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Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters

It has been suggested that extracellular vesicles (EVs) can mediate crosstalk between hormones and metabolites within pancreatic tissue. However, the possible effect of pancreatic EVs on stem cell differentiation into pancreatic lineages remains unknown. Herein, human islet-derived EVs (h-Islet-EVs)...

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Autores principales: Ribeiro, Diana, Andersson, Eva-Marie, Heath, Nikki, Persson-kry, Anette, Collins, Richard, Hicks, Ryan, Dekker, Niek, Forslöw, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678888/
https://www.ncbi.nlm.nih.gov/pubmed/29117231
http://dx.doi.org/10.1371/journal.pone.0187665
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author Ribeiro, Diana
Andersson, Eva-Marie
Heath, Nikki
Persson-kry, Anette
Collins, Richard
Hicks, Ryan
Dekker, Niek
Forslöw, Anna
author_facet Ribeiro, Diana
Andersson, Eva-Marie
Heath, Nikki
Persson-kry, Anette
Collins, Richard
Hicks, Ryan
Dekker, Niek
Forslöw, Anna
author_sort Ribeiro, Diana
collection PubMed
description It has been suggested that extracellular vesicles (EVs) can mediate crosstalk between hormones and metabolites within pancreatic tissue. However, the possible effect of pancreatic EVs on stem cell differentiation into pancreatic lineages remains unknown. Herein, human islet-derived EVs (h-Islet-EVs) were isolated, characterized and subsequently added to human induced pluripotent stem cell (iPSC) clusters during pancreatic differentiation. The h-islet-EVs had a mean size of 117±7 nm and showed positive expression of CD63 and CD81 EV markers as measured by ELISA. The presence of key pancreatic transcription factor mRNA, such as NGN3, MAFA and PDX1, and pancreatic hormone proteins such as C-peptide and glucagon, were confirmed in h-Islet-EVs. iPSC clusters were differentiated in suspension and at the end stages of the differentiation protocol, the mRNA expression of the main pancreatic transcription factors and pancreatic hormones was increased. H-Islet-EVs were supplemented to the iPSC clusters in the later stages of differentiation. It was observed that h-Islet-EVs were able to up-regulate the intracellular levels of C-peptide in iPSC clusters in a concentration-dependent manner. The effect of h-Islet-EVs on the differentiation of iPSC clusters cultured in 3D-collagen hydrogels was also assessed. Although increased mRNA expression for pancreatic markers was observed when culturing the iPSC clusters in 3D-collagen hydrogels, delivery of EVs did not affect the insulin or C-peptide intracellular content. Our results provide new information on the role of h-Islet-EVs in the regulation of insulin expression in differentiating iPSC clusters, and are highly relevant for pancreatic tissue engineering applications.
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spelling pubmed-56788882017-11-18 Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters Ribeiro, Diana Andersson, Eva-Marie Heath, Nikki Persson-kry, Anette Collins, Richard Hicks, Ryan Dekker, Niek Forslöw, Anna PLoS One Research Article It has been suggested that extracellular vesicles (EVs) can mediate crosstalk between hormones and metabolites within pancreatic tissue. However, the possible effect of pancreatic EVs on stem cell differentiation into pancreatic lineages remains unknown. Herein, human islet-derived EVs (h-Islet-EVs) were isolated, characterized and subsequently added to human induced pluripotent stem cell (iPSC) clusters during pancreatic differentiation. The h-islet-EVs had a mean size of 117±7 nm and showed positive expression of CD63 and CD81 EV markers as measured by ELISA. The presence of key pancreatic transcription factor mRNA, such as NGN3, MAFA and PDX1, and pancreatic hormone proteins such as C-peptide and glucagon, were confirmed in h-Islet-EVs. iPSC clusters were differentiated in suspension and at the end stages of the differentiation protocol, the mRNA expression of the main pancreatic transcription factors and pancreatic hormones was increased. H-Islet-EVs were supplemented to the iPSC clusters in the later stages of differentiation. It was observed that h-Islet-EVs were able to up-regulate the intracellular levels of C-peptide in iPSC clusters in a concentration-dependent manner. The effect of h-Islet-EVs on the differentiation of iPSC clusters cultured in 3D-collagen hydrogels was also assessed. Although increased mRNA expression for pancreatic markers was observed when culturing the iPSC clusters in 3D-collagen hydrogels, delivery of EVs did not affect the insulin or C-peptide intracellular content. Our results provide new information on the role of h-Islet-EVs in the regulation of insulin expression in differentiating iPSC clusters, and are highly relevant for pancreatic tissue engineering applications. Public Library of Science 2017-11-08 /pmc/articles/PMC5678888/ /pubmed/29117231 http://dx.doi.org/10.1371/journal.pone.0187665 Text en © 2017 Ribeiro 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ribeiro, Diana
Andersson, Eva-Marie
Heath, Nikki
Persson-kry, Anette
Collins, Richard
Hicks, Ryan
Dekker, Niek
Forslöw, Anna
Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters
title Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters
title_full Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters
title_fullStr Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters
title_full_unstemmed Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters
title_short Human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3D-differentiating iPSC clusters
title_sort human pancreatic islet-derived extracellular vesicles modulate insulin expression in 3d-differentiating ipsc clusters
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678888/
https://www.ncbi.nlm.nih.gov/pubmed/29117231
http://dx.doi.org/10.1371/journal.pone.0187665
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