Cargando…

Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line

Due to the limitations of current treatment regimes, gene therapy is a promising strategy being explored to correct blood glucose concentrations in diabetic patients. In the current study, we used a retroviral vector to deliver either the human insulin gene alone, the rat NeuroD1 gene alone, or the...

Descripción completa

Detalles Bibliográficos
Autores principales: Ren, Binhai, Tao, Chang, Swan, Margaret Anne, Joachim, Nichole, Martiniello-Wilks, Rosetta, Nassif, Najah T., O’Brien, Bronwyn A., Simpson, Ann M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848990/
https://www.ncbi.nlm.nih.gov/pubmed/27070593
http://dx.doi.org/10.3390/ijms17040534
_version_ 1782429464317132800
author Ren, Binhai
Tao, Chang
Swan, Margaret Anne
Joachim, Nichole
Martiniello-Wilks, Rosetta
Nassif, Najah T.
O’Brien, Bronwyn A.
Simpson, Ann M.
author_facet Ren, Binhai
Tao, Chang
Swan, Margaret Anne
Joachim, Nichole
Martiniello-Wilks, Rosetta
Nassif, Najah T.
O’Brien, Bronwyn A.
Simpson, Ann M.
author_sort Ren, Binhai
collection PubMed
description Due to the limitations of current treatment regimes, gene therapy is a promising strategy being explored to correct blood glucose concentrations in diabetic patients. In the current study, we used a retroviral vector to deliver either the human insulin gene alone, the rat NeuroD1 gene alone, or the human insulin gene and rat NeuroD1 genes together, to the rat liver cell line, H4IIE, to determine if storage of insulin and pancreatic transdifferentiation occurred. Stable clones were selected and expanded into cell lines: H4IIEins (insulin gene alone), H4IIE/ND (NeuroD1 gene alone), and H4IIEins/ND (insulin and NeuroD1 genes). The H4IIEins cells did not store insulin; however, H4IIE/ND and H4IIEins/ND cells stored 65.5 ± 5.6 and 1475.4 ± 171.8 pmol/insulin/5 × 10(6) cells, respectively. Additionally, several β cell transcription factors and pancreatic hormones were expressed in both H4IIE/ND and H4IIEins/ND cells. Electron microscopy revealed insulin storage vesicles in the H4IIE/ND and H4IIEins/ND cell lines. Regulated secretion of insulin to glucose (0–20 mmol/L) was seen in the H4IIEins/ND cell line. The H4IIEins/ND cells were transplanted into diabetic immunoincompetent mice, resulting in normalization of blood glucose. This data shows that the expression of NeuroD1 and insulin in liver cells may be a useful strategy for inducing islet neogenesis and reversing diabetes.
format Online
Article
Text
id pubmed-4848990
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-48489902016-05-04 Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line Ren, Binhai Tao, Chang Swan, Margaret Anne Joachim, Nichole Martiniello-Wilks, Rosetta Nassif, Najah T. O’Brien, Bronwyn A. Simpson, Ann M. Int J Mol Sci Article Due to the limitations of current treatment regimes, gene therapy is a promising strategy being explored to correct blood glucose concentrations in diabetic patients. In the current study, we used a retroviral vector to deliver either the human insulin gene alone, the rat NeuroD1 gene alone, or the human insulin gene and rat NeuroD1 genes together, to the rat liver cell line, H4IIE, to determine if storage of insulin and pancreatic transdifferentiation occurred. Stable clones were selected and expanded into cell lines: H4IIEins (insulin gene alone), H4IIE/ND (NeuroD1 gene alone), and H4IIEins/ND (insulin and NeuroD1 genes). The H4IIEins cells did not store insulin; however, H4IIE/ND and H4IIEins/ND cells stored 65.5 ± 5.6 and 1475.4 ± 171.8 pmol/insulin/5 × 10(6) cells, respectively. Additionally, several β cell transcription factors and pancreatic hormones were expressed in both H4IIE/ND and H4IIEins/ND cells. Electron microscopy revealed insulin storage vesicles in the H4IIE/ND and H4IIEins/ND cell lines. Regulated secretion of insulin to glucose (0–20 mmol/L) was seen in the H4IIEins/ND cell line. The H4IIEins/ND cells were transplanted into diabetic immunoincompetent mice, resulting in normalization of blood glucose. This data shows that the expression of NeuroD1 and insulin in liver cells may be a useful strategy for inducing islet neogenesis and reversing diabetes. MDPI 2016-04-08 /pmc/articles/PMC4848990/ /pubmed/27070593 http://dx.doi.org/10.3390/ijms17040534 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ren, Binhai
Tao, Chang
Swan, Margaret Anne
Joachim, Nichole
Martiniello-Wilks, Rosetta
Nassif, Najah T.
O’Brien, Bronwyn A.
Simpson, Ann M.
Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line
title Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line
title_full Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line
title_fullStr Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line
title_full_unstemmed Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line
title_short Pancreatic Transdifferentiation and Glucose-Regulated Production of Human Insulin in the H4IIE Rat Liver Cell Line
title_sort pancreatic transdifferentiation and glucose-regulated production of human insulin in the h4iie rat liver cell line
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848990/
https://www.ncbi.nlm.nih.gov/pubmed/27070593
http://dx.doi.org/10.3390/ijms17040534
work_keys_str_mv AT renbinhai pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT taochang pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT swanmargaretanne pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT joachimnichole pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT martiniellowilksrosetta pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT nassifnajaht pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT obrienbronwyna pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline
AT simpsonannm pancreatictransdifferentiationandglucoseregulatedproductionofhumaninsulinintheh4iieratlivercellline