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PMID: 24239964 Published · ppublish English

Efficient definitive endoderm induction from mouse embryonic stem cell adherent cultures: a rapid screening model for differentiation studies.

Stem cell research ·Vol. 12 ·No. 1 ·2014-09-10

Mfopou Josué Kunjom, Geeraerts Marloes, Dejene Roba, Van Langenhoven Stijn, Aberkane Asma, Van Grunsven Leo A, Bouwens Luc

Abstract

Definitive endoderm (DE) differentiation from mouse embryonic stem cell (mESC) monolayer cultures has been limited by poor cell survival or low efficiency. Recently, a combination of TGFβ and Wnt activation with BMP inhibition improved DE induction in embryoid bodies cultured in suspension. Based on these observations we developed a protocol to efficiently induce DE cells in monolayer cultures of mESCs. We obtained a good cell yield with 54.92% DE induction as shown by Foxa2, Sox17, Cxcr4 and E-Cadherin expression. These DE-cells could be further differentiated into posterior foregut and pancreatic phenotypes using a culture protocol initially developed for human embryonic stem cell (hESC) differentiation. In addition, this mESC-derived DE gave rise to hepatocyte-like cells after exposure to BMP and FGF ligands. Our data therefore indicate a substantial improvement of monolayer DE induction from mESCs and support the concept that differentiation conditions for mESC-derived DE are similar to those for hESCs. As mESCs are easier to maintain and manipulate in culture compared to hESCs, and considering the shorter duration of embryonic development in the mouse, this method of efficient DE induction on monolayer will promote the development of new differentiation protocols to obtain DE-derivatives, like pancreatic beta-cells, for future use in cell replacement therapies.

Keywords
1-azakenpaullone 6-bromo indirubin-3-oxine AKP ActA BIO CDM CHIR CHIR99021 DE EBs KOSR NG activin A chemically defined medium definitive endoderm embryoid bodies hESC human embryonic stem cells knockout serum replacement mESC mouse embryonic stem cells noggin
Article Info
Journal
Stem cell research
Abbr.
Stem Cell Res
Published
2014-09-10
Indexed
2014-01-10
Updated
2016-05-18
Language
English
Country/Region
England
NLM ID
101316957
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