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High glutamate attenuates S100B and LDH outputs from rat cortical slices enhanced by either oxygen-glucose deprivation or menadione

dc.contributor.buuauthorDemircan, Celaleddin
dc.contributor.buuauthorGül, Zülfiye
dc.contributor.buuauthorBüyükuysal, Rıfat Levent
dc.contributor.departmentTıp Fakültesi
dc.contributor.departmentTıbbi Farmakoloji Ana Bilim Dalı
dc.contributor.orcid0000-0002-8872-0074
dc.contributor.researcheridAAF-9939-2020
dc.contributor.researcheridAAH-1657-2021
dc.contributor.scopusid55399735400
dc.contributor.scopusid56086542900
dc.contributor.scopusid6602686612
dc.date.accessioned2024-02-22T11:52:36Z
dc.date.available2024-02-22T11:52:36Z
dc.date.issued2014-03-28
dc.description.abstractOne hour incubation of rat cortical slices in a medium without oxygen and glucose (oxygen-glucose deprivation, OGD) increased S100B release to 6.53 +/- A 0.3 ng/ml/mg protein from its control value of 3.61 +/- A 0.2 ng/ml/mg protein. When these slices were then transferred to a medium containing oxygen and glucose (reoxygenation, REO), S100B release rose to 344 % of its control value. REO also caused 192 % increase in lactate dehydrogenase (LDH) leakage. Glutamate added at millimolar concentration into the medium decreased OGD or REO-induced S100B release and REO-induced LDH leakage. Alpha-ketoglutarate, a metabolic product of glutamate, was found to be as effective as glutamate in decreasing the S100B and LDH outputs. Similarly lactate, 2-ketobutyrate and ethyl pyruvate, a lipophilic derivative of pyruvate, also exerted a glutamate-like effect on S100B and LDH outputs. Preincubation with menadione, which produces H2O2 intracellularly, significantly increased S100B and LDH levels in normoxic medium. All drugs tested in the present study, with the exception of pyruvate, showed a complete protection against menadione preincubation. Additionally, each OGD-REO, menadione or H2O2-induced mitochondrial energy impairments determined by 2,3,5-triphenyltetrazolium chloride (TTC) staining and OGD-REO or menadione-induced increases in reactive oxygen substances (ROS) determined by 2,7-dichlorofluorescin diacetate (DCFH-DA) were also recovered by glutamate. Interestingly, H2O2-induced increase in fluorescence intensity derived from DCFH-DA in a slice-free physiological medium was attenuated significantly by glutamate and alpha-keto acids. All these drug actions support the conclusion that high glutamate, such as alpha-ketoglutarate and other keto acids, protects the slices against OGD- and REO-induced S100B and LDH outputs probably by scavenging ROS in addition to its energy substrate metabolite property.
dc.identifier.citationDemircan, C. vd. (2014). "High glutamate attenuates S100B and LDH outputs from rat cortical slices enhanced by either oxygen-glucose deprivation or menadione". Neurochemical Research, 39(7), 1232-1244.
dc.identifier.doi10.1007/s11064-014-1301-7
dc.identifier.eissn1573-6903
dc.identifier.endpage1244
dc.identifier.issn0364-3190
dc.identifier.issue7
dc.identifier.pubmed24710790
dc.identifier.scopus2-s2.0-84904550211
dc.identifier.startpage1232
dc.identifier.urihttps://link.springer.com/article/10.1007/s11064-014-1301-7
dc.identifier.urihttps://hdl.handle.net/11452/39912
dc.identifier.volume39
dc.identifier.wos000339727300007
dc.indexed.wosSCIE
dc.language.isoen
dc.publisherSpringer
dc.relation.journalNeurochemical Research
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi
dc.rightsinfo:eu-repo/semantics/closedAccess
dc.subjectGlutamate
dc.subjectTTC staining
dc.subjectLDH
dc.subjectReoxygenation (REO)
dc.subjectOxygen-glucose deprivation (OGD)
dc.subjectS100B
dc.subjectReactive oxygen substances (ROS)
dc.subjectBiochemistry & molecular biology
dc.subjectNeurosciences & neurology
dc.subjectPeroxide-induced toxicity
dc.subjectInduced dopamine release
dc.subjectAnoxic depolarization
dc.subjectAcute ischemic-stroke
dc.subjectEthyl pyruvate
dc.subjectAmino-acid release
dc.subjectBrain-slices
dc.subjectOxidative stress
dc.subjectIn-vitro
dc.subjectStriatal slices
dc.subjectRattus
dc.subject.emtreeAnimal tissue
dc.subject.emtreeArticle
dc.subject.emtreeBrain cortex
dc.subject.emtreeBrain oxygen consumption
dc.subject.emtreeBrain slice
dc.subject.emtreeFemale
dc.subject.emtreeGlucose brain level
dc.subject.emtreeMale
dc.subject.emtreeMetabolite
dc.subject.emtreeMitochondrion
dc.subject.emtreeNonhuman
dc.subject.emtreePriority journal
dc.subject.emtreeRat
dc.subject.emtreeAnimal
dc.subject.emtreeAntagonists and inhibitors
dc.subject.emtreeBrain cortex
dc.subject.emtreeDeficiency
dc.subject.emtreeDose response
dc.subject.emtreeDrug effects
dc.subject.emtreeMetabolism
dc.subject.emtreeOrgan culture technique
dc.subject.emtreeSprague dawley rat
dc.subject.emtree2 oxoglutaric acid
dc.subject.emtreeGlucose
dc.subject.emtreeGlutamic acid
dc.subject.emtreeHydrogen peroxide
dc.subject.emtreeLactate dehydrogenase
dc.subject.emtreeMenadione
dc.subject.emtreeOxygen
dc.subject.emtreeProtein s100b
dc.subject.emtreePyruvic acid
dc.subject.emtreeTriphenyltetrazolium
dc.subject.emtreeGlutamic acid
dc.subject.emtreeLactate dehydrogenase
dc.subject.emtreeMenadione
dc.subject.emtreeProtein s100b
dc.subject.emtreeS100b protein, rat
dc.subject.meshAnimals
dc.subject.meshCerebral cortex
dc.subject.meshDose-response relationship, drug
dc.subject.meshFemale
dc.subject.meshGlucose
dc.subject.meshGlutamic acid
dc.subject.meshL-lactate dehydrogenase
dc.subject.meshOrgan culture techniques
dc.subject.meshOxygen
dc.subject.meshRats
dc.subject.meshRats, sprague-dawley
dc.subject.meshS100 calcium binding protein beta subunit
dc.subject.meshVitamin k 3
dc.subject.scopusEthyl Pyruvate; Pyruvic Acid; Animals
dc.subject.wosBiochemistry & molecular biology
dc.subject.wosNeurosciences
dc.titleHigh glutamate attenuates S100B and LDH outputs from rat cortical slices enhanced by either oxygen-glucose deprivation or menadione
dc.typeArticle
dc.wos.quartileQ3
dspace.entity.typePublication
local.contributor.departmentTıp Fakültesi/Tıbbi Farmakoloji Ana Bilim Dalı
local.indexed.atWOS
local.indexed.atScopus
local.indexed.atPubMed

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