Back to Search Start Over

343 DIRECT EXPRESSION OF PLURIPOTENCY MARKERS IN CULTURED SOMATIC CELLS BY SMALL REPROGRAMMING MOLECULES

Authors :
Domenico Iuso
Marta Czernik
Pasqualino Loi
Paola Toschi
Debora Agata Anzalone
G. Ptak
Source :
Reproduction, Fertility and Development. 27:260
Publication Year :
2015
Publisher :
CSIRO Publishing, 2015.

Abstract

The differentiate state of the cell may be reversed by a process called reprogramming. To date, a totipotent status is conferred to a somatic cell by nuclear transfer (SCNT) and a condition of pluripotency is conferred by induced expression of defined factors (iPSC). While the restoration of full totipotency by SCNT is rarely achieved, pluripotency by Yamanaka's factors (Oct4, c-myc, Sox-2, Klf4) is inducible, although with low efficiency, in a large set of cell in different animal models. However, the isolation of iPSC requires complex technical skills and time-consuming protocols. In our laboratory we have observed that the simple expansion of fibroblasts in culture switches on pluripotency markers such as Oct4 and Nanog (Anzalone et al. 2015 Reprod. Fertil. Dev. IETS Abstract 344). CHIR99021 is a small molecule, targeting the Wnt/β-catenin signalling pathway, which is used for stem cell culture (Li et al. 2009). CHIR99021 acts as selective inhibitor of both isoform of GSK3 α/β regulating cellular proliferation and differentiation. In this work we tested the hypothesis that the exposure to a small reprogramming molecule (CHIR99021) induces pluripotency marker expression in primary cultures of somatic cells. Sheep and mouse primary fibroblasts cultured in low oxygen and induced to enter GO (low serum, 0.5% FBS for 5 days

Details

ISSN :
10313613
Volume :
27
Database :
OpenAIRE
Journal :
Reproduction, Fertility and Development
Accession number :
edsair.doi.dedup.....ee012ade66ca3cc429dbc3dc8ea7aece
Full Text :
https://doi.org/10.1071/rdv27n1ab343