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Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation

Microvascular complications eventually affect nearly all patients with diabetes. Advanced glycation end-products (AGEs) resulting from hyperglycemia are a complex and heterogeneous group of compounds that accumulate in the plasma and tissues in diabetic patients. They are responsible for both endoth...

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Autores principales: Lan, Kuo-Cheng, Chiu, Chen-Yuan, Kao, Chia-Wei, Huang, Kuo-How, Wang, Ching-Chia, Huang, Kuo-Tong, Tsai, Keh-Sung, Sheu, Meei-Ling, Liu, Shing Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4405342/
https://www.ncbi.nlm.nih.gov/pubmed/25898207
http://dx.doi.org/10.1371/journal.pone.0124418
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author Lan, Kuo-Cheng
Chiu, Chen-Yuan
Kao, Chia-Wei
Huang, Kuo-How
Wang, Ching-Chia
Huang, Kuo-Tong
Tsai, Keh-Sung
Sheu, Meei-Ling
Liu, Shing Hwa
author_facet Lan, Kuo-Cheng
Chiu, Chen-Yuan
Kao, Chia-Wei
Huang, Kuo-How
Wang, Ching-Chia
Huang, Kuo-Tong
Tsai, Keh-Sung
Sheu, Meei-Ling
Liu, Shing Hwa
author_sort Lan, Kuo-Cheng
collection PubMed
description Microvascular complications eventually affect nearly all patients with diabetes. Advanced glycation end-products (AGEs) resulting from hyperglycemia are a complex and heterogeneous group of compounds that accumulate in the plasma and tissues in diabetic patients. They are responsible for both endothelial dysfunction and diabetic vasculopathy. The aim of this study was to investigate the cytotoxicity of AGEs on pancreatic islet microvascular endothelial cells. The mechanism underlying the apoptotic effect of AGEs in pancreatic islet endothelial cell line MS1 was explored. The results showed that AGEs significantly decreased MS1 cell viability and induced MS1 cell apoptosis in a dose-dependent manner. AGEs dose-dependently increased the expressions of cleaved caspase-3, and cleaved poly (ADP-ribose) polymerase in MS1 cells. Treatment of MS1 cells with AGEs also resulted in increased nuclear factor (NF)-κB-p65 phosphorylation and cyclooxygenase (COX)-2 expression. However, AGEs did not affect the expressions of endoplasmic reticulum (ER) stress-related molecules in MS1 cells. Pretreatment with NS398 (a COX-2 inhibitor) to inhibit prostaglandin E(2) (PGE(2)) production reversed the induction of cleaved caspase-3, cleaved PARP, and MS1 cell viability. Moreover, AGEs significantly increased the receptor for AGEs (RAGE) protein expression in MS1 cells, which could be reversed by RAGE neutralizing antibody. RAGE Neutralizing antibody could also reverse the induction of cleaved caspase-3 and cleaved PARP and decreased cell viability induced by AGEs. These results implicate the involvement of NF-κB-activated COX-2/PGE(2) up-regulation in AGEs/RAGE-induced islet endothelial cell apoptosis and cytotoxicity. These findings may provide insight into the pathological processes within the pancreatic islet microvasculature induced by AGEs accumulation.
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spelling pubmed-44053422015-05-07 Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation Lan, Kuo-Cheng Chiu, Chen-Yuan Kao, Chia-Wei Huang, Kuo-How Wang, Ching-Chia Huang, Kuo-Tong Tsai, Keh-Sung Sheu, Meei-Ling Liu, Shing Hwa PLoS One Research Article Microvascular complications eventually affect nearly all patients with diabetes. Advanced glycation end-products (AGEs) resulting from hyperglycemia are a complex and heterogeneous group of compounds that accumulate in the plasma and tissues in diabetic patients. They are responsible for both endothelial dysfunction and diabetic vasculopathy. The aim of this study was to investigate the cytotoxicity of AGEs on pancreatic islet microvascular endothelial cells. The mechanism underlying the apoptotic effect of AGEs in pancreatic islet endothelial cell line MS1 was explored. The results showed that AGEs significantly decreased MS1 cell viability and induced MS1 cell apoptosis in a dose-dependent manner. AGEs dose-dependently increased the expressions of cleaved caspase-3, and cleaved poly (ADP-ribose) polymerase in MS1 cells. Treatment of MS1 cells with AGEs also resulted in increased nuclear factor (NF)-κB-p65 phosphorylation and cyclooxygenase (COX)-2 expression. However, AGEs did not affect the expressions of endoplasmic reticulum (ER) stress-related molecules in MS1 cells. Pretreatment with NS398 (a COX-2 inhibitor) to inhibit prostaglandin E(2) (PGE(2)) production reversed the induction of cleaved caspase-3, cleaved PARP, and MS1 cell viability. Moreover, AGEs significantly increased the receptor for AGEs (RAGE) protein expression in MS1 cells, which could be reversed by RAGE neutralizing antibody. RAGE Neutralizing antibody could also reverse the induction of cleaved caspase-3 and cleaved PARP and decreased cell viability induced by AGEs. These results implicate the involvement of NF-κB-activated COX-2/PGE(2) up-regulation in AGEs/RAGE-induced islet endothelial cell apoptosis and cytotoxicity. These findings may provide insight into the pathological processes within the pancreatic islet microvasculature induced by AGEs accumulation. Public Library of Science 2015-04-21 /pmc/articles/PMC4405342/ /pubmed/25898207 http://dx.doi.org/10.1371/journal.pone.0124418 Text en © 2015 Lan 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
Lan, Kuo-Cheng
Chiu, Chen-Yuan
Kao, Chia-Wei
Huang, Kuo-How
Wang, Ching-Chia
Huang, Kuo-Tong
Tsai, Keh-Sung
Sheu, Meei-Ling
Liu, Shing Hwa
Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation
title Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation
title_full Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation
title_fullStr Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation
title_full_unstemmed Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation
title_short Advanced Glycation End-Products Induce Apoptosis in Pancreatic Islet Endothelial Cells via NF-κB-Activated Cyclooxygenase-2/Prostaglandin E(2) Up-Regulation
title_sort advanced glycation end-products induce apoptosis in pancreatic islet endothelial cells via nf-κb-activated cyclooxygenase-2/prostaglandin e(2) up-regulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4405342/
https://www.ncbi.nlm.nih.gov/pubmed/25898207
http://dx.doi.org/10.1371/journal.pone.0124418
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