Search results for "N-Methylaspartate"

showing 10 items of 27 documents

Choline is a Selective Agonist of α7 Nicotinic Acetylcholine Receptors in the Rat Brain Neurons

1998

In the present study, we demonstrate that choline, a precursor of acetylcholine (ACh) and a product of acetylcholine hydrolysis by acetylcholinesterase (AChE), acts as an efficient and relatively selective agonist of alpha7-containing nicotinic acetylcholine receptors (nAChR) in neurons cultured from the rat hippocampus, olfactory bulb and thalamus as well as in PC12 cells. Choline was able to activate postsynaptic and presynaptic alpha7 nAChRs, with the latter action resulting in the release of other neurotransmitters. Although choline was approximately one order of magnitude less potent than ACh (EC50 of 1.6 mM for choline and 0.13 mM for ACh), it acted as a full agonist at alpha7 nAChRs.…

AgonistN-MethylaspartatePatch-Clamp Techniquesmedicine.drug_classNicotinic AntagonistsMecamylaminePharmacologyHippocampusPC12 Cellscomplex mixturesCholineRats Sprague-DawleyMethylamineschemistry.chemical_compoundThalamusPostsynaptic potentialExcitatory Amino Acid AgonistsmedicineAnimalsCholineNicotinic AgonistsNootropic AgentsAcetylcholine receptorNeuronsGeneral NeuroscienceBungarotoxinsOlfactory BulbCholine acetyltransferaseAcetylcholinesteraseAcetylcholineRatsNicotinic agonistnervous systemchemistryBiochemistryDimethylphenylpiperazinium IodideAcetylcholinemedicine.drugEuropean Journal of Neuroscience
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Excitotoxic Hippocampal Membrane Breakdown and its Inhibition by Bilobalide: Role of Chloride Fluxes

2003

We have previously shown that hypoxia and N-methyl-D-aspartate (NMDA) receptor activation induce breakdown of choline-containing phospholipids in rat hippocampus, a process which is mediated by calcium influx and phospholipase A (2) activation. Bilobalide, a constituent of Ginkgo biloba, inhibited this process in a potent manner (Weichel et al., Naunyn-Schmiedeberg's Arch. Pharmacol. 360, 609-615, 1999). In this study, we used fluorescence microscopy and radioactive flux measurements to show that bilobalide does not interfere with NMDA-induced calcium influx. Instead, bilobalide seems to inhibit NMDA-induced fluxes of chloride ions through ligand-operated chloride channels. In our experimen…

Calcium IsotopesMaleN-Methylaspartatemedicine.drug_classGlycineCyclopentanes44'-Diisothiocyanostilbene-22'-Disulfonic AcidIn Vitro TechniquesHippocampusChlorideCholinechemistry.chemical_compoundChloridesBilobalideFurosemideExcitatory Amino Acid AgonistsmedicineAnimalsCholineDrug InteractionsPharmacology (medical)Channel blockerRats WistarDiureticsFuransCell MembraneGeneral MedicineReceptor antagonistPyrrolidinonesRatsPsychiatry and Mental healthGinkgolidesnervous systemchemistryBiochemistryDIDSPotassiumChloride channelBiophysicsNMDA receptorCalciumDiterpenesDizocilpine MaleateExcitatory Amino Acid AntagonistsSynaptosomesmedicine.drugPharmacopsychiatry
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Fructose-1,6-Bisphosphate Protects Hippocampal Rat Slices from NMDA Excitotoxicity

2019

Effects of fructose 1,6-bisphosphate (F-1,6-P2) towards N-methyl-d-aspartate NMDA excitotoxicity were evaluated in rat organotypic hippocampal brain slice cultures (OHSC) challenged for 3 h with 30 &mu

Fructose 16-bisphosphateExcitotoxicityFructose-bisphosphate aldolaseorganotypic hippocampal brainslice culturesmedicine.disease_causeHippocampuslcsh:Chemistrychemistry.chemical_compoundenergymetabolismFructose-Bisphosphate Aldolaseenergy metabolismfructose-16-bisphosphatelcsh:QH301-705.5Spectroscopy<i>N</i>-methyl-<span style="font-variant: small-caps">d</span>-aspartatebiologyChemistryorganotypic hippocampal brain slice culturesGlyceraldehyde-3-Phosphate DehydrogenasesGeneral MedicineComputer Science ApplicationsFructose-BisphosphataseNeuroprotective AgentsNMDA receptorexcitotoxicityPhosphofructokinaseN-methyl-d-aspartatemedicine.medical_specialtyN-MethylaspartateFructose 16-bisphosphataseCatalysisArticleInorganic ChemistryNecrosisInternal medicinemitochondrial dysfunctionmedicineAnimalsPhysical and Theoretical ChemistryRats WistarMolecular BiologySettore BIO/10 - BIOCHIMICAOrganic ChemistryAldolase AMetabolismPurine NucleosidesRatsEndocrinologylcsh:Biology (General)lcsh:QD1-999Phosphofructokinases6-bisphosphatebiology.proteinfructose-1; 6-bisphosphate; N-methyl-d-aspartate; excitotoxicity; energymetabolism; mitochondrial dysfunction; organotypic hippocampal brainslice culturesfructose-1
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Chronic exposure to ammonia induces isoform-selective alterations in the intracellular distribution and NMDA receptor-mediated translocation of prote…

2004

Hyperammonemia is responsible for most neurological alterations in patients with hepatic encephalopathy by mechanisms that remain unclear. Hyperammonemia alters phosphorylation of neuronal protein kinase C (PKC) substrates and impairs NMDA receptor-associated signal transduction. The aim of this work was to analyse the effects of hyperammonemia on the amount and intracellular distribution of PKC isoforms and on translocation of each isoform induced by NMDA receptor activation in cerebellar neurons. Chronic hyperammonemia alters differentially the intracellular distribution of PKC isoforms. The amount of all isoforms (except PKC zeta) was reduced (17-50%) in the particulate fraction. The con…

Intracellular Fluidmedicine.medical_specialtyN-MethylaspartateChromosomal translocationBiologyPKC alphaBiochemistryReceptors N-Methyl-D-AspartateCellular and Molecular NeuroscienceAmmoniaInternal medicineCerebellummedicineAnimalsHyperammonemiaRats WistarProtein kinase CCells CulturedProtein Kinase CDiacylglycerol kinaseNeuronsPhospholipase CDose-Response Relationship DrugHyperammonemiamedicine.diseaseCell biologyRatsIsoenzymesCytosolProtein TransportEndocrinologySignal transductionJournal of neurochemistry
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Bilobalide, a constituent of Ginkgo biloba , inhibits NMDA-induced phospholipase A 2 activation and phospholipid breakdown in rat hippocampus

2000

In rat hippocampal slices superfused with magnesium-free buffer, glutamate (1 mM) caused the release of large amounts of choline due to phospholipid breakdown. This phenomenon was mimicked by N-methyl-D-aspartate (NMDA) in a calcium-sensitive manner and was blocked by NMDA receptor antagonists such as MK-801 and 7-chlorokynurenate. The NMDA-induced release of choline was not caused by activation of phospholipase D but was mediated by phospholipase A2 (PLA2) activation as the release of choline was accompanied by the formation of lyso-phosphatidylcholine (lyso-PC) and glycerophospho-choline (GPCh) and was blocked by 5-[2-(2-carboxyethyl)-4-dodecanoyl-3,5-dimethylpyrrol-1-yl]pentano ic acid, …

MaleMicrodialysisN-MethylaspartateMicrodialysisGlycineCyclopentanesPharmacologyHippocampal formationHippocampusReceptors N-Methyl-D-AspartatePhospholipases ACholinechemistry.chemical_compoundPhospholipase A2BilobalideSeizuresAnimalsCholineRats WistarFuransCells CulturedPhospholipidsPharmacologyPlants MedicinalDose-Response Relationship DrugbiologyPhospholipase DGlutamate receptorGinkgo bilobaLysophosphatidylcholinesGeneral MedicineGlycerylphosphorylcholineRatsEnzyme ActivationPhospholipases A2Ginkgolideschemistrybiology.proteinNMDA receptorDiterpenesNaunyn-Schmiedeberg's Archives of Pharmacology
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Role of GABAergic antagonism in the neuroprotective effects of bilobalide

2006

Bilobalide, a constituent of Ginkgo biloba, has neuroprotective properties. Its mechanism of action is unknown but it was recently found to block GABA(A) receptors. The goal of this study was to test the potential role of a GABAergic mechanism for the neuroprotective activity of bilobalide. In rat hippocampal slices exposed to NMDA, release of choline indicates breakdown of membrane phospholipids. NMDA-induced choline release was almost completely blocked in the presence of bilobalide (10 microM) and under low-chloride conditions. Bicuculline (100 microM), a competitive antagonist at GABA(A) receptors, reduced NMDA-induced choline release to a small extent (-23%). GABA (100 microM) partiall…

MaleN-MethylaspartateBrain EdemaCyclopentanesIn Vitro TechniquesPharmacologyBicucullineInhibitory postsynaptic potentialHippocampusArticlegamma-Aminobutyric acidCholineGABA AntagonistsRats Sprague-Dawleychemistry.chemical_compoundBilobalideExcitatory Amino Acid AgonistsmedicineAnimalsPicrotoxinDrug InteractionsFuransMolecular Biologygamma-Aminobutyric AcidChemistryGABAA receptorGeneral NeuroscienceBicucullineGABA receptor antagonistBridged Bicyclo Compounds HeterocyclicRatsGinkgolidesNeuroprotective Agentsnervous systemNonlinear DynamicsMechanism of actionArea Under CurveGABAergicNeurology (clinical)medicine.symptomSynaptosomesDevelopmental Biologymedicine.drugBrain Research
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Low Density Lipoprotein Receptor-related Protein 1 (LRP1) Modulates N-Methyl-d-aspartate (NMDA) Receptor-dependent Intracellular Signaling and NMDA-i…

2013

The lipoprotein receptor LRP1 is essential in neurons of the central nervous system, as was revealed by the analysis of conditional Lrp1-deficient mouse models. The molecular basis of its neuronal functions, however, is still incompletely understood. Here we show by immunocytochemistry, electron microscopy, and postsynaptic density preparation that LRP1 is located postsynaptically. Basal and NMDA-induced phosphorylation of the transcription factor cAMP-response element-binding protein (CREB) as well as NMDA target gene transcription are reduced in LRP1-deficient neurons. In control neurons, NMDA promotes γ-secretase-dependent release of the LRP1 intracellular domain (LRP1-ICD). However, pul…

MaleN-MethylaspartateCell SurvivalBlotting WesternGene ExpressionMice Transgenicmacromolecular substancesAMPA receptorBiologyCREBReceptors N-Methyl-D-AspartateBiochemistryMiceNeurobiologyPostsynaptic potentialAnimalsMolecular BiologyCells CulturedMice KnockoutNeuronsReverse Transcriptase Polymerase Chain Reactionmusculoskeletal neural and ocular physiologyTumor Suppressor ProteinsMembrane ProteinsCell BiologyEmbryo MammalianLRP1Cell biologyProtein SubunitsReceptors LDLnervous systemSynapsesLDL receptorbiology.proteinNMDA receptorFemaleAmyloid Precursor Protein SecretasesSignal transductionDisks Large Homolog 4 ProteinGuanylate KinasesPostsynaptic densityLow Density Lipoprotein Receptor-Related Protein-1Protein BindingSignal TransductionSynaptosomesJournal of Biological Chemistry
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Lateral habenula and hippocampus: A complex interaction raphe cells-mediated

1997

The study has shown an excitatory influence exerted by lateral habenula (LH) on hippocampal pyramidal cells. The modulatory influence is paradoxically serotonine-mediated; in fact all LH stimulation effects were abolished by intrahippocampal iontophoretic methysergide application. The data suggest the involvement of dorsal raphe nucleus. In fact, the dorsal raphe nucleus stimulation caused on hippocampus an expected inhibitory effect antagonized by intrahippocampal iontophoretic methysergide application. In the context of this neural structure we have highlighted a disinhibitory relation between two types of cells: slow serotonergic efferent neurones and fast GABAergic interneurones. The di…

MaleN-MethylaspartateMethysergideCell CommunicationBicucullineGABA AntagonistsDorsal raphe nucleusmedicineAnimalsRats WistarBiological PsychiatryNeuronsHabenulaRapheChemistryPyramidal CellsIontophoresisBicucullineGABA receptor antagonistElectric StimulationRatsPsychiatry and Mental healthHabenula2-Amino-5-phosphonovaleratenervous systemNeurologyRaphe NucleiGABAergicNeurology (clinical)Raphe nucleiNeurosciencemedicine.drugJournal of Neural Transmission
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NMDA-GABA interactions in an animal model of behaviour: a gating mechanism from motivation toward psychotic-like symptoms

1994

We studied the effects of desipramine, alprazolam, muscimol and dizocilpine (MK-801) (alone or associated with desipramine) in the forced swimming test in rats after long-lasting termination of chronic exposure to vehicle and pentylenetetrazol. Sensitisation with pentylenetetrazol was ineffective in changing immobility time in the forced swimming test compared to vehicle treatment; pentylenetetrazol enhanced the anti-immobility effect of desipramine, abolished the anti-immobility effect of alprazolam and did not affect the anti-immobility effect of muscimol. MK-801 at the dose that did not modify immobility time in vehicle-treated rats and in pentylenetetrazol-treated animals strongly poten…

MaleN-MethylaspartatePoison controlGatingMotor ActivityPharmacologybehavioral disciplines and activitieschemistry.chemical_compoundDesipramineKindling NeurologicmedicineAnimalsPharmacology (medical)Rats WistarPentylenetetrazolSwimminggamma-Aminobutyric AcidBiological PsychiatryPharmacologyMotivationAlprazolamBehavior AnimalMuscimolDesipramineRatsnervous system diseasesDizocilpineDisease Models AnimalPsychiatry and Mental healthPsychotic DisordersNeurologyAlprazolamMuscimolchemistryAnesthesiaPentylenetetrazoleNeurology (clinical)Dizocilpine MaleatePsychologymedicine.drugBehavioural despair testEuropean Neuropsychopharmacology
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Acamprosate blocks the increase in dopamine extracellular levels in nucleus accumbens evoked by chemical stimulation of the ventral hippocampus.

2003

Recently, we have shown that acamprosate is able to modulate extracellular dopamine (DA) levels in the nucleus accumbens (NAc) and may act as an antagonist of N-methyl-D-aspartate (NMDA) receptors. Neurochemical studies show that chemical stimulation (using NMDA) of the ventral subiculum (vSub) of the hippocampus produces robust and sustained increases in extracellular DA levels in the NAc, an effect mediated through ionotropic glutamate (iGlu) receptors. The present study examines whether acamprosate locally infused in the NAc of rats could block or attenuate the increase in NAc extracellular DA elicited by chemical stimulation (with 5 mM NMDA) of the ventral subiculum of the hippocampus. …

MaleN-MethylaspartateTaurineAcamprosateDopamineMicrodialysisHippocampusStimulationPharmacologyNucleus accumbensHippocampusNucleus AccumbensStereotaxic TechniquesDopaminemedicineExcitatory Amino Acid AgonistsAnimalsRats WistarPharmacologyChemistrySubiculumGeneral MedicineStimulation ChemicalRatsAcamprosatenervous systemNMDA receptorDopamine AntagonistsExtracellular Spacemedicine.drugIonotropic effectNaunyn-Schmiedeberg's archives of pharmacology
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