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Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat

BACKGROUND: Inflammation followed by fibrosis is a component of islet dysfunction in both rodent and human type 2 diabetes. Because islet inflammation may originate from endothelial cells, we assessed the expression of selected genes involved in endothelial cell activation in islets from a spontaneo...

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Autores principales: Lacraz, Grégory, Giroix, Marie-Hélène, Kassis, Nadim, Coulaud, Josiane, Galinier, Anne, Noll, Christophe, Cornut, Mélanie, Schmidlin, Fabien, Paul, Jean-Louis, Janel, Nathalie, Irminger, Jean-Claude, Kergoat, Micheline, Portha, Bernard, Donath, Marc Y., Ehses, Jan A., Homo-Delarche, Françoise
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2737103/
https://www.ncbi.nlm.nih.gov/pubmed/19742300
http://dx.doi.org/10.1371/journal.pone.0006963
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author Lacraz, Grégory
Giroix, Marie-Hélène
Kassis, Nadim
Coulaud, Josiane
Galinier, Anne
Noll, Christophe
Cornut, Mélanie
Schmidlin, Fabien
Paul, Jean-Louis
Janel, Nathalie
Irminger, Jean-Claude
Kergoat, Micheline
Portha, Bernard
Donath, Marc Y.
Ehses, Jan A.
Homo-Delarche, Françoise
author_facet Lacraz, Grégory
Giroix, Marie-Hélène
Kassis, Nadim
Coulaud, Josiane
Galinier, Anne
Noll, Christophe
Cornut, Mélanie
Schmidlin, Fabien
Paul, Jean-Louis
Janel, Nathalie
Irminger, Jean-Claude
Kergoat, Micheline
Portha, Bernard
Donath, Marc Y.
Ehses, Jan A.
Homo-Delarche, Françoise
author_sort Lacraz, Grégory
collection PubMed
description BACKGROUND: Inflammation followed by fibrosis is a component of islet dysfunction in both rodent and human type 2 diabetes. Because islet inflammation may originate from endothelial cells, we assessed the expression of selected genes involved in endothelial cell activation in islets from a spontaneous model of type 2 diabetes, the Goto-Kakizaki (GK) rat. We also examined islet endotheliuml/oxidative stress (OS)/inflammation-related gene expression, islet vascularization and fibrosis after treatment with the interleukin-1 (IL-1) receptor antagonist (IL-1Ra). METHODOLOGY/PRINCIPAL FINDINGS: Gene expression was analyzed by quantitative RT-PCR on islets isolated from 10-week-old diabetic GK and control Wistar rats. Furthermore, GK rats were treated s.c twice daily with IL-1Ra (Kineret, Amgen, 100 mg/kg/day) or saline, from 4 weeks of age onwards (onset of diabetes). Four weeks later, islet gene analysis and pancreas immunochemistry were performed. Thirty-two genes were selected encoding molecules involved in endothelial cell activation, particularly fibrinolysis, vascular tone, OS, angiogenesis and also inflammation. All genes except those encoding angiotensinogen and epoxide hydrolase (that were decreased), and 12-lipoxygenase and vascular endothelial growth factor (that showed no change), were significantly up-regulated in GK islets. After IL-1Ra treatment of GK rats in vivo, most selected genes implied in endothelium/OS/immune cells/fibrosis were significantly down-regulated. IL-1Ra also improved islet vascularization, reduced fibrosis and ameliorated glycemia. CONCLUSIONS/SIGNIFICANCE: GK rat islets have increased mRNA expression of markers of early islet endothelial cell activation, possibly triggered by several metabolic factors, and also some defense mechanisms. The beneficial effect of IL-1Ra on most islet endothelial/OS/immune cells/fibrosis parameters analyzed highlights a major endothelial-related role for IL-1 in GK islet alterations. Thus, metabolically-altered islet endothelium might affect the β-cell microenvironment and contribute to progressive type 2 diabetic β-cell dysfunction in GK rats. Counteracting islet endothelial cell inflammation might be one way to ameliorate/prevent β-cell dysfunction in type 2 diabetes.
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spelling pubmed-27371032009-09-09 Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat Lacraz, Grégory Giroix, Marie-Hélène Kassis, Nadim Coulaud, Josiane Galinier, Anne Noll, Christophe Cornut, Mélanie Schmidlin, Fabien Paul, Jean-Louis Janel, Nathalie Irminger, Jean-Claude Kergoat, Micheline Portha, Bernard Donath, Marc Y. Ehses, Jan A. Homo-Delarche, Françoise PLoS One Research Article BACKGROUND: Inflammation followed by fibrosis is a component of islet dysfunction in both rodent and human type 2 diabetes. Because islet inflammation may originate from endothelial cells, we assessed the expression of selected genes involved in endothelial cell activation in islets from a spontaneous model of type 2 diabetes, the Goto-Kakizaki (GK) rat. We also examined islet endotheliuml/oxidative stress (OS)/inflammation-related gene expression, islet vascularization and fibrosis after treatment with the interleukin-1 (IL-1) receptor antagonist (IL-1Ra). METHODOLOGY/PRINCIPAL FINDINGS: Gene expression was analyzed by quantitative RT-PCR on islets isolated from 10-week-old diabetic GK and control Wistar rats. Furthermore, GK rats were treated s.c twice daily with IL-1Ra (Kineret, Amgen, 100 mg/kg/day) or saline, from 4 weeks of age onwards (onset of diabetes). Four weeks later, islet gene analysis and pancreas immunochemistry were performed. Thirty-two genes were selected encoding molecules involved in endothelial cell activation, particularly fibrinolysis, vascular tone, OS, angiogenesis and also inflammation. All genes except those encoding angiotensinogen and epoxide hydrolase (that were decreased), and 12-lipoxygenase and vascular endothelial growth factor (that showed no change), were significantly up-regulated in GK islets. After IL-1Ra treatment of GK rats in vivo, most selected genes implied in endothelium/OS/immune cells/fibrosis were significantly down-regulated. IL-1Ra also improved islet vascularization, reduced fibrosis and ameliorated glycemia. CONCLUSIONS/SIGNIFICANCE: GK rat islets have increased mRNA expression of markers of early islet endothelial cell activation, possibly triggered by several metabolic factors, and also some defense mechanisms. The beneficial effect of IL-1Ra on most islet endothelial/OS/immune cells/fibrosis parameters analyzed highlights a major endothelial-related role for IL-1 in GK islet alterations. Thus, metabolically-altered islet endothelium might affect the β-cell microenvironment and contribute to progressive type 2 diabetic β-cell dysfunction in GK rats. Counteracting islet endothelial cell inflammation might be one way to ameliorate/prevent β-cell dysfunction in type 2 diabetes. Public Library of Science 2009-09-09 /pmc/articles/PMC2737103/ /pubmed/19742300 http://dx.doi.org/10.1371/journal.pone.0006963 Text en Lacraz 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
Lacraz, Grégory
Giroix, Marie-Hélène
Kassis, Nadim
Coulaud, Josiane
Galinier, Anne
Noll, Christophe
Cornut, Mélanie
Schmidlin, Fabien
Paul, Jean-Louis
Janel, Nathalie
Irminger, Jean-Claude
Kergoat, Micheline
Portha, Bernard
Donath, Marc Y.
Ehses, Jan A.
Homo-Delarche, Françoise
Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat
title Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat
title_full Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat
title_fullStr Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat
title_full_unstemmed Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat
title_short Islet Endothelial Activation and Oxidative Stress Gene Expression Is Reduced by IL-1Ra Treatment in the Type 2 Diabetic GK Rat
title_sort islet endothelial activation and oxidative stress gene expression is reduced by il-1ra treatment in the type 2 diabetic gk rat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2737103/
https://www.ncbi.nlm.nih.gov/pubmed/19742300
http://dx.doi.org/10.1371/journal.pone.0006963
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