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Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny

Nuclear reprogramming of somatic tissue enables derivation of induced pluripotent stem (iPS) cells from an autologous, non-embryonic origin. The purpose of the current study was to establish efficient protocols for lineage-specification of human iPS cells into functional glucose-responsive, insulin-...

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Autores principales: Thatava, Tayaramma, Nelson, Timothy J., Edukulla, Ramakrishna, Sakuma, Toshie, Ohmine, Seiga, Tonne, Jason M., Yamada, Satsuki, Kudva, Yogish, Terzic, Andre, Ikeda, Yasuhiro
Formato: Texto
Lenguaje:English
Publicado: 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060028/
https://www.ncbi.nlm.nih.gov/pubmed/21048796
http://dx.doi.org/10.1038/gt.2010.145
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author Thatava, Tayaramma
Nelson, Timothy J.
Edukulla, Ramakrishna
Sakuma, Toshie
Ohmine, Seiga
Tonne, Jason M.
Yamada, Satsuki
Kudva, Yogish
Terzic, Andre
Ikeda, Yasuhiro
author_facet Thatava, Tayaramma
Nelson, Timothy J.
Edukulla, Ramakrishna
Sakuma, Toshie
Ohmine, Seiga
Tonne, Jason M.
Yamada, Satsuki
Kudva, Yogish
Terzic, Andre
Ikeda, Yasuhiro
author_sort Thatava, Tayaramma
collection PubMed
description Nuclear reprogramming of somatic tissue enables derivation of induced pluripotent stem (iPS) cells from an autologous, non-embryonic origin. The purpose of the current study was to establish efficient protocols for lineage-specification of human iPS cells into functional glucose-responsive, insulin-producing progeny. We generated human iPS cells, which were then guided with recombinant growth factors that mimic the essential signaling for pancreatic development. Reprogrammed with four stemness factors, human fibroblasts were here converted into authentic iPS cells. Under feeder-free conditions, fate-specification was initiated with activin A and Wnt3a that triggered engagement into definitive endoderm, followed by priming with FGF10 and KAAD-cyclopamine. Addition of retinoic acid, boosted by the pancreatic endoderm inducer indolactam V (ILV), yielded pancreatic progenitors expressing PDX1, NGN3 and NEUROD1 markers. Further guidance, under IGF-1, HGF and DAPT, was enhanced by glucagon like peptide-1 (GLP-1) to generate islet-like cells that expressed pancreas-specific markers including insulin and glucagon. Derived progeny demonstrated sustained expression of PDX1, and functional responsiveness to glucose challenge secreting up to 230 pM of C-peptide. A pancreatogenic cocktail enriched with ILV/GLP-1 offers a proficient means to specify human iPS cells into glucose-responsive hormone-producing progeny, refining the development of a personalized platform for islet-like cell generation.
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spelling pubmed-30600282011-09-01 Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny Thatava, Tayaramma Nelson, Timothy J. Edukulla, Ramakrishna Sakuma, Toshie Ohmine, Seiga Tonne, Jason M. Yamada, Satsuki Kudva, Yogish Terzic, Andre Ikeda, Yasuhiro Gene Ther Article Nuclear reprogramming of somatic tissue enables derivation of induced pluripotent stem (iPS) cells from an autologous, non-embryonic origin. The purpose of the current study was to establish efficient protocols for lineage-specification of human iPS cells into functional glucose-responsive, insulin-producing progeny. We generated human iPS cells, which were then guided with recombinant growth factors that mimic the essential signaling for pancreatic development. Reprogrammed with four stemness factors, human fibroblasts were here converted into authentic iPS cells. Under feeder-free conditions, fate-specification was initiated with activin A and Wnt3a that triggered engagement into definitive endoderm, followed by priming with FGF10 and KAAD-cyclopamine. Addition of retinoic acid, boosted by the pancreatic endoderm inducer indolactam V (ILV), yielded pancreatic progenitors expressing PDX1, NGN3 and NEUROD1 markers. Further guidance, under IGF-1, HGF and DAPT, was enhanced by glucagon like peptide-1 (GLP-1) to generate islet-like cells that expressed pancreas-specific markers including insulin and glucagon. Derived progeny demonstrated sustained expression of PDX1, and functional responsiveness to glucose challenge secreting up to 230 pM of C-peptide. A pancreatogenic cocktail enriched with ILV/GLP-1 offers a proficient means to specify human iPS cells into glucose-responsive hormone-producing progeny, refining the development of a personalized platform for islet-like cell generation. 2010-11-04 2011-03 /pmc/articles/PMC3060028/ /pubmed/21048796 http://dx.doi.org/10.1038/gt.2010.145 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Thatava, Tayaramma
Nelson, Timothy J.
Edukulla, Ramakrishna
Sakuma, Toshie
Ohmine, Seiga
Tonne, Jason M.
Yamada, Satsuki
Kudva, Yogish
Terzic, Andre
Ikeda, Yasuhiro
Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny
title Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny
title_full Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny
title_fullStr Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny
title_full_unstemmed Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny
title_short Indolactam V/GLP-1-mediated Differentiation of Human iPS Cells into Glucose-Responsive Insulin-Secreting Progeny
title_sort indolactam v/glp-1-mediated differentiation of human ips cells into glucose-responsive insulin-secreting progeny
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060028/
https://www.ncbi.nlm.nih.gov/pubmed/21048796
http://dx.doi.org/10.1038/gt.2010.145
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