified genes are known to be involved in cartilage formation and validate the robustness of the differentiating hfMSC model. KEGG pathway analysis using the 232 genes revealed 9 significant signaling pathways correlated with cartilage formation. To determine the progression of growth plate cartilage formation, we compared the gene expression profile of differentiating hfMSCs with previously established expression profiles of epiphyseal GP cartilage. As differentiation towards chondrocytes proceeds, hfMSCs gradually obtain a gene expression profile resembling epiphyseal GP cartilage. We visualized the differences in gene expression profiles as protein interaction clusters and identified many protein clusters that are activated during the early chondrogenic differentiation of hfMSCs showing the potential of this system to study GP development.
format Online
Article
Text
id pubmed-3489884
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34898842012-11-09 Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage van Gool, Sandy A. Emons, Joyce A. M. Leijten, Jeroen C. H. Decker, Eva Sticht, Carsten van Houwelingen, Johannes C. Goeman, Jelle J. Kleijburg, Carin Scherjon, Sicco A. Gretz, Norbert Wit, Jan Maarten Rappold, Gudrun Post, Janine N. Karperien, Marcel PLoS One Research Article We used human fetal bone marrow-derived mesenchymal stromal cells (hfMSCs) differentiating towards chondrocytes as an alternative model for the human growth plate (GP). Our aims were to study gene expression patterns associated with chondrogenic differentiation to assess whether chondrocytes derived from hfMSCs are a suitable model for studying the development and maturation of the GP. hfMSCs efficiently formed hyaline cartilage in a pellet culture in the presence of TGFβ3 and BMP6. Microarray and principal component analysis were applied to study gene expression profiles during chondrogenic differentiation. A set of 232 genes was found to correlate with in vitro cartilage formation. Several identified genes are known to be involved in cartilage formation and validate the robustness of the differentiating hfMSC model. KEGG pathway analysis using the 232 genes revealed 9 significant signaling pathways correlated with cartilage formation. To determine the progression of growth plate cartilage formation, we compared the gene expression profile of differentiating hfMSCs with previously established expression profiles of epiphyseal GP cartilage. As differentiation towards chondrocytes proceeds, hfMSCs gradually obtain a gene expression profile resembling epiphyseal GP cartilage. We visualized the differences in gene expression profiles as protein interaction clusters and identified many protein clusters that are activated during the early chondrogenic differentiation of hfMSCs showing the potential of this system to study GP development. Public Library of Science 2012-11-05 /pmc/articles/PMC3489884/ /pubmed/23144774 http://dx.doi.org/10.1371/journal.pone.0044561 Text en © 2012 van Gool et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
van Gool, Sandy A.
Emons, Joyce A. M.
Leijten, Jeroen C. H.
Decker, Eva
Sticht, Carsten
van Houwelingen, Johannes C.
Goeman, Jelle J.
Kleijburg, Carin
Scherjon, Sicco A.
Gretz, Norbert
Wit, Jan Maarten
Rappold, Gudrun
Post, Janine N.
Karperien, Marcel
Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage
title Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage
title_full Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage
title_fullStr Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage
title_full_unstemmed Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage
title_short Fetal Mesenchymal Stromal Cells Differentiating towards Chondrocytes Acquire a Gene Expression Profile Resembling Human Growth Plate Cartilage
title_sort fetal mesenchymal stromal cells differentiating towards chondrocytes acquire a gene expression profile resembling human growth plate cartilage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3489884/
https://www.ncbi.nlm.nih.gov/pubmed/23144774
http://dx.doi.org/10.1371/journal.pone.0044561
work_keys_str_mv AT vangoolsandya fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT emonsjoyceam fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT leijtenjeroench fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT deckereva fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT stichtcarsten fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT vanhouwelingenjohannesc fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT goemanjellej fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT kleijburgcarin fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT scherjonsiccoa fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT gretznorbert fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT witjanmaarten fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT rappoldgudrun fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT postjaninen fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage
AT karperienmarcel fetalmesenchymalstromalcellsdifferentiatingtowardschondrocytesacquireageneexpressionprofileresemblinghumangrowthplatecartilage