Development and cell differentiation are driven by complex epigenetic mechanisms that regulate chromatin structure and specific gene transcription programs. We recently demonstrated that it is possible to modify the epigenetic signature of terminally differentiated cells, switching their phenotype into one of higher plasticity, through the use of molecules that remove epigenetic marks from DNA and histones (Pennarossa et al. 2013 Proc. Natl. Acad. Sci. 110, 8948-8953; Brevini et al. 2014 Stem Cell Rev. 10, 633-642). Here we drive mammalian fibroblasts into a high plasticity state using the epigenetic eraser, 5-aza-cytidine (5-aza-CR), and investigate whether the simultaneous use of a micro-bioreactor culture system is able to promote three-...
Several studies have demonstrated the possibility to revert differentiation process, reactivating hy...
Cellular plasticity, the inter-conversion of cells between differentiated cells and stem cells (SCs)...
Mouse embryonic stem cells (mESCs) are an excellent model to study epigenetics and chromatin struct...
In the last years, many works demonstrated the possibility to directly interact with the epigenetic ...
Phenotype definition is driven by epigenetic mechanisms as well as directly influenced by the cell m...
Phenotype definition is controlled by epigenetic regulations that allow cells to acquire their diffe...
Phenotype expression is controlled by epigenetic regulations that guide cells through differentiatio...
Phenotype definition is controlled by epigenetic regulations that allow cells to acquire their diffe...
In the last years, many papers highlighted the possibility to use epigenetic modifiers to directly i...
Direct reprogramming strategies for cell fate switching hold great promise for regenerative medicin...
The promise of regenerative medicine relies on the ability to tightly control cell behavior. Given t...
A number of studies have recently shown how surface topography can alter behaviour and differentiati...
Individual cell fate decisions can vary according to changes in gene expression in response to envir...
During cancer progression, tumor cells undergo various molecular and phenotypic changes collectively...
All the somatic cells composing a mammalian organism are genetically identical and contain the same ...
Several studies have demonstrated the possibility to revert differentiation process, reactivating hy...
Cellular plasticity, the inter-conversion of cells between differentiated cells and stem cells (SCs)...
Mouse embryonic stem cells (mESCs) are an excellent model to study epigenetics and chromatin struct...
In the last years, many works demonstrated the possibility to directly interact with the epigenetic ...
Phenotype definition is driven by epigenetic mechanisms as well as directly influenced by the cell m...
Phenotype definition is controlled by epigenetic regulations that allow cells to acquire their diffe...
Phenotype expression is controlled by epigenetic regulations that guide cells through differentiatio...
Phenotype definition is controlled by epigenetic regulations that allow cells to acquire their diffe...
In the last years, many papers highlighted the possibility to use epigenetic modifiers to directly i...
Direct reprogramming strategies for cell fate switching hold great promise for regenerative medicin...
The promise of regenerative medicine relies on the ability to tightly control cell behavior. Given t...
A number of studies have recently shown how surface topography can alter behaviour and differentiati...
Individual cell fate decisions can vary according to changes in gene expression in response to envir...
During cancer progression, tumor cells undergo various molecular and phenotypic changes collectively...
All the somatic cells composing a mammalian organism are genetically identical and contain the same ...
Several studies have demonstrated the possibility to revert differentiation process, reactivating hy...
Cellular plasticity, the inter-conversion of cells between differentiated cells and stem cells (SCs)...
Mouse embryonic stem cells (mESCs) are an excellent model to study epigenetics and chromatin struct...