Literature DB >> 22123608

Induction and selection of Sox17-expressing endoderm cells generated from murine embryonic stem cells.

Insa S Schroeder1, Sabine Sulzbacher, Tobias Nolden, Joerg Fuchs, Judith Czarnota, Ronny Meisterfeld, Heinz Himmelbauer, Anna M Wobus.   

Abstract

Embryonic stem (ES) cells offer a valuable source for generating insulin-producing cells. However, current differentiation protocols often result in heterogeneous cell populations of various developmental stages. Here we show the activin A-induced differentiation of mouse ES cells carrying a homologous dsRed-IRES-puromycin knock-in within the Sox17 locus into the endoderm lineage. Sox17-expressing cells were selected by fluorescence-assisted cell sorting (FACS) and characterized at the transcript and protein level. Treatment of ES cells with high concentrations of activin A for 10 days resulted in up to 19% Sox17-positive cells selected by FACS. Isolated Sox17-positive cells were characterized by defini- tive endoderm-specific Sox17/Cxcr4/Foxa2 transcripts, but lacked pluripotency-associated Oct4 mRNA and protein. The Sox17-expressing cells showed downregulation of extraembryonic endoderm (Sox7, Afp, Sdf1)-, mesoderm (Foxf1, Meox1)- and ectoderm (Pax6, NeuroD6)-specific transcripts. The presence of Hnf4α, Hes1 and Pdx1 mRNA demonstrated the expression of primitive gut/foregut cell-specific markers. Ngn3, Nkx6.1 and Nkx2.2 transcripts in Sox17-positive cells were determined as properties of pancreatic endocrine progenitors. Immunocytochemistry of activin A-induced Sox17-positive embryoid bodies revealed coexpression of Cxcr4 and Foxa2. Moreover, the histochemical demonstration of E-cadherin-, Cxcr4-, Sox9-, Hnf1β- and Ngn3-positive epithelial-like structures underlined the potential of Sox17-positive cells to further differentiate into the pancreatic lineage. By reducing the heterogeneity of the ES cell progeny, Sox17-expressing cells are a suitable model to evaluate the effects of growth and differentiation factors and of culture conditions to delineate the differentiation process for the generation of pancreatic cells in vitro.
Copyright © 2011 S. Karger AG, Basel.

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Year:  2011        PMID: 22123608     DOI: 10.1159/000329864

Source DB:  PubMed          Journal:  Cells Tissues Organs        ISSN: 1422-6405            Impact factor:   2.481


  5 in total

1.  Cdx2 efficiently induces trophoblast stem-like cells in naïve, but not primed, pluripotent stem cells.

Authors:  Stephanie Blij; Anthony Parenti; Neeloufar Tabatabai-Yazdi; Amy Ralston
Journal:  Stem Cells Dev       Date:  2015-03-10       Impact factor: 3.272

Review 2.  Potential of pluripotent stem cells for diabetes therapy.

Authors:  Insa S Schroeder
Journal:  Curr Diab Rep       Date:  2012-10       Impact factor: 4.810

3.  A system to enrich for primitive streak-derivatives, definitive endoderm and mesoderm, from pluripotent cells in culture.

Authors:  Svetlana Vassilieva; Hwee Ngee Goh; Kevin X Lau; James N Hughes; Mary Familari; Peter D Rathjen; Joy Rathjen
Journal:  PLoS One       Date:  2012-06-11       Impact factor: 3.240

4.  Mouse embryonic dorsal root ganglia contain pluripotent stem cells that show features similar to embryonic stem cells and induced pluripotent stem cells.

Authors:  Ryuhei Ogawa; Kyohei Fujita; Kazuo Ito
Journal:  Biol Open       Date:  2017-05-15       Impact factor: 2.422

5.  Suppressive GLI2 fragment enhances liver metastasis in colorectal cancer.

Authors:  Ruiko Ogata; Shiori Mori; Hitoshi Ohmori; Shingo Kishi; Rina Fujiwara-Tani; Takamitsu Sasaki; Yukiko Nishiguchi; Chie Nakashima; Kei Goto; Isao Kawahara; Yi Luo; Hiroki Kuniyasu
Journal:  Oncotarget       Date:  2022-01-15
  5 in total

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