Literature DB >> 16182777

Transdifferentiation of stem cells in pancreatic cells: state of the art.

G Di Gioacchino1, C Di Campli, M A Zocco, A C Piscaglia, M Novi, M Santoro, A Santoliquido, R Flore, P Tondi, P Pola, G Gasbarrini, A Gasbarrini.   

Abstract

Among the different approaches for diabetes mellitus-pancreas and pancreatic islet transplantation-the use of stem cells represent a renewable alternative source of insulin-producing cells. Stem cells capable of differentiating into beta-like cells can be isolated namely from embryonic cells, bone marrow, and umbilical cord blood, but also from adult organs such as pancreas, liver, and spleen. Several studies have demonstrated that by manipulating culture conditions and using growth and transcription factors of beta-cell lineage (in particular pdx-1 and pax4), embryonic stem cells can differentiate in vitro after formation of embryoid bodies. Bone marrow stem cells can give rise to mesenchymal; endodermal-, and ectodermal-derived cells. In vivo it has been shown that after bone marrow transplantation, using a murine sex-mismatched model, insulin-producing cells expressing the Y chromosome can be detected in the donor pancreas, although not in a significantly number. Cells characterized by a group of markers (Nestin, CK-8, CK-18) and transcription factors (Isl-1, Pdx-1, Pax-4, Ngn-3) important for beta-cell differentiation have been detected in umbilical cord blood. The recent evidence of the possibility to transdifferentiate stem cells to beta cells encourages further studies in animal models to exhaustively determine the differentiation pathways of stem cells to insulin producing cells. These findings might open the way to a successful human investigation.

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Year:  2005        PMID: 16182777     DOI: 10.1016/j.transproceed.2005.06.039

Source DB:  PubMed          Journal:  Transplant Proc        ISSN: 0041-1345            Impact factor:   1.066


  2 in total

Review 1.  Defining the cancer master switch.

Authors:  Courtney J Balentine; David H Berger; Shi-He Liu; Changyi Chen; John Nemunaitis; F Charles Brunicardi
Journal:  World J Surg       Date:  2011-08       Impact factor: 3.352

2.  Directed engineering of umbilical cord blood stem cells to produce C-peptide and insulin.

Authors:  L Denner; Y Bodenburg; J G Zhao; M Howe; J Cappo; R G Tilton; J A Copland; N Forraz; C McGuckin; R Urban
Journal:  Cell Prolif       Date:  2007-06       Impact factor: 6.831

  2 in total

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