Cell fate can be reprogrammed by modifying intrinsic and extrinsic cues. Here, we show that two small molecules (forskolin and dorsomorphin) enable the transcription factor Neurogenin 2 (NGN2) to convert human fetal lung fibroblasts into cholinergic neurons with high purity (>90%) and efficiency (up to 99 % of NGN2-expressing cells). The conversion is direct without passing through a proliferative progenitor state. These human induced cholinergic neurons show mature electrophysiological properties and exhibit motor neuron-like features including morphology, gene expression, and the formation of functional neuromuscular junctions. Inclusion of an additional transcription factor, SOX11 also efficiently converts postnatal and adult skin fib...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
SummaryPro-neural transcription factors and small molecules can induce the reprogramming of fibrobla...
Pro-neural transcription factors and small molecules can induce the reprogramming of fibroblasts int...
SummaryNeuronal conversion from human fibroblasts can be induced by lineage-specific transcription f...
Recently, direct reprogramming between divergent lineages has been achieved by the introduction of r...
Recent reports demonstrate that somatic mouse cells can be directly converted to other mature cell t...
SummaryRecently, direct reprogramming between divergent lineages has been achieved by the introducti...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Subtype-specific neurons obtained from adult humans will be critical to modeling neurodegenerative d...
During direct cellular reprogramming, forced expression of key transcription factors (TFs) directly ...
Summary: Transcription factor programming of pluripotent stem cells (PSCs) has emerged as an approac...
SummaryThe mammalian nervous system comprises many distinct neuronal subtypes, each with its own phe...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
SummaryPro-neural transcription factors and small molecules can induce the reprogramming of fibrobla...
Pro-neural transcription factors and small molecules can induce the reprogramming of fibroblasts int...
SummaryNeuronal conversion from human fibroblasts can be induced by lineage-specific transcription f...
Recently, direct reprogramming between divergent lineages has been achieved by the introduction of r...
Recent reports demonstrate that somatic mouse cells can be directly converted to other mature cell t...
SummaryRecently, direct reprogramming between divergent lineages has been achieved by the introducti...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Subtype-specific neurons obtained from adult humans will be critical to modeling neurodegenerative d...
During direct cellular reprogramming, forced expression of key transcription factors (TFs) directly ...
Summary: Transcription factor programming of pluripotent stem cells (PSCs) has emerged as an approac...
SummaryThe mammalian nervous system comprises many distinct neuronal subtypes, each with its own phe...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Recent studies have reported direct reprogramming of human fibroblasts to mature neurons by the intr...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...