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The combination of inhibitors of FGF/MEK/Erk and GSK3β signaling increases the number of OCT3/4- and NANOG-positive cells in the human inner cell mass, but does not improve stem cell derivation.
- Source :
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Stem cells and development [Stem Cells Dev] 2013 Jan 15; Vol. 22 (2), pp. 296-306. Date of Electronic Publication: 2012 Aug 06. - Publication Year :
- 2013
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Abstract
- In embryonic stem cell culture, small molecules can be used to alter key signaling pathways to promote self-renewal and inhibit differentiation. In mice, small-molecule inhibition of both the FGF/MEK/Erk and the GSK3β pathways during preimplantation development suppresses hypoblast formation, and this results in more pluripotent cells of the inner cell mass (ICM). In this study, we evaluated the effects of different small-molecule inhibitors of the FGF/MEK/Erk and GSK3β pathway on embryo preimplantation development, early lineage segregation, and subsequent embryonic stem cell derivation in the humans. We did not observe any effect on blastocyst formation, but small-molecule inhibition did affect the number of OCT3/4- and NANOG-positive cells in the human ICM. We found that combined inhibition of the FGF/MEK/Erk and GSK3β pathways by PD0325901 and CHIR99021, respectively, resulted in ICMs containing significantly more OCT3/4-positive cells. Inhibition of FGF/MEK/Erk alone as well as in combination with inhibition of GSK3β significantly increased the number of NANOG-positive cells in blastocysts possessing good-quality ICMs. Secondly, we verified the influence of this increased pluripotency after 2i culture on the efficiency of stem cell derivation. Similar human embryonic stem cell (hESC) derivation rates were observed after 2i compared to control conditions, resulting in 2 control hESC lines and 1 hESC line from an embryo cultured in 2i conditions. In conclusion, we demonstrated that FGF/MEK/Erk and GSK3β signaling increases the number of OCT3/4- and NANOG-positive cells in the human ICM, but does not improve stem cell derivation.
- Subjects :
- Benzamides pharmacology
Blastocyst Inner Cell Mass cytology
Blastocyst Inner Cell Mass drug effects
Cell Count
Cell Culture Techniques
Cell Lineage
Diphenylamine analogs & derivatives
Diphenylamine pharmacology
Embryo Culture Techniques
Embryo Implantation drug effects
Embryonic Stem Cells metabolism
GATA6 Transcription Factor genetics
GATA6 Transcription Factor metabolism
Glycogen Synthase Kinase 3 genetics
Glycogen Synthase Kinase 3 metabolism
Glycogen Synthase Kinase 3 beta
Homeodomain Proteins genetics
Humans
Immunohistochemistry
MAP Kinase Signaling System
Mitogen-Activated Protein Kinase Kinases antagonists & inhibitors
Mitogen-Activated Protein Kinase Kinases genetics
Mitogen-Activated Protein Kinase Kinases metabolism
Nanog Homeobox Protein
Octamer Transcription Factor-3 genetics
Pyridines pharmacology
Pyrimidines pharmacology
Time Factors
Blastocyst Inner Cell Mass metabolism
Embryonic Stem Cells cytology
Glycogen Synthase Kinase 3 antagonists & inhibitors
Homeodomain Proteins metabolism
Octamer Transcription Factor-3 metabolism
Signal Transduction
Subjects
Details
- Language :
- English
- ISSN :
- 1557-8534
- Volume :
- 22
- Issue :
- 2
- Database :
- MEDLINE
- Journal :
- Stem cells and development
- Publication Type :
- Academic Journal
- Accession number :
- 22784186
- Full Text :
- https://doi.org/10.1089/scd.2012.0256