AbstractHuman neural stem cells (NSCs) hold great promise for research and therapy in neural diseases. Many studies have shown direct induction of NSCs from human fibroblasts, which require an invasive skin biopsy and a prolonged period of expansion in cell culture prior to use. Peripheral blood (PB) is routinely used in medical diagnoses, and represents a noninvasive and easily accessible source of cells. Here we show direct derivation of NSCs from adult human PB mononuclear cells (PB-MNCs) by employing episomal vectors for transgene delivery. These induced NSCs (iNSCs) can expand more than 60 passages, can exhibit NSC morphology, gene expression, differentiation potential, and self-renewing capability and can give rise to multiple functio...
SummaryWe previously reported the generation of integration-free induced pluripotent stem cells from...
Recent reports suggest that induced neurons (iNs), but not induced pluripotent stem cell (iPSC)-deri...
SummaryThe generation of induced pluripotent stem cells (iPSCs) and induced neuronal cells (iNCs) fr...
AbstractHuman neural stem cells (NSCs) hold great promise for research and therapy in neural disease...
AbstractBackgroundHuman induced pluripotent stem cells (iPSCs) morphologically and functionally rese...
SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from pa...
SummaryNeurons obtained directly from human somatic cells hold great promise for disease modeling an...
AbstractBreakthroughs in cell fate conversion have made it possible to generate large quantities of ...
AbstractBackgroundHuman induced pluripotent stem cells (iPSCs) morphologically and functionally rese...
SummaryOverexpression of transcription factors has been used to directly reprogram somatic cells int...
Background: Human induced pluripotent stem cells (iPSCs) morphologically and functionally resemble h...
SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from pa...
Human neural stem cells hold great promise for research and therapy in neural disease. We describe t...
The clinical applicability of direct cell fate conversion depends on obtaining tissue from patients ...
Overexpression of transcription factors has been used to directly reprogram somatic cells into a ran...
SummaryWe previously reported the generation of integration-free induced pluripotent stem cells from...
Recent reports suggest that induced neurons (iNs), but not induced pluripotent stem cell (iPSC)-deri...
SummaryThe generation of induced pluripotent stem cells (iPSCs) and induced neuronal cells (iNCs) fr...
AbstractHuman neural stem cells (NSCs) hold great promise for research and therapy in neural disease...
AbstractBackgroundHuman induced pluripotent stem cells (iPSCs) morphologically and functionally rese...
SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from pa...
SummaryNeurons obtained directly from human somatic cells hold great promise for disease modeling an...
AbstractBreakthroughs in cell fate conversion have made it possible to generate large quantities of ...
AbstractBackgroundHuman induced pluripotent stem cells (iPSCs) morphologically and functionally rese...
SummaryOverexpression of transcription factors has been used to directly reprogram somatic cells int...
Background: Human induced pluripotent stem cells (iPSCs) morphologically and functionally resemble h...
SummaryThe clinical applicability of direct cell fate conversion depends on obtaining tissue from pa...
Human neural stem cells hold great promise for research and therapy in neural disease. We describe t...
The clinical applicability of direct cell fate conversion depends on obtaining tissue from patients ...
Overexpression of transcription factors has been used to directly reprogram somatic cells into a ran...
SummaryWe previously reported the generation of integration-free induced pluripotent stem cells from...
Recent reports suggest that induced neurons (iNs), but not induced pluripotent stem cell (iPSC)-deri...
SummaryThe generation of induced pluripotent stem cells (iPSCs) and induced neuronal cells (iNCs) fr...