Epigenetic modifications play a significant role in determining the fate of stem cells and in directing the differentiation into multiple lineages. Current evidence indicates that mechanisms involved in chromatin regulation are essential for maintaining stable cell identities. There is a tight correlation among DNA methylation, histone modifications, and small noncoding RNAs during the epigenetic control of stem cells’ differentiation; however, to date, the precise mechanism is still not clear. In this context, amniotic fluid stem cells (AFSCs) represent an interesting model due to their unique features and the possible advantages of their use in regenerative medicine. Recent studies have elucidated epigenetic profiles involved in AFSCs’ li...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Differentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study the reg...
Advances in the understanding of the epigenetic events underlying the regulation of developmental ge...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
Background: The therapeutic use of multipotent stem cells depends on their differentiation potential...
Human amniotic fluid mesenchymal stem cells (AF-MSCs) are considered as an alternative source of ste...
Changes in epigenetic marks are known to be important regulatory factors in stem cell fate determina...
Changes in epigenetic marks are known to be important regulatory factors in stem cell fate determina...
Osteogenic differentiation of human amniotic fluid derived mesenchymal stem cells (AF-MSCs) has been...
AbstractObjectiveTo test the hypothesis that human amniotic fluid mesenchymal stem cells contain a u...
stem cells are defined by two fundamental properties: self-renewal and pluripotency or multipotency....
The therapeutic use of multipotent stem cells depends on their differentiation potential, which has ...
The regulatory capacities of epigenetic mechanisms including DNA methylation, histone modifications,...
Modifications of mRNAs can have a profound effect on cellular function and differentiation. In this ...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Differentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study the reg...
Advances in the understanding of the epigenetic events underlying the regulation of developmental ge...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
Background: The therapeutic use of multipotent stem cells depends on their differentiation potential...
Human amniotic fluid mesenchymal stem cells (AF-MSCs) are considered as an alternative source of ste...
Changes in epigenetic marks are known to be important regulatory factors in stem cell fate determina...
Changes in epigenetic marks are known to be important regulatory factors in stem cell fate determina...
Osteogenic differentiation of human amniotic fluid derived mesenchymal stem cells (AF-MSCs) has been...
AbstractObjectiveTo test the hypothesis that human amniotic fluid mesenchymal stem cells contain a u...
stem cells are defined by two fundamental properties: self-renewal and pluripotency or multipotency....
The therapeutic use of multipotent stem cells depends on their differentiation potential, which has ...
The regulatory capacities of epigenetic mechanisms including DNA methylation, histone modifications,...
Modifications of mRNAs can have a profound effect on cellular function and differentiation. In this ...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Differentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study the reg...
Advances in the understanding of the epigenetic events underlying the regulation of developmental ge...