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Home › Dataset Library › Transcription profiling of human induced pluripotent stem cells signature and memory retention

Dataset: Transcription profiling of human induced pluripotent stem cells signature and memory retention

Transient expression of two factors, or from Oct4 alone, resulted in efficient generation of human iPSCs. The reprogramming strategy...

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Transient expression of two factors, or from Oct4 alone, resulted in efficient generation of human iPSCs. The reprogramming strategy described revealed a potential transcriptional signature for human iPSCs yet retaining the gene expression of donor cells in human reprogrammed cells free of viral and transgene interference. Genetic reprogramming of somatic cells to a pluripotent state (induced pluripotent stem cells or iPSCs) by over-expression of specific genes has been accomplished using mouse and human cells. However, it is still unclear how similar human iPSCs are to human Embryonic Stem Cells (hESCs). Here, we describe the transcriptional profile of human iPSCs generated without viral vectors or genomic insertions, revealing that these cells are in general similar to hESCs but with significant differences. For the generation of human iPSCs without viral vectors or genomic insertions, pluripotent factors Oct4 and Nanog were cloned in episomal vectors and transfected into human fetal neural progenitor cells. The transient expression of these two factors, or from Oct4 alone, resulted in efficient generation of human iPSCs. The reprogramming strategy described here revealed a potential transcriptional signature for human iPSCs yet retaining the gene expression of donor cells in human reprogrammed cells free of viral and transgene interference. Moreover, the episomal reprogramming strategy represents a safe way to generate human iPSCs for clinical purposes and basic research. Experiment Overall Design: Gene expression profiles measured using human genome Affymetrix Gene Chip arrays were grouped by hierarchical clustering, and correlation coefficients were computed for all pair-wise comparisons

Species:
human

Samples:
15

Source:
E-GEOD-18618

PubMed:
19763270

Updated:
Dec.12, 2014

Registered:
Sep.15, 2014


Factors: (via ArrayExpress)
Sample
GSE18618GSM462810
GSE18618GSM462811
GSE18618GSM462812
GSE18618GSM462813
GSE18618GSM462814
GSE18618GSM462815
GSE18618GSM462816
GSE18618GSM462817
GSE18618GSM462818
GSE18618GSM462819
GSE18618GSM462820
GSE18618GSM462821
GSE18618GSM482072
GSE18618GSM482073
GSE18618GSM482074

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  • genome

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