Understanding the mechanisms underlying neuronal fate determination will provide important insights into brain development and regenerative approaches to neurological diseases. Now in Cell Stem Cell, Masserdotti et al. (2015) use neuronal conversion of astrocytes to dissect transcriptional mechanisms of fate determination and identify circuits that mediate cellular identity
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
Abstract Background Cell replacement therapy has been envisioned as a promising treatment for neurod...
Neural cell fate specification is a multistep process in which stem cells undergo sequential changes...
Understanding the mechanisms underlying neuronal fate determination will provide important insights ...
AbstractGenerating neural stem cells and neurons from reprogrammed human astrocytes is a potential s...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...
© 2015 Elsevier Inc. Direct lineage reprogramming induces dramatic shifts in cellular identity, empl...
Generating neural stem cells and neurons from reprogrammed human astrocytes is a potential strategy ...
Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understo...
Background: Cell replacement therapy has been envisioned as a promising treatment for neurodegenerat...
Astrocytes play a significant role in coordinating neural development and provide critical support f...
We analyzed the feasibility of obtaining neurons from reprogrammed human astrocytes as a possible st...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
In recent years, the need to derive sources of specialized cell types to be employed for cell replac...
Chemical reprogramming of astrocytes into neurons represents a promising approach to regenerate new ...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
Abstract Background Cell replacement therapy has been envisioned as a promising treatment for neurod...
Neural cell fate specification is a multistep process in which stem cells undergo sequential changes...
Understanding the mechanisms underlying neuronal fate determination will provide important insights ...
AbstractGenerating neural stem cells and neurons from reprogrammed human astrocytes is a potential s...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...
© 2015 Elsevier Inc. Direct lineage reprogramming induces dramatic shifts in cellular identity, empl...
Generating neural stem cells and neurons from reprogrammed human astrocytes is a potential strategy ...
Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understo...
Background: Cell replacement therapy has been envisioned as a promising treatment for neurodegenerat...
Astrocytes play a significant role in coordinating neural development and provide critical support f...
We analyzed the feasibility of obtaining neurons from reprogrammed human astrocytes as a possible st...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
In recent years, the need to derive sources of specialized cell types to be employed for cell replac...
Chemical reprogramming of astrocytes into neurons represents a promising approach to regenerate new ...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
Abstract Background Cell replacement therapy has been envisioned as a promising treatment for neurod...
Neural cell fate specification is a multistep process in which stem cells undergo sequential changes...