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Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation

BACKGROUND: Mesenchymal stem cells (MSCs) hold great promise for the treatment of difficult diseases. As MSCs represent a rare cell population, ex vivo expansion of MSCs is indispensable to obtain sufficient amounts of cells for therapies and tissue engineering. However, spontaneous differentiation...

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Autores principales: Li, Zhilong, Liu, Chenxiong, Xie, Zhenhua, Song, Pengyue, Zhao, Robert C. H., Guo, Ling, Liu, Zhigang, Wu, Yaojiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111432/
https://www.ncbi.nlm.nih.gov/pubmed/21694780
http://dx.doi.org/10.1371/journal.pone.0020526
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author Li, Zhilong
Liu, Chenxiong
Xie, Zhenhua
Song, Pengyue
Zhao, Robert C. H.
Guo, Ling
Liu, Zhigang
Wu, Yaojiong
author_facet Li, Zhilong
Liu, Chenxiong
Xie, Zhenhua
Song, Pengyue
Zhao, Robert C. H.
Guo, Ling
Liu, Zhigang
Wu, Yaojiong
author_sort Li, Zhilong
collection PubMed
description BACKGROUND: Mesenchymal stem cells (MSCs) hold great promise for the treatment of difficult diseases. As MSCs represent a rare cell population, ex vivo expansion of MSCs is indispensable to obtain sufficient amounts of cells for therapies and tissue engineering. However, spontaneous differentiation and aging of MSCs occur during expansion and the molecular mechanisms involved have been poorly understood. METHODOLOGY/PRINCIPAL FINDINGS: Human MSCs in early and late passages were examined for their expression of genes involved in osteogenesis to determine their spontaneous differentiation towards osteoblasts in vitro, and of genes involved in self-renewal and proliferation for multipotent differentiation potential. In parallel, promoter DNA methylation and hostone H3 acetylation levels were determined. We found that MSCs underwent aging and spontaneous osteogenic differentiation upon regular culture expansion, with progressive downregulation of TERT and upregulation of osteogenic genes such as Runx2 and ALP. Meanwhile, the expression of genes associated with stem cell self-renewal such as Oct4 and Sox2 declined markedly. Notably, the altered expression of these genes were closely associated with epigenetic dysregulation of histone H3 acetylation in K9 and K14, but not with methylation of CpG islands in the promoter regions of most of these genes. bFGF promoted MSC proliferation and suppressed its spontaneous osteogenic differentiation, with corresponding changes in histone H3 acetylation in TERT, Oct4, Sox2, Runx2 and ALP genes. CONCLUSIONS/SIGNIFICANCE: Our results indicate that histone H3 acetylation, which can be modulated by extrinsic signals, plays a key role in regulating MSC aging and differentiation.
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spelling pubmed-31114322011-06-21 Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation Li, Zhilong Liu, Chenxiong Xie, Zhenhua Song, Pengyue Zhao, Robert C. H. Guo, Ling Liu, Zhigang Wu, Yaojiong PLoS One Research Article BACKGROUND: Mesenchymal stem cells (MSCs) hold great promise for the treatment of difficult diseases. As MSCs represent a rare cell population, ex vivo expansion of MSCs is indispensable to obtain sufficient amounts of cells for therapies and tissue engineering. However, spontaneous differentiation and aging of MSCs occur during expansion and the molecular mechanisms involved have been poorly understood. METHODOLOGY/PRINCIPAL FINDINGS: Human MSCs in early and late passages were examined for their expression of genes involved in osteogenesis to determine their spontaneous differentiation towards osteoblasts in vitro, and of genes involved in self-renewal and proliferation for multipotent differentiation potential. In parallel, promoter DNA methylation and hostone H3 acetylation levels were determined. We found that MSCs underwent aging and spontaneous osteogenic differentiation upon regular culture expansion, with progressive downregulation of TERT and upregulation of osteogenic genes such as Runx2 and ALP. Meanwhile, the expression of genes associated with stem cell self-renewal such as Oct4 and Sox2 declined markedly. Notably, the altered expression of these genes were closely associated with epigenetic dysregulation of histone H3 acetylation in K9 and K14, but not with methylation of CpG islands in the promoter regions of most of these genes. bFGF promoted MSC proliferation and suppressed its spontaneous osteogenic differentiation, with corresponding changes in histone H3 acetylation in TERT, Oct4, Sox2, Runx2 and ALP genes. CONCLUSIONS/SIGNIFICANCE: Our results indicate that histone H3 acetylation, which can be modulated by extrinsic signals, plays a key role in regulating MSC aging and differentiation. Public Library of Science 2011-06-09 /pmc/articles/PMC3111432/ /pubmed/21694780 http://dx.doi.org/10.1371/journal.pone.0020526 Text en Li 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
Li, Zhilong
Liu, Chenxiong
Xie, Zhenhua
Song, Pengyue
Zhao, Robert C. H.
Guo, Ling
Liu, Zhigang
Wu, Yaojiong
Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation
title Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation
title_full Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation
title_fullStr Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation
title_full_unstemmed Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation
title_short Epigenetic Dysregulation in Mesenchymal Stem Cell Aging and Spontaneous Differentiation
title_sort epigenetic dysregulation in mesenchymal stem cell aging and spontaneous differentiation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111432/
https://www.ncbi.nlm.nih.gov/pubmed/21694780
http://dx.doi.org/10.1371/journal.pone.0020526
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