SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from patients that is easy to harvest, store, and manipulate for reprogramming. Here, we generate induced neural progenitor cells (iNPCs) from neonatal and adult peripheral blood using single-factor OCT4 reprogramming. Unlike fibroblasts that share molecular hallmarks of neural crest, OCT4 reprogramming of blood was facilitated by SMAD+GSK-3 inhibition to overcome restrictions on neural fate conversion. Blood-derived (BD) iNPCs differentiate in vivo and respond to guided differentiation in vitro, producing glia (astrocytes and oligodendrocytes) and multiple neuronal subtypes, including dopaminergic (CNS related) and nociceptive neurons (peripheral n...
Cellular reprogramming is a rapidly developing technology by which somatic cells are turned into plu...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Abstract Background Cell replacement therapy has been envisioned as a promising treatment for neurod...
The clinical applicability of direct cell fate conversion depends on obtaining tissue from patients ...
SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from pa...
Recent reports have demonstrated that somatic cells can be directly converted to other differentiate...
Neurodegenerative diseases are characterized by chronic and progressive structural or functional los...
AbstractHuman neural stem cells (NSCs) hold great promise for research and therapy in neural disease...
In the last years, the use of pluripotent stem cells in studies of human biology has grown exponenti...
Weber M, Apostolova G, Widera D, et al. Alternative Generation of CNS Neural Stem Cells and PNS Deri...
Background: Human induced pluripotent stem cells (iPSCs) morphologically and functionally resemble h...
The high attrition rate in drug development processes calls for additional human-based model systems...
Summary: Transcription factor programming of pluripotent stem cells (PSCs) has emerged as an approac...
In this study, we have developed highly expandable neural stem cells (NSCs) from HESCs and iPSCs tha...
AbstractBackgroundHuman induced pluripotent stem cells (iPSCs) morphologically and functionally rese...
Cellular reprogramming is a rapidly developing technology by which somatic cells are turned into plu...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Abstract Background Cell replacement therapy has been envisioned as a promising treatment for neurod...
The clinical applicability of direct cell fate conversion depends on obtaining tissue from patients ...
SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from pa...
Recent reports have demonstrated that somatic cells can be directly converted to other differentiate...
Neurodegenerative diseases are characterized by chronic and progressive structural or functional los...
AbstractHuman neural stem cells (NSCs) hold great promise for research and therapy in neural disease...
In the last years, the use of pluripotent stem cells in studies of human biology has grown exponenti...
Weber M, Apostolova G, Widera D, et al. Alternative Generation of CNS Neural Stem Cells and PNS Deri...
Background: Human induced pluripotent stem cells (iPSCs) morphologically and functionally resemble h...
The high attrition rate in drug development processes calls for additional human-based model systems...
Summary: Transcription factor programming of pluripotent stem cells (PSCs) has emerged as an approac...
In this study, we have developed highly expandable neural stem cells (NSCs) from HESCs and iPSCs tha...
AbstractBackgroundHuman induced pluripotent stem cells (iPSCs) morphologically and functionally rese...
Cellular reprogramming is a rapidly developing technology by which somatic cells are turned into plu...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Abstract Background Cell replacement therapy has been envisioned as a promising treatment for neurod...