Neural induction intermediates exhibit distinct roles of Fgf signaling.
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Modeling Huntington's disease with induced pluripotent stem cellsCurrent perspectives of the signaling pathways directing neural crest inductionFrom pluripotency to forebrain patterning: an in vitro journey astride embryonic stem cellsMicrofabric Vessels for Embryoid Body Formation and Rapid Differentiation of Pluripotent Stem CellsSymmetry breaking, germ layer specification and axial organisation in aggregates of mouse embryonic stem cellsDerivation and expansion using only small molecules of human neural progenitors for neurodegenerative disease modelingExpression of Neurogenin 1 in mouse embryonic stem cells directs the differentiation of neuronal precursors and identifies unique patterns of down-stream gene expressionCellular heterogeneity during embryonic stem cell differentiation to epiblast stem cells is revealed by the ShcD/RaLP adaptor proteinThe response of early neural genes to FGF signaling or inhibition of BMP indicate the absence of a conserved neural induction moduleZfp296 is a novel, pluripotent-specific reprogramming factorWnt/β-catenin and FGF signalling direct the specification and maintenance of a neuromesodermal axial progenitor in ensembles of mouse embryonic stem cellsFGF signalling regulates chromatin organisation during neural differentiation via mechanisms that can be uncoupled from transcriptionPluripotent stem cell studies elucidate the underlying mechanisms of early embryonic development.Developmental mechanisms directing early anterior forebrain specification in vertebratesNeural induction and early patterning in vertebrates.Intrinsic regulations in neural fate commitment.SMAD7 directly converts human embryonic stem cells to telencephalic fate by a default mechanism.Distinct developmental ground states of epiblast stem cell lines determine different pluripotency features.Hes1 desynchronizes differentiation of pluripotent cells by modulating STAT3 activity.Bone morphogenic protein signalling suppresses differentiation of pluripotent cells by maintaining expression of E-Cadherin.An interplay between extracellular signalling and the dynamics of the exit from pluripotency drives cell fate decisions in mouse ES cells.Specific glycosaminoglycans modulate neural specification of mouse embryonic stem cells.
P2860
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P2860
Neural induction intermediates exhibit distinct roles of Fgf signaling.
description
2010 nî lūn-bûn
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2010年の論文
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2010年学术文章
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2010年学术文章
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2010年学术文章
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2010年学术文章
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2010年学术文章
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2010年学术文章
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name
Neural induction intermediates exhibit distinct roles of Fgf signaling.
@en
Neural induction intermediates exhibit distinct roles of Fgf signaling.
@nl
type
label
Neural induction intermediates exhibit distinct roles of Fgf signaling.
@en
Neural induction intermediates exhibit distinct roles of Fgf signaling.
@nl
prefLabel
Neural induction intermediates exhibit distinct roles of Fgf signaling.
@en
Neural induction intermediates exhibit distinct roles of Fgf signaling.
@nl
P2093
P50
P356
P1433
P1476
Neural induction intermediates exhibit distinct roles of Fgf signaling
@en
P2093
Christof Bernemann
Claudia Ortmeier
David Ruau
Luca Gentile
Martin Stehling
Martin Zenke
Martina Sinn
Rhea Brintrup
P2860
P304
P356
10.1002/STEM.498
P577
2010-10-01T00:00:00Z