The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid

SUMMARY: Valproic acid (VPA), an antiepileptic drug, has been demonstrated to damage histology and to change tyrosine phosphorylation patterns with increased oxidative stress in perirenal tissues. This study aimed to investigate the effect of VPA on microstructure, tyrosine phosphorylation, and lipi...

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Autores principales: Maneenin,Chanwit, Lapyuneyong,Natthapol, Tongpan,Saranya, Yannasithinon,Supataechasit, Burawat,Jaturon, Maneenin,Naowarat, Sukhorum,Wannisa, Arun,Supatcharee, Iamsaard,Sitthichai
Lenguaje:English
Publicado: Sociedad Chilena de Anatomía 2019
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Acceso en línea:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-95022019000100065
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spelling oai:scielo:S0717-950220190001000652019-09-11The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic AcidManeenin,ChanwitLapyuneyong,NatthapolTongpan,SaranyaYannasithinon,SupataechasitBurawat,JaturonManeenin,NaowaratSukhorum,WannisaArun,SupatchareeIamsaard,Sitthichai Valproic acid Vasodilatation Tyrosine phosphorylation Kidney Rats SUMMARY: Valproic acid (VPA), an antiepileptic drug, has been demonstrated to damage histology and to change tyrosine phosphorylation patterns with increased oxidative stress in perirenal tissues. This study aimed to investigate the effect of VPA on microstructure, tyrosine phosphorylation, and lipid peroxidation of rat kidney. Adult male rats were divided into control and VPA-treated groups intraperitoneally injected with normal saline and VPA 500 mg/kgBW for 10 consecutive days, respectively (n = 7 each). The blood serum was examined for biochemical levels. The kidney tissues were routinely processed for histological observation. Total proteins from kidney were extracted to assay the malondialdehyde (MDA) levels and phosphorylation expression. The results showed that VPA significantly decreased blood glucose levels while tend to increase urea nitrogen and creatinine. MDA levels in VPA group were significantly higher that of control. Renal cortex of VPA-treated animals revealed vasodilatations. Although the ratio of a renal phosphorylated 72 kDa protein/ beta actin expression seemed to be not different in both groups, VPA significantly decreased the intensity of beta actin. In conclusion, VPA dilates renal microvasculature with increasing of MDA but suppresses the actin expression.info:eu-repo/semantics/openAccessSociedad Chilena de AnatomíaInternational Journal of Morphology v.37 n.1 20192019-01-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-95022019000100065en10.4067/S0717-95022019000100065
institution Scielo Chile
collection Scielo Chile
language English
topic Valproic acid
Vasodilatation
Tyrosine phosphorylation
Kidney
Rats
spellingShingle Valproic acid
Vasodilatation
Tyrosine phosphorylation
Kidney
Rats
Maneenin,Chanwit
Lapyuneyong,Natthapol
Tongpan,Saranya
Yannasithinon,Supataechasit
Burawat,Jaturon
Maneenin,Naowarat
Sukhorum,Wannisa
Arun,Supatcharee
Iamsaard,Sitthichai
The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid
description SUMMARY: Valproic acid (VPA), an antiepileptic drug, has been demonstrated to damage histology and to change tyrosine phosphorylation patterns with increased oxidative stress in perirenal tissues. This study aimed to investigate the effect of VPA on microstructure, tyrosine phosphorylation, and lipid peroxidation of rat kidney. Adult male rats were divided into control and VPA-treated groups intraperitoneally injected with normal saline and VPA 500 mg/kgBW for 10 consecutive days, respectively (n = 7 each). The blood serum was examined for biochemical levels. The kidney tissues were routinely processed for histological observation. Total proteins from kidney were extracted to assay the malondialdehyde (MDA) levels and phosphorylation expression. The results showed that VPA significantly decreased blood glucose levels while tend to increase urea nitrogen and creatinine. MDA levels in VPA group were significantly higher that of control. Renal cortex of VPA-treated animals revealed vasodilatations. Although the ratio of a renal phosphorylated 72 kDa protein/ beta actin expression seemed to be not different in both groups, VPA significantly decreased the intensity of beta actin. In conclusion, VPA dilates renal microvasculature with increasing of MDA but suppresses the actin expression.
author Maneenin,Chanwit
Lapyuneyong,Natthapol
Tongpan,Saranya
Yannasithinon,Supataechasit
Burawat,Jaturon
Maneenin,Naowarat
Sukhorum,Wannisa
Arun,Supatcharee
Iamsaard,Sitthichai
author_facet Maneenin,Chanwit
Lapyuneyong,Natthapol
Tongpan,Saranya
Yannasithinon,Supataechasit
Burawat,Jaturon
Maneenin,Naowarat
Sukhorum,Wannisa
Arun,Supatcharee
Iamsaard,Sitthichai
author_sort Maneenin,Chanwit
title The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid
title_short The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid
title_full The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid
title_fullStr The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid
title_full_unstemmed The Alterations of Microvasculature, Tyrosine Phosphorylation, and Lipid Peroxidation in Kidney of Rats Treated with Valproic Acid
title_sort alterations of microvasculature, tyrosine phosphorylation, and lipid peroxidation in kidney of rats treated with valproic acid
publisher Sociedad Chilena de Anatomía
publishDate 2019
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-95022019000100065
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