Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation

Menispermum dauricum rhizome has been widely used in China to treat various cardiovascular and thrombosis disorders. Some studies have reported that the phenolic alkaloids of Menispermum dauricum rhizome (PAM) have protective effects against brain ischemia injury, but the mechanism of this action re...

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Main Authors: Lian-Jun Guo, Jie Ding, Jin-Jin Zhan, Mei Zhou, Xi Sun, Yang Chen, Bo Zhao
Format: Article
Language:English
Published: MDPI AG 2012-03-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/17/3/2725/
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spelling doaj-9d5ab96d998e44dfb72e3b58b3e3cc1b2020-11-25T00:21:12ZengMDPI AGMolecules1420-30492012-03-011732725273710.3390/molecules17032725Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS GenerationLian-Jun GuoJie DingJin-Jin ZhanMei ZhouXi SunYang ChenBo ZhaoMenispermum dauricum rhizome has been widely used in China to treat various cardiovascular and thrombosis disorders. Some studies have reported that the phenolic alkaloids of Menispermum dauricum rhizome (PAM) have protective effects against brain ischemia injury, but the mechanism of this action remains to be clarified. In the present study, we investigated the possible mechanisms of action of PAM on experimental brain ischemia injury. Oxygen and glucose deprivation (OGD) in rat primary cortical cultures and middle cerebral artery occlusion in rats were used to mimic ischemia-reperfusion injury, respectively. The results suggested that PAM protected rat primary cortical cultures against OGD-reoxygenation induced cytotoxicity. PAM decreased extracellular glutamate content and markedly prevented the effects induced by OGD on protein level of GLT-1 and EAAC1 glutamate transporters. In addition, it reduced intracellular ROS generation. In vivo, PAM significantly reduced cerebral infarct area and ameliorated neurological functional deficits at different time points. Our findings revealed that the possible mechanism of action of PAM protected against brain ischemia injury involves regulation of GLT-1, EAAC1 and ROS generation.http://www.mdpi.com/1420-3049/17/3/2725/Menispermum dauricumphenolic alkaloidsbrain ischemia-reperfusionglutamate transporterreactive oxygen species
collection DOAJ
language English
format Article
sources DOAJ
author Lian-Jun Guo
Jie Ding
Jin-Jin Zhan
Mei Zhou
Xi Sun
Yang Chen
Bo Zhao
spellingShingle Lian-Jun Guo
Jie Ding
Jin-Jin Zhan
Mei Zhou
Xi Sun
Yang Chen
Bo Zhao
Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation
Molecules
Menispermum dauricum
phenolic alkaloids
brain ischemia-reperfusion
glutamate transporter
reactive oxygen species
author_facet Lian-Jun Guo
Jie Ding
Jin-Jin Zhan
Mei Zhou
Xi Sun
Yang Chen
Bo Zhao
author_sort Lian-Jun Guo
title Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation
title_short Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation
title_full Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation
title_fullStr Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation
title_full_unstemmed Phenolic Alkaloids from Menispermum dauricum Rhizome Protect against Brain Ischemia Injury via Regulation of GLT-1, EAAC1 and ROS Generation
title_sort phenolic alkaloids from menispermum dauricum rhizome protect against brain ischemia injury via regulation of glt-1, eaac1 and ros generation
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2012-03-01
description Menispermum dauricum rhizome has been widely used in China to treat various cardiovascular and thrombosis disorders. Some studies have reported that the phenolic alkaloids of Menispermum dauricum rhizome (PAM) have protective effects against brain ischemia injury, but the mechanism of this action remains to be clarified. In the present study, we investigated the possible mechanisms of action of PAM on experimental brain ischemia injury. Oxygen and glucose deprivation (OGD) in rat primary cortical cultures and middle cerebral artery occlusion in rats were used to mimic ischemia-reperfusion injury, respectively. The results suggested that PAM protected rat primary cortical cultures against OGD-reoxygenation induced cytotoxicity. PAM decreased extracellular glutamate content and markedly prevented the effects induced by OGD on protein level of GLT-1 and EAAC1 glutamate transporters. In addition, it reduced intracellular ROS generation. In vivo, PAM significantly reduced cerebral infarct area and ameliorated neurological functional deficits at different time points. Our findings revealed that the possible mechanism of action of PAM protected against brain ischemia injury involves regulation of GLT-1, EAAC1 and ROS generation.
topic Menispermum dauricum
phenolic alkaloids
brain ischemia-reperfusion
glutamate transporter
reactive oxygen species
url http://www.mdpi.com/1420-3049/17/3/2725/
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