Direct Effect of Chenodeoxycholic Acid on Differentiation of Mouse Embryonic Stem Cells Cultured under Feeder-Free Culture Conditions

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초록

Chenodeoxycholic acid (CDCA), a farnesoid X receptor (FXR) ligand, is a member of the nuclear receptor family and is probably involved in regulating the cellular activities of embryonic stem (ES) cells. Recently, although it was reported that the FXR ligand can mediate differentiation, apoptosis, and/or growth arrest in several cell types, it is still not well known how CDCA mediates effects in ES cells. Therefore, we investigated the direct effect of CDCA on mES cells. Feeder-free mES cells were treated in a dose-dependent manner with CDCA (50, 100, and 200 mu M) for 72 h, and then a 100 mu M CDCA treatment was performed for an additional 72 h. We analyzed the morphology, cell growth, cell characteristics, immunocytochemistry, and RT-PCR. In CDCA-treated cells, we observed the disappearance of pluripotent stem cell markers including alkaline phosphatase, Oct4, and Nanog and a time- and dose-dependent increase in expression of nestin, PAX6, and alpha-smooth muscle actin, but not alpha-fetoprotein. The 100 mu M CDCA-treated cells in their second passage continued this differentiation pattern similar to those in the controls. In conclusion, these results suggest that CDCA can guide mES cells by an FXR-independent pathway to differentiate into ectoderm and/or mesoderm, but not endoderm.

키워드

FARNESOID-X-RECEPTORPROTEIN-KINASE-CBILE-ACIDSNUCLEAR RECEPTORADIPOCYTE DIFFERENTIATIONRETINOIC ACIDEXPRESSIONAPOPTOSISGROWTHCANCER
제목
Direct Effect of Chenodeoxycholic Acid on Differentiation of Mouse Embryonic Stem Cells Cultured under Feeder-Free Culture Conditions
저자
Park, Soon-JungLee, Seul-BiLee, Dong-SupRyu, Young-JoonLee, GeneCho, Jaejin
DOI
10.1155/2013/375076
발행일
2013
유형
Article
저널명
BioMed Research International
2013