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The Chromatin Signature of Pluripotency: Establishment and Maintenance
by
Apostolou, Effie
, Di Giammartino, Dafne Campigli
in
Age-related Stem Cell Modifiers (L Kurian and A Papantonis
/ Age-related Stem Cell Modifiers (L Kurian and A Papantonis, Section Editors)
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Cell Biology
/ Cell culture
/ Cell differentiation
/ Cell fate
/ Chromatin
/ Developmental plasticity
/ Gene Therapy
/ Genomes
/ Immunology
/ Life Sciences
/ Molecular modelling
/ Pluripotency
/ Section Editors
/ Somatic cells
/ Stem Cells
/ Topical Collection on Age-related Stem Cell Modifiers
/ Transcription factors
2016
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The Chromatin Signature of Pluripotency: Establishment and Maintenance
by
Apostolou, Effie
, Di Giammartino, Dafne Campigli
in
Age-related Stem Cell Modifiers (L Kurian and A Papantonis
/ Age-related Stem Cell Modifiers (L Kurian and A Papantonis, Section Editors)
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Cell Biology
/ Cell culture
/ Cell differentiation
/ Cell fate
/ Chromatin
/ Developmental plasticity
/ Gene Therapy
/ Genomes
/ Immunology
/ Life Sciences
/ Molecular modelling
/ Pluripotency
/ Section Editors
/ Somatic cells
/ Stem Cells
/ Topical Collection on Age-related Stem Cell Modifiers
/ Transcription factors
2016
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Do you wish to request the book?
The Chromatin Signature of Pluripotency: Establishment and Maintenance
by
Apostolou, Effie
, Di Giammartino, Dafne Campigli
in
Age-related Stem Cell Modifiers (L Kurian and A Papantonis
/ Age-related Stem Cell Modifiers (L Kurian and A Papantonis, Section Editors)
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Cell Biology
/ Cell culture
/ Cell differentiation
/ Cell fate
/ Chromatin
/ Developmental plasticity
/ Gene Therapy
/ Genomes
/ Immunology
/ Life Sciences
/ Molecular modelling
/ Pluripotency
/ Section Editors
/ Somatic cells
/ Stem Cells
/ Topical Collection on Age-related Stem Cell Modifiers
/ Transcription factors
2016
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The Chromatin Signature of Pluripotency: Establishment and Maintenance
Journal Article
The Chromatin Signature of Pluripotency: Establishment and Maintenance
2016
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Overview
The revolutionary discovery that somatic cells can be reprogrammed by a defined set transcription factors to induced pluripotent stem cells (iPSCs) changed dramatically the way we perceive cell fate determination. Importantly, iPSCs, similar to embryo-derived stem cells (ESCs), are characterized by a remarkable developmental plasticity and the capacity to self-renew “indefinitely” under appropriate culture conditions, opening new avenues for personalized therapy and disease modeling. Elucidating the molecular mechanisms that maintain, induce, or alter stem cell identity is crucial for a deeper understanding of cell fate determination and potential translational applications. Intense research over the last 10 years exploiting technological advances in epigenomics and genome editing has unraveled many of the mysteries of pluripotent identity enabling novel and efficient ways to manipulate it for biomedical purposes. In this review, we focus on the chromatin and epigenetic characteristics that distinguish stem cells from somatic cells and their dynamic changes during differentiation and reprogramming.
Publisher
Springer International Publishing,Springer Nature B.V
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