Progress made in the reprogramming field: new factors, new strategies and a new outlook.
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Human induced pluripotent stem cells for monogenic disease modelling and therapyHematopoietic specification from human pluripotent stem cells: current advances and challenges toward de novo generation of hematopoietic stem cells.Ex uno plures: molecular designs for embryonic pluripotencyGeneration of Functional Cardiomyocytes from Efficiently Generated Human iPSCs and a Novel Method of Measuring ContractilityBiological and medical applications of a brain-on-a-chipSoftware-aided automatic laser optoporation and transfection of cells.Solving the puzzle of Parkinson's disease using induced pluripotent stem cells.Mechanism of human somatic reprogramming to iPS cell.Genome-wide shRNA screening to identify factors mediating Gata6 repression in mouse embryonic stem cells.Combining small molecules for cell reprogramming through an interatomic analysis.RPdb: a database of experimentally verified cellular reprogramming records.Long noncoding RNAs: new players in the molecular mechanism for maintenance and differentiation of pluripotent stem cells.Human induced pluripotent stem cells from basic research to potential clinical applications in cancerPreclinical studies for induced pluripotent stem cell-based therapeuticsRNA-based tools for nuclear reprogramming and lineage-conversion: towards clinical applications.Induced pluripotent stem cells as custom therapeutics for retinal repair: progress and rationale.Inducing pluripotency in vitro: recent advances and highlights in induced pluripotent stem cells generation and pluripotency reprogramming.Repressors of reprogramming.Alternative Routes to Induced Pluripotent Stem Cells Revealed by Reprogramming of the Neural Lineage.Epigenetic Control of Reprogramming and Transdifferentiation by Histone Modifications.Advancing pluripotent stem cell culture: it is a matter of setting the standard.Induced Pluripotent Stem Cell for the Study and Treatment of Sickle Cell Anemia.TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells.Interleukin-6-Mediated Induced Pluripotent Stem Cell (iPSC)-Derived Neural Differentiation.
P2860
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P2860
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
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2012 nî lūn-bûn
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2012 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2012 թվականի սեպտեմբերին հրատարակված գիտական հոդված
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2012年の論文
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2012年論文
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2012年論文
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2012年論文
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2012年論文
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2012年論文
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2012年论文
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name
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@ast
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@en
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@nl
type
label
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@ast
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@en
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@nl
prefLabel
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@ast
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@en
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@nl
P1476
Progress made in the reprogramming field: new factors, new strategies and a new outlook.
@en
P2093
Samer M I Hussein
P304
P356
10.1016/J.GDE.2012.08.007
P50
P577
2012-09-05T00:00:00Z