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Induction of human neuronal cells by defined transcription factors
Zhiping P. Pang
, Nan Yang
, Thomas Vierbuchen
, Austin Ostermeier
, Daniel R. Fuentes
, Troy Q. Yang
,
Ami Citri
, Vittorio Sebastiano
, Samuele Marro
, Thomas C. Südhof
, Marius Wernig
*
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Letter
›
peer-review
1081
Scopus citations
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Keyphrases
Action Potential
33%
Ascl1
33%
Basic Helix-loop-helix (bHLH)
33%
BRN2
33%
Cell Fate Change
33%
Cell Fusion
33%
Cellular Expression
33%
Forced Expression
33%
Functional Neurons
33%
Human Fibroblasts
33%
Human Neuronal Cells
100%
Human Neurons
33%
Human Pluripotent Stem Cells (hPSCs)
33%
Human Somatic Cells
33%
Human-induced
33%
In Vitro Disease Modeling
33%
Induced Neuronal Cells
100%
Lineage-determining Transcription Factor
33%
Lineage-specific
33%
Mouse Cortical Neurons
33%
Mouse Embryonic Fibroblasts
33%
MYT1L
33%
NeuroD1
33%
Neuronal Markers
33%
Neuronal Morphology
33%
Non-neural
33%
Patient-specific
33%
Pluripotent Stem Cells
33%
Regenerative Medicine
33%
Somatic Cell nuclear Transfer
33%
Somatic Cells
33%
Specific Factors
33%
Synaptic Connections
33%
Transcription Factor
100%
Transfer Cells
33%
Neuroscience
Action Potential
25%
Basic Helix Loop Helix Transcription Factor
25%
Cell Fate
25%
Cell Fusion
25%
Disease Modeling
25%
Fibroblast
50%
In Vitro
25%
Neurogenic Differentiation Factor
25%
Somatic Cell
75%
Stem Cell
50%
Transcription Factors
100%
Transfer Cell
25%
Transgene
25%
Biochemistry, Genetics and Molecular Biology
Action Potential
25%
Basic Helix Loop Helix Transcription Factor
25%
Cell Fate
25%
Cell Fusion
25%
Disease Modeling
25%
Downregulation
25%
Fibroblast
50%
Neurogenic Differentiation Factor
25%
Somatic Cell
50%
Somatic Cell Nuclear Transfer
25%
Stem Cell
50%
Transcription Factors
100%
Transgene
25%