Literature DB >> 12716747

Analysis of insulin-producing cells during in vitro differentiation from feeder-free embryonic stem cells.

Yusuke Moritoh1, Eiji Yamato, Yumiko Yasui, Satsuki Miyazaki, Jun-ichi Miyazaki.   

Abstract

Embryonic stem (ES) cells can differentiate into many cell types and are expected to be useful for tissue engineering. Recent reports have shown that ES cells can differentiate into insulin-producing cells in response to the transient expression of the pdx-1 gene, after the removal of feeder cells. To investigate the lineage of insulin-producing cells and their in vitro differentiation, we introduced the betageo gene, encoding a beta-galactosidase-neomycin phosphotransferase fusion protein under the control of the mouse insulin 2 promoter, into ES cells that had been adapted to feeder-free culture, and analyzed insulin gene expression during their in vitro differentiation. We also examined the expression of transcription factors that are related to the differentiation of the pancreas. X-gal staining analysis revealed beta-galactosidase-positive cells on the surface and in the center of the embryoid body that proliferated during differentiation. Glucose-responsive insulin-producing cells, derived from our feeder-free ES cells, expressed insulin 2, pdx-1, Pax4, and Isl1 and also the glucagon, somatostatin, and PP genes. Moreover, the genes encoding p48, amylase, and carboxypeptidase A were also expressed. These results suggest that ES cells can differentiate not only into endocrine cells but also into exocrine cells of the pancreas, without the initiation of pdx-1 expression.

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Year:  2003        PMID: 12716747     DOI: 10.2337/diabetes.52.5.1163

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  23 in total

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3.  Recent advances in stem cell research for the treatment of diabetes.

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4.  Stimulation of cAMP signalling allows isolation of clonal pancreatic precursor cells from adult mouse pancreas.

Authors:  T Yamamoto; E Yamato; H Taniguchi; M Shimoda; F Tashiro; M Hosoi; T Sato; S Fujii; J-I Miyazaki
Journal:  Diabetologia       Date:  2006-08-08       Impact factor: 10.122

5.  Colony-forming progenitor cells in the postnatal mouse liver and pancreas give rise to morphologically distinct insulin-expressing colonies in 3D cultures.

Authors:  Liang Jin; Tao Feng; Jing Chai; Nadiah Ghazalli; Dan Gao; Ricardo Zerda; Zhuo Li; Jasper Hsu; Alborz Mahdavi; David A Tirrell; Arthur D Riggs; Hsun Teresa Ku
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6.  Oxidative stress, ER stress, and the JNK pathway in type 2 diabetes.

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7.  In vivo characterization of transplanted human embryonic stem cell-derived pancreatic endocrine islet cells.

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8.  Involvement of oxidative stress and the JNK pathway in glucose toxicity.

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9.  Directed differentiation of human embryonic stem cells towards a pancreatic cell fate.

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Review 10.  Slow and steady is the key to beta-cell replication.

Authors:  Kristen Brennand; Doug Melton
Journal:  J Cell Mol Med       Date:  2009-03       Impact factor: 5.310

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