Search results for "Neuronal Plasticity"

showing 10 items of 166 documents

Alterations in the expression of PSA-NCAM and synaptic proteins in the dorsolateral prefrontal cortex of psychiatric disorder patients.

2012

Alterations in the structure and physiology of the prefrontal cortex (PFC) have been found in different psychiatric disorders and some of them involve inhibitory networks, especially in schizophrenia and major depression. Changes in the structure of these networks may be mediated by the polysialylated neural cell adhesion molecule (PSA-NCAM), a molecule related to neuronal structural plasticity, expressed in the PFC exclusively by interneurons. Different studies have found that PSA-NCAM expression in the hippocampus and the amygdala is altered in schizophrenia, major depression and animal models of these disorders, in parallel to changes in the expression of molecules related to inhibitory …

Adultmedicine.medical_specialtyBipolar DisorderSynaptophysinHippocampusPrefrontal CortexNeural Cell Adhesion Molecule L1NeurotransmissionHippocampusmedicineNeuropilHumansPsychiatryPrefrontal cortexAgedDepressive Disorder MajorNeuronal PlasticitybiologyGlutamate DecarboxylaseGeneral NeuroscienceMental DisordersNeural InhibitionMiddle AgedAmygdalaDorsolateral prefrontal cortexmedicine.anatomical_structurenervous systemSynaptic plasticitySynapsesVesicular Glutamate Transport Protein 1Synaptophysinbiology.proteinSchizophreniaSialic AcidsNeural cell adhesion moleculePsychologyNeuroscienceNeuroscience letters
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Semaphorin and plexin gene expression is altered in the prefrontal cortex of schizophrenia patients with and without auditory hallucinations

2015

Auditory hallucinations (AH) are clinical hallmarks of schizophrenia, however little is known about molecular genetics of these symptoms. In this study, gene expression profiling of postmortem brain samples from prefrontal cortex of schizophrenic patients without AH (SNA), patients with AH (SA) and control subjects were compared. Genome-wide expression analysis was conducted using samples of three individuals of each group and the Affymetrix GeneChip Human-Gene 1.0 ST-Array. This analysis identified the Axon Guidance pathway as one of the most differentially expressed network among SNA, SA and CNT. To confirm the transcriptome results, mRNA level quantification of seventeen genes involved i…

Adultmedicine.medical_specialtyHallucinationsSEMA4DDown-RegulationPrefrontal CortexNerve Tissue ProteinsSemaphorinsTranscriptomeMolecular geneticsInternal medicineNeuroplasticitymedicineHumansRNA MessengerPrefrontal cortexBiological PsychiatryAgedOligonucleotide Array Sequence AnalysisAged 80 and overNeuronal PlasticitybiologyGene Expression ProfilingPlexinBrainMiddle Agedmedicine.diseaseAxonsbody regionsGene expression profilingPsychiatry and Mental healthEndocrinologySchizophreniaSchizophreniabiology.proteinPsychologyCell Adhesion MoleculesNeurosciencePsychiatry Research
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A53T-Alpha-Synuclein Overexpression Impairs Dopamine Signaling and Striatal Synaptic Plasticity in Old Mice

2010

BACKGROUND: Parkinson's disease (PD), the second most frequent neurodegenerative disorder at old age, can be caused by elevated expression or the A53T missense mutation of the presynaptic protein alpha-synuclein (SNCA). PD is characterized pathologically by the preferential vulnerability of the dopaminergic nigrostriatal projection neurons. METHODOLOGY/PRINCIPAL FINDINGS: Here, we used two mouse lines overexpressing human A53T-SNCA and studied striatal dysfunction in the absence of neurodegeneration to understand early disease mechanisms. To characterize the progression, we employed young adult as well as old mice. Analysis of striatal neurotransmitter content demonstrated that dopamine (DA…

AgingDopaminelcsh:MedicineMicechemistry.chemical_compoundHomer Scaffolding ProteinsReceptor Cannabinoid CB1lcsh:ScienceLong-term depressionNeurotransmitterChromatography High Pressure LiquidIn Situ Hybridization FluorescenceOligonucleotide Array Sequence AnalysisMice KnockoutNeuronal PlasticityMultidisciplinaryReverse Transcriptase Polymerase Chain ReactionDopaminergicNeurodegenerationGenetics and Genomics/Gene ExpressionElectrophysiologyalpha-SynucleinResearch ArticleRadioimmunoprecipitation Assaymedicine.medical_specialtyNeuronal Calcium-Sensor ProteinsHOMER1Substantia nigraNeurotransmissionBiologyNeurological DisordersInternal medicinemedicineAnimalsHumansddc:610Cyclic Nucleotide Phosphodiesterases Type 7Activating Transcription Factor 2lcsh:RNeuropeptidesmedicine.diseaseMolecular biologyCorpus StriatumMice Mutant StrainsEndocrinologyGenetics and Genomics/Disease ModelschemistrySynaptic plasticitylcsh:QCarrier ProteinsPLoS ONE
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Enhancement of the FGFR1 signaling in the FGFR1-5-HT1A heteroreceptor complex in midbrain raphe 5-HT neuron systems. Relevance for neuroplasticity an…

2015

New findings show existence of FGFR1-5-HT1A heteroreceptor complexes in 5-HT nerve cells of the dorsal and median raphe nuclei of the rat midbrain and hippocampus. Synergistic receptor-receptor interactions in these receptor complexes indicated their enhancing role in hippocampal plasticity. The existence of FGFR1-5-HT1A heteroreceptor complexes also in midbrain raphe 5-HT nerve cells open up the possibility that antidepressant drugs by increasing extracellular 5-HT levels can cause an activation of the FGF-2/FGFR1 mechanism in these nerve cells as well. Therefore, the agonist modulation of the FGFR1-5-HT1A heteroreceptor complexes and their specific role is now determined in rat medullary …

AgonistSerotoninmedicine.medical_specialtymedicine.drug_classCellular differentiationBiophysicsHeteroreceptor complexBiologyHeteroreceptorBiochemistrySettore BIO/09 - FisiologiaCell LineMidbrainDorsal raphe nucleusMesencephalonInternal medicinemedicineAnimalsSerotonin 5-HT1A receptorReceptor Fibroblast Growth Factor Type 1Protein Interaction MapsPhosphorylationExtracellular Signal-Regulated MAP KinasesMolecular BiologyNeurons8-Hydroxy-2-(di-n-propylamino)tetralinNeuronal PlasticityRapheDepressionAnimalExtracellular Signal-Regulated MAP KinaseCell BiologySerotonin 5-HT1 Receptor AgonistsNeuronFibroblast growth factor receptorRatsEndocrinologymedicine.anatomical_structurenervous systemReceptor Serotonin 5-HT1AAutoreceptorRatFibroblast Growth Factor 2Serotonin 5-HT1 Receptor AgonistNeuronDimerizationNeuroscienceDepression; Dimerization; Fibroblast growth factor receptor; Heteroreceptor complex; Neuronal plasticity; Serotonin 5-HT1A receptor; 8-Hydroxy-2-(di-n-propylamino)tetralin; Animals; Cell Line; Extracellular Signal-Regulated MAP Kinases; Fibroblast Growth Factor 2; Mesencephalon; Neurons; Phosphorylation; Rats; Receptor Fibroblast Growth Factor Type 1; Receptor Serotonin 5-HT1A; Serotonin; Serotonin 5-HT1 Receptor Agonists; Neuronal Plasticity; Protein Interaction Maps
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Fibroblast Growth Factor Receptor 1– 5-Hydroxytryptamine 1A Heteroreceptor Complexes and Their Enhancement of Hippocampal Plasticity

2011

Background The hippocampus and its 5-hydroxytryptamine transmission plays an important role in depression related to its involvement in limbic circuit plasticity. Methods The analysis was made with bioluminescence resonance energy transfer, co-immunoprecipitation, in situ proximity ligation assay, binding assay, in cell western and the forced swim test. Results Using bioluminescence resonance energy transfer analysis, fibroblast growth factor receptor 1 (FGFR1)-5-hydroxytryptamine 1A (5-HT1A) receptor complexes have been demonstrated and their specificity and agonist modulation characterized. Their presence based on co-immunoprecipitation and proximity ligation assay has also been indicated…

Agonistmedicine.medical_specialtyReceptor complexmedicine.drug_classProximity ligation assayBiologyHippocampal formationTransfectionHeteroreceptorSettore BIO/09 - FisiologiaHippocampusRats Sprague-DawleyGrowth factor receptorInternal medicineFluorescence Resonance Energy TransfermedicineAnimalsHumansImmunoprecipitationReceptor Fibroblast Growth Factor Type 1Enzyme InhibitorsRNA Small InterferingCells CulturedBiological PsychiatryNeurons8-Hydroxy-2-(di-n-propylamino)tetralinNeuronal PlasticityDose-Response Relationship DrugFibroblast growth factor receptor 1Computational BiologyAllosteric modulation depression fibroblast growth factor receptor heteroreceptor neuronal plasticity serotonin receptorsRatsSerotonin Receptor AgonistsCell biologyEndocrinologyAnimals NewbornFibroblast growth factor receptorReceptor Serotonin 5-HT1AFibroblast Growth Factor 2PeptidesSignal TransductionBiological Psychiatry
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Microglial involvement in neuroplastic changes following focal brain ischemia in rats.

2009

The pathogenesis of ischemic stroke is a complex sequence of events including inflammatory reaction, for which the microglia appears to be a major cellular contributor. However, whether post-ischemic activation of microglial cells has beneficial or detrimental effects remains to be elucidated, in particular on long term brain plasticity events. The objective of our study was to determine, through modulation of post-stroke inflammatory response, to what extent microglial cells are involved in some specific events of neuronal plasticity, neurite outgrowth and synaptogenesis. Since microglia is a source of neurotrophic factors, the identification of the brain-derived neurophic factor (BDNF) as…

Brain InfarctionMaleTime FactorsNeuriteSciencePoly (ADP-Ribose) Polymerase-1SynaptophysinSynaptogenesisCell CountEnzyme-Linked Immunosorbent AssayNerve Tissue ProteinsBrain damageBiologyBrain IschemiaProinflammatory cytokineBrain ischemiaGAP-43 ProteinNeurotrophic factorsNeuroscience/Neuronal Signaling MechanismsmedicineAnimalsRats WistarCD11b AntigenNeuronal PlasticityMultidisciplinaryMicrogliaNeuroscience/Neuronal and Glial Cell BiologyBrain-Derived Neurotrophic FactorQRNeurological Disorders/Cerebrovascular DiseaseAntigens NuclearMacrophage Activationmedicine.diseaseImmunohistochemistryNeuroregenerationRatsEnzyme ActivationProtein Transportmedicine.anatomical_structureBenzamidesImmunologyMedicineMicrogliaPoly(ADP-ribose) Polymerasesmedicine.symptomNeuroscienceResearch ArticleNeurosciencePLoS ONE
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Intrahippocampal transplantation of mesenchymal stromal cells promotes neuroplasticity

2012

Multipotent mesenchymal stromal cells (MSC) secrete soluble factors that stimulate the surrounding microenvironment. Such paracrine effects might underlie the potential benefits of many stem cell therapies. We tested the hypothesis that MSC are able to enhance intrinsic cellular plasticity in the adult rat hippocampus.Rat bone marrow-derived MSC were labeled with very small superparamagnetic iron oxide particles (VSOP), which allowed for non-invasive graft localization by magnetic resonance imaging (MRI). Moreover, MSC were transduced with lentiviral vectors to express the green fluorescent protein (GFP). The effects of bilateral MSC transplantation on hippocampal cellular plasticity were a…

Cancer ResearchCell SurvivalImmunologyCell- and Tissue-Based TherapyBone Marrow CellsCitalopramHippocampal formationBiologyMesenchymal Stem Cell TransplantationFerric CompoundsHippocampusGreen fluorescent proteinParacrine signallingAnimalsImmunology and AllergyGenetics (clinical)Cell ProliferationTransplantationNeuronal PlasticityCell growthMesenchymal stem cellNeurogenesisMesenchymal Stem CellsCell BiologyAnatomyMagnetic Resonance ImagingRatsCell biologyTransplantationOncologyStem cellCytotherapy
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Functional genomics indicate that schizophrenia may be an adult vascular-ischemic disorder

2015

AbstractIn search for the elusive schizophrenia pathway, candidate genes for the disorder from a discovery sample were localized within the energy-delivering and ischemia protection pathway. To test the adult vascular-ischemic (AVIH) and the competing neurodevelopmental hypothesis (NDH), functional genomic analyses of practically all available schizophrenia-associated genes from candidate gene, genome-wide association and postmortem expression studies were performed. Our results indicate a significant overrepresentation of genes involved in vascular function (P<0.001), vasoregulation (that is, perivascular (P<0.001) and shear stress (P<0.01), cerebral ischemia (P<0.001), neurode…

Candidate genemedicine.medical_specialtyPostmortem studiesLong-Term PotentiationBiologySynaptic TransmissionBrain IschemiaBrain ischemiaCellular and Molecular NeuroscienceInternal medicinemedicineHumansGenetic Predisposition to Diseaseddc:610Biological PsychiatryNeuronal PlasticityNeurogenesisGlutamate receptorLong-term potentiationGenomicsmedicine.diseasePsychiatry and Mental healthEndocrinologySchizophreniaSynaptic plasticitySchizophreniaOriginal ArticleNeuroscienceGenome-Wide Association Study
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The endocannabinoid system in anxiety, fear memory and habituation.

2011

Evidence for the involvement of the endocannabinoid system (ECS) in anxiety and fear has been accumulated, providing leads for novel therapeutic approaches. In anxiety, a bidirectional influence of the ECS has been reported, whereby anxiolytic and anxiogenic responses have been obtained after both increases and decreases of the endocannabinoid tone. The recently developed genetic tools have revealed different but complementary roles for the cannabinoid type 1 (CB1) receptor on GABAergic and glutamatergic neuronal populations. This dual functionality, together with the plasticity of CB1 receptor expression, particularly on GABAergic neurons, as induced by stressful and rewarding experiences…

Cannabinoid receptormedicine.drug_classclassical conditioninggamma-aminobutyric acidglutamateAnxietyAnxiolyticstressReceptor Cannabinoid CB1MemoryCannabinoid Receptor ModulatorsmedicineAnimalsHumansneuronal plasticityPharmacology (medical)HabituationendocannabinoidsHabituation PsychophysiologicPharmacologyExtinction (psychology)FearArticleshabituationEndocannabinoid systemPsychiatry and Mental healthAnxiogenicnervous systemcannabinoid CB1 receptorAnxietyMemory consolidationlipids (amino acids peptides and proteins)medicine.symptomPsychologyNeuroscienceJournal of psychopharmacology (Oxford, England)
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Loss of input from the mossy cells blocks maturation of newly generated granule cells.

2007

The objective of this work is to check whether the input from the mossy cells to the inner molecular layer is necessary for the integration and maturation of the newly generated granule cells of the dentate gyrus (DG) in mice, and if after status epilepticus the sprouting of the mossy fibers can substitute for this projection. Newly generated cells were labeled by administration of 5-bromo-deoxyuridine either before or after pilocarpine administration. The neuronal loss in the hippocampus after administration of pilocarpine combined with scopolamine and diazepam seemed restricted to the hilar mossy cells. The maturation of the granule cells was studied using immunohistochemistry for calreti…

Cell typeCell SurvivalCognitive NeuroscienceScopolamineConvulsantsNerve Tissue ProteinsMuscarinic Antagonistschemistry.chemical_compoundMiceS100 Calcium Binding Protein GStatus EpilepticusmedicineAnimalsCell ProliferationDiazepamEpilepsyNeuronal PlasticitybiologyChemistryDentate gyrusStem CellsGranule (cell biology)PilocarpineNuclear ProteinsCell DifferentiationImmunohistochemistryDNA-Binding Proteinsnervous systemBromodeoxyuridinePilocarpineCalbindin 2Dentate GyrusMossy Fibers HippocampalNerve Degenerationbiology.proteinAnticonvulsantsFemaleNeuNCalretininNeuroscienceBromodeoxyuridineBiomarkersSproutingmedicine.drugHippocampus
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