Cargando…

Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway

Resveratrol (RES), a dietary polyphenol compound, has been shown to possess health benefits due to its anti-inflammatory, antioxidative, and antiatherosclerosis properties. Tryptophan metabolite-derived indoxyl sulfate (IS) is identified as one of the uremic toxins and physiological endogenous ligan...

Descripción completa

Detalles Bibliográficos
Autores principales: Assefa, Eskedar Getachew, Yan, Qiaoqiao, Gezahegn, Siameregn Berhe, Salissou, Maibouge Tanko Mahamane, He, Shuiqing, Wu, Nannan, Zuo, Xuezhi, Ying, Chenjiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6900952/
https://www.ncbi.nlm.nih.gov/pubmed/31885805
http://dx.doi.org/10.1155/2019/5847040
_version_ 1783477429219622912
author Assefa, Eskedar Getachew
Yan, Qiaoqiao
Gezahegn, Siameregn Berhe
Salissou, Maibouge Tanko Mahamane
He, Shuiqing
Wu, Nannan
Zuo, Xuezhi
Ying, Chenjiang
author_facet Assefa, Eskedar Getachew
Yan, Qiaoqiao
Gezahegn, Siameregn Berhe
Salissou, Maibouge Tanko Mahamane
He, Shuiqing
Wu, Nannan
Zuo, Xuezhi
Ying, Chenjiang
author_sort Assefa, Eskedar Getachew
collection PubMed
description Resveratrol (RES), a dietary polyphenol compound, has been shown to possess health benefits due to its anti-inflammatory, antioxidative, and antiatherosclerosis properties. Tryptophan metabolite-derived indoxyl sulfate (IS) is identified as one of the uremic toxins and physiological endogenous ligand/activator of aryl hydrocarbon receptor (AHR), associated with atherosclerosis in chronic kidney disease (CKD) patients. Studies have shown that a high serum level of IS causes deleterious effects on health primarily by inducing oxidative stress and endothelial dysfunction. However, the precise mechanisms are still unclear. Here, we investigated the underlying mechanism of IS effect on endothelial permeability and the role of RES on IS-induced endothelial hyperpermeability via the AHR/Src-dependent pathway. Bovine aorta endothelial cells (BAECs) were cultured and incubated with IS in the presence or absence of RES, and transendothelial electrical resistance (TEER) and permeability of cells were measured. Alongside, AHR, Src kinase, and Vascular Endothelial Cadherin (VE-Cadherin) activation were examined. Our data showed that IS reduced TEER of cells resulting in increased permeability. VE-Cadherin, a vital regulator of endothelial permeability, was also significantly activated in response to IS, which appeared to be associated with changes of endothelial permeability and AHR/Src kinase. Interestingly, in this setting, RES reversed the effect of IS and inhibited the increased activation of Src induced by IS-activated AHR and modulated VE-Cadherin and permeability. CH223191, an inhibitor of AHR, significantly inhibits IS-induced endothelial hyperpermeability. Further analysis with treatment of PP2, an inhibitor of Src abolishing Src activation, suggests downstream factors. All our data indicated that IS upregulated the AHR/Src kinase pathway, and increased endothelial permeability and phosphorylation of VE-Cadherin may be represented and provide new strategies for addressing protective properties of RES against Src kinase involved in AHR-mediated endothelial hyperpermeability. The findings may be crucial for managing diseases in which endothelial permeability is compromised, and the dietary polyphenols are involved.
format Online
Article
Text
id pubmed-6900952
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-69009522019-12-29 Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway Assefa, Eskedar Getachew Yan, Qiaoqiao Gezahegn, Siameregn Berhe Salissou, Maibouge Tanko Mahamane He, Shuiqing Wu, Nannan Zuo, Xuezhi Ying, Chenjiang Oxid Med Cell Longev Research Article Resveratrol (RES), a dietary polyphenol compound, has been shown to possess health benefits due to its anti-inflammatory, antioxidative, and antiatherosclerosis properties. Tryptophan metabolite-derived indoxyl sulfate (IS) is identified as one of the uremic toxins and physiological endogenous ligand/activator of aryl hydrocarbon receptor (AHR), associated with atherosclerosis in chronic kidney disease (CKD) patients. Studies have shown that a high serum level of IS causes deleterious effects on health primarily by inducing oxidative stress and endothelial dysfunction. However, the precise mechanisms are still unclear. Here, we investigated the underlying mechanism of IS effect on endothelial permeability and the role of RES on IS-induced endothelial hyperpermeability via the AHR/Src-dependent pathway. Bovine aorta endothelial cells (BAECs) were cultured and incubated with IS in the presence or absence of RES, and transendothelial electrical resistance (TEER) and permeability of cells were measured. Alongside, AHR, Src kinase, and Vascular Endothelial Cadherin (VE-Cadherin) activation were examined. Our data showed that IS reduced TEER of cells resulting in increased permeability. VE-Cadherin, a vital regulator of endothelial permeability, was also significantly activated in response to IS, which appeared to be associated with changes of endothelial permeability and AHR/Src kinase. Interestingly, in this setting, RES reversed the effect of IS and inhibited the increased activation of Src induced by IS-activated AHR and modulated VE-Cadherin and permeability. CH223191, an inhibitor of AHR, significantly inhibits IS-induced endothelial hyperpermeability. Further analysis with treatment of PP2, an inhibitor of Src abolishing Src activation, suggests downstream factors. All our data indicated that IS upregulated the AHR/Src kinase pathway, and increased endothelial permeability and phosphorylation of VE-Cadherin may be represented and provide new strategies for addressing protective properties of RES against Src kinase involved in AHR-mediated endothelial hyperpermeability. The findings may be crucial for managing diseases in which endothelial permeability is compromised, and the dietary polyphenols are involved. Hindawi 2019-11-27 /pmc/articles/PMC6900952/ /pubmed/31885805 http://dx.doi.org/10.1155/2019/5847040 Text en Copyright © 2019 Eskedar Getachew Assefa et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Assefa, Eskedar Getachew
Yan, Qiaoqiao
Gezahegn, Siameregn Berhe
Salissou, Maibouge Tanko Mahamane
He, Shuiqing
Wu, Nannan
Zuo, Xuezhi
Ying, Chenjiang
Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway
title Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway
title_full Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway
title_fullStr Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway
title_full_unstemmed Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway
title_short Role of Resveratrol on Indoxyl Sulfate-Induced Endothelial Hyperpermeability via Aryl Hydrocarbon Receptor (AHR)/Src-Dependent Pathway
title_sort role of resveratrol on indoxyl sulfate-induced endothelial hyperpermeability via aryl hydrocarbon receptor (ahr)/src-dependent pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6900952/
https://www.ncbi.nlm.nih.gov/pubmed/31885805
http://dx.doi.org/10.1155/2019/5847040
work_keys_str_mv AT assefaeskedargetachew roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT yanqiaoqiao roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT gezahegnsiameregnberhe roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT salissoumaibougetankomahamane roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT heshuiqing roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT wunannan roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT zuoxuezhi roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway
AT yingchenjiang roleofresveratrolonindoxylsulfateinducedendothelialhyperpermeabilityviaarylhydrocarbonreceptorahrsrcdependentpathway