Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine

Henry Chung, Kuldip S SidhuStem Cell Lab, Faculty of Medicine, School of Psychiatry, University of New South Wales, Sydney, NSW, AustraliaAbstract: Epigenetics is a growing field not only in the area of cancer research but recently in stem cells including human embryonic stem cell (hESC) research. T...

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Main Authors: Henry Chung, Kuldip S Sidhu
Format: Article
Language:English
Published: Dove Medical Press 2008-11-01
Series:Stem Cells and Cloning : Advances and Applications
Online Access:http://www.dovepress.com/epigenetic-modifications-of-embryonic-stem-cells-current-trends-and-re-a2584
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spelling doaj-ab50bc19a7bb48d1bedae27bb06114f32020-11-25T02:43:59ZengDove Medical PressStem Cells and Cloning : Advances and Applications1178-69572008-11-012008default1121Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicineHenry ChungKuldip S SidhuHenry Chung, Kuldip S SidhuStem Cell Lab, Faculty of Medicine, School of Psychiatry, University of New South Wales, Sydney, NSW, AustraliaAbstract: Epigenetics is a growing field not only in the area of cancer research but recently in stem cells including human embryonic stem cell (hESC) research. The hallmark of profiling epigenetic changes in stem cells lies in maintaining pluripotency or multipotency and in attaining lineage specifications that are relevant for regenerative medicine. Epigenetic modifications including DNA methylation, histone acetylation and methylation, play important roles in regulating gene expressions. Other epigenetic modifications include X chromosome silencing, genomic stability and imprinting and mammalian development. This review attempts to elucidate the mechanism(s) behind epigenetic modifications and review techniques scientists use for identifying each modification. We also discuss some of the trends of epigenetic modifications in the fields of directed differentiation of embryonic stem cells and de-differentiation of somatic cells.Keywords: epigenetics, embryonic stem cell, somatic cell nuclear transfer, DNA methylation, chromatin modifications http://www.dovepress.com/epigenetic-modifications-of-embryonic-stem-cells-current-trends-and-re-a2584
collection DOAJ
language English
format Article
sources DOAJ
author Henry Chung
Kuldip S Sidhu
spellingShingle Henry Chung
Kuldip S Sidhu
Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
Stem Cells and Cloning : Advances and Applications
author_facet Henry Chung
Kuldip S Sidhu
author_sort Henry Chung
title Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
title_short Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
title_full Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
title_fullStr Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
title_full_unstemmed Epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
title_sort epigenetic modifications of embryonic stem cells: current trends and relevance in developing regenerative medicine
publisher Dove Medical Press
series Stem Cells and Cloning : Advances and Applications
issn 1178-6957
publishDate 2008-11-01
description Henry Chung, Kuldip S SidhuStem Cell Lab, Faculty of Medicine, School of Psychiatry, University of New South Wales, Sydney, NSW, AustraliaAbstract: Epigenetics is a growing field not only in the area of cancer research but recently in stem cells including human embryonic stem cell (hESC) research. The hallmark of profiling epigenetic changes in stem cells lies in maintaining pluripotency or multipotency and in attaining lineage specifications that are relevant for regenerative medicine. Epigenetic modifications including DNA methylation, histone acetylation and methylation, play important roles in regulating gene expressions. Other epigenetic modifications include X chromosome silencing, genomic stability and imprinting and mammalian development. This review attempts to elucidate the mechanism(s) behind epigenetic modifications and review techniques scientists use for identifying each modification. We also discuss some of the trends of epigenetic modifications in the fields of directed differentiation of embryonic stem cells and de-differentiation of somatic cells.Keywords: epigenetics, embryonic stem cell, somatic cell nuclear transfer, DNA methylation, chromatin modifications
url http://www.dovepress.com/epigenetic-modifications-of-embryonic-stem-cells-current-trends-and-re-a2584
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