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Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide

Generation of β-pancreatic cells represents a major goal in research. The aim of this study was to explore a protein-based strategy to induce differentiation of human biliary tree stem cells (hBTSCs) towards β-pancreatic cells. A plasmid containing the sequence of the human pancreatic and duodenal h...

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Autores principales: Cardinale, Vincenzo, Puca, Rosa, Carpino, Guido, Scafetta, Gaia, Renzi, Anastasia, De Canio, Michele, Sicilia, Francesca, Nevi, Lorenzo, Casa, Domenico, Panetta, Rocco, Berloco, Pasquale Bartolomeo, Reid, Lola M., Federici, Giorgio, Gaudio, Eugenio, Maroder, Marella, Alvaro, Domenico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529196/
https://www.ncbi.nlm.nih.gov/pubmed/26252949
http://dx.doi.org/10.1371/journal.pone.0134677
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author Cardinale, Vincenzo
Puca, Rosa
Carpino, Guido
Scafetta, Gaia
Renzi, Anastasia
De Canio, Michele
Sicilia, Francesca
Nevi, Lorenzo
Casa, Domenico
Panetta, Rocco
Berloco, Pasquale Bartolomeo
Reid, Lola M.
Federici, Giorgio
Gaudio, Eugenio
Maroder, Marella
Alvaro, Domenico
author_facet Cardinale, Vincenzo
Puca, Rosa
Carpino, Guido
Scafetta, Gaia
Renzi, Anastasia
De Canio, Michele
Sicilia, Francesca
Nevi, Lorenzo
Casa, Domenico
Panetta, Rocco
Berloco, Pasquale Bartolomeo
Reid, Lola M.
Federici, Giorgio
Gaudio, Eugenio
Maroder, Marella
Alvaro, Domenico
author_sort Cardinale, Vincenzo
collection PubMed
description Generation of β-pancreatic cells represents a major goal in research. The aim of this study was to explore a protein-based strategy to induce differentiation of human biliary tree stem cells (hBTSCs) towards β-pancreatic cells. A plasmid containing the sequence of the human pancreatic and duodenal homeobox 1 (PDX1) has been expressed in E. coli. Epithelial-Cell-Adhesion-Molecule positive hBTSCs or mature human hepatocyte cell line, HepG2, were grown in medium to which Pdx1 peptide was added. Differentiation toward pancreatic islet cells were evaluated by the expression of the β-cell transcription factors, Pdx1 and musculoapo-neurotic fibrosarcoma oncogene homolog A, and of the pancreatic hormones, insulin, glucagon, and somatostatin, investigated by real time polymerase chain reaction, western blot, light microscopy and immunofluorescence. C-peptide secretion in response to high glucose was also measured. Results indicated how purified Pdx1 protein corresponding to the primary structure of the human Pdx1 by mass spectroscopy was efficiently produced in bacteria, and transduced into hBTSCs. Pdx1 exposure triggered the expression of both intermediate and mature stage β-cell differentiation markers only in hBTSCs but not in HepG2 cell line. Furthermore, hBTSCs exposed to Pdx1 showed up-regulation of insulin, glucagon and somatostatin genes and formation of 3-dimensional islet-like structures intensely positive for insulin and glucagon. Finally, Pdx1-induced islet-like structures exhibited glucose-regulated C-peptide secretion. In conclusion, the human Pdx1 is highly effective in triggering hBTSC differentiation toward functional β-pancreatic cells.
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spelling pubmed-45291962015-08-12 Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide Cardinale, Vincenzo Puca, Rosa Carpino, Guido Scafetta, Gaia Renzi, Anastasia De Canio, Michele Sicilia, Francesca Nevi, Lorenzo Casa, Domenico Panetta, Rocco Berloco, Pasquale Bartolomeo Reid, Lola M. Federici, Giorgio Gaudio, Eugenio Maroder, Marella Alvaro, Domenico PLoS One Research Article Generation of β-pancreatic cells represents a major goal in research. The aim of this study was to explore a protein-based strategy to induce differentiation of human biliary tree stem cells (hBTSCs) towards β-pancreatic cells. A plasmid containing the sequence of the human pancreatic and duodenal homeobox 1 (PDX1) has been expressed in E. coli. Epithelial-Cell-Adhesion-Molecule positive hBTSCs or mature human hepatocyte cell line, HepG2, were grown in medium to which Pdx1 peptide was added. Differentiation toward pancreatic islet cells were evaluated by the expression of the β-cell transcription factors, Pdx1 and musculoapo-neurotic fibrosarcoma oncogene homolog A, and of the pancreatic hormones, insulin, glucagon, and somatostatin, investigated by real time polymerase chain reaction, western blot, light microscopy and immunofluorescence. C-peptide secretion in response to high glucose was also measured. Results indicated how purified Pdx1 protein corresponding to the primary structure of the human Pdx1 by mass spectroscopy was efficiently produced in bacteria, and transduced into hBTSCs. Pdx1 exposure triggered the expression of both intermediate and mature stage β-cell differentiation markers only in hBTSCs but not in HepG2 cell line. Furthermore, hBTSCs exposed to Pdx1 showed up-regulation of insulin, glucagon and somatostatin genes and formation of 3-dimensional islet-like structures intensely positive for insulin and glucagon. Finally, Pdx1-induced islet-like structures exhibited glucose-regulated C-peptide secretion. In conclusion, the human Pdx1 is highly effective in triggering hBTSC differentiation toward functional β-pancreatic cells. Public Library of Science 2015-08-07 /pmc/articles/PMC4529196/ /pubmed/26252949 http://dx.doi.org/10.1371/journal.pone.0134677 Text en © 2015 Cardinale et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Cardinale, Vincenzo
Puca, Rosa
Carpino, Guido
Scafetta, Gaia
Renzi, Anastasia
De Canio, Michele
Sicilia, Francesca
Nevi, Lorenzo
Casa, Domenico
Panetta, Rocco
Berloco, Pasquale Bartolomeo
Reid, Lola M.
Federici, Giorgio
Gaudio, Eugenio
Maroder, Marella
Alvaro, Domenico
Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide
title Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide
title_full Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide
title_fullStr Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide
title_full_unstemmed Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide
title_short Adult Human Biliary Tree Stem Cells Differentiate to β-Pancreatic Islet Cells by Treatment with a Recombinant Human Pdx1 Peptide
title_sort adult human biliary tree stem cells differentiate to β-pancreatic islet cells by treatment with a recombinant human pdx1 peptide
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529196/
https://www.ncbi.nlm.nih.gov/pubmed/26252949
http://dx.doi.org/10.1371/journal.pone.0134677
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