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We performed a microarray experiment to analyze the transcriptional profile of human fetal tissue derived neural stem/progenitor cells, human iPSCs, or human iPSC-derived neural stem/progenitor cells generated using xenogenic or xeno-free reagents. Gene expression patterns were compared among human ...
ORGANISM(S): Homo sapiens 
Single cell RNA-seq of the human long-term self-renewing neuroepithelial-like stem cell line SAI2
MYCN sustains a progenitor-stage differentiation block in human neuroepithelial stem cells to drive ETMR-like tumourigenesis [scRNA-seq]
MYCN sustains a progenitor-stage differentiation block in human neuroepithelial stem cells to drive ETMR-like tumourigenesis [RNA-seq]
MYCN sustains a progenitor-stage differentiation block in human neuroepithelial stem cells to drive ETMR-like tumourigenesis [NanoString miRNA]
Genome-wide mapping of transcriptional regulatory elements are essential tools for the understanding of the molecular events orchestrating self-renewal, commitment and differentiation of stem cells. We combined high-throughput identification of nascent, Pol-II-transcribed RNAs by Cap Analysis of Gen...
ORGANISM(S): Homo sapiens 
Genome-wide mapping of transcriptional regulatory elements are essential tools for the understanding of the molecular events orchestrating self-renewal, commitment and differentiation of stem cells. We combined high-throughput identification of nascent, Pol-II-transcribed RNAs by Cap Analysis of Gen...
ORGANISM(S): Homo sapiens 
This experiment is part of the FunGenES project (FunGenES - "Functional Genomics in Embryonic Stem Cells" partially funded by the 6th Framework Programme of the European Union, http://www.fungenes.org). The experiment was conducted at the "Instituto de Medicina Molecular,Faculdade de Medicina de Lis...
ORGANISM(S): Mus musculus 
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