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Phenotypically comparing the hiPSC-EpSCs with hiPSCs and hEpSCs.
ORGANISM(S): Homo sapiens 
2014-02-11 | GSE51028 | GEO
Phenotypically comparing the hiPSC-EpSCs with hiPSCs and hEpSCs. There are two or three biologic replicates.
ORGANISM(S): Homo sapiens 
Gene expression profiles among hiPSCs, hiPSC-EpSCs and hEpSCs
We have established an in vitro model that reconstructs aspects of human embryogensis using human expanded potential pluripotent stem cells (hEPSCs). We performed single-cell RNA sequencing (scRNA-seq) on hEPSCs grown in 2D (prior to aggregation), hEP-structures at day 5, hEP-structures grown in IVC...
ORGANISM(S): Homo sapiens 
2021-08-13 | GSE178326 | GEO
Using a METTL3 inducible knockout (iKO) system in human expanded potential stem cells (hEPSCs), we uncovered that unlike in mESCs, METTL3 was indispensable for hPSCs’ maintenance, and that loss of METTL3 caused significant upregulation of naïve pluripotency genes accompanied with impaired hEPSCs dif...
ORGANISM(S): Homo sapiens 
2025-04-16 | GSE276023 | GEO
Using a METTL3 inducible knockout (iKO) system in human expanded potential stem cells (hEPSCs), we uncovered that unlike in mESCs, METTL3 was indispensable for hPSCs’ maintenance, and that loss of METTL3 caused significant upregulation of naïve pluripotency genes accompanied with impaired hEPSCs dif...
ORGANISM(S): Homo sapiens 
2025-04-16 | GSE276022 | GEO
Using a METTL3 inducible knockout (iKO) system in human expanded potential stem cells (hEPSCs), we uncovered that unlike in mESCs, METTL3 was indispensable for hPSCs’ maintenance, and that loss of METTL3 caused significant upregulation of naïve pluripotency genes accompanied with impaired hEPSCs dif...
ORGANISM(S): Homo sapiens 
2025-04-16 | GSE275949 | GEO
Using a METTL3 inducible knockout (iKO) system in human expanded potential stem cells (hEPSCs), we uncovered that unlike in mESCs, METTL3 was indispensable for hPSCs’ maintenance, and that loss of METTL3 caused significant upregulation of naïve pluripotency genes accompanied with impaired hEPSCs dif...
ORGANISM(S): Homo sapiens 
2025-04-16 | GSE275948 | GEO
Using a METTL3 inducible knockout (iKO) system in human expanded potential stem cells (hEPSCs), we uncovered that unlike in mESCs, METTL3 was indispensable for hPSCs’ maintenance, and that loss of METTL3 caused significant upregulation of naïve pluripotency genes accompanied with impaired hEPSCs dif...
ORGANISM(S): Homo sapiens 
2025-04-16 | GSE275737 | GEO
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