Search results for "Neuronal"

showing 10 items of 556 documents

Functional electrical therapy for hemiparesis alleviates disability and enhances neuroplasticity

2011

Impaired motor and sensory function is common in the upper limb in humans after cerebrovascular stroke and it often remains as a permanent disability. Functional electrical stimulation therapy is known to enhance the motor function of the paretic hand; however, the mechanism of this enhancement is not known. We studied whether neural plasticity has a role in this therapy-induced enhancement of the hand motor function in 20 hemiparetic subjects with chronic stroke (age 53 ± 6 years; 7 females and 13 males; 10 with cerebral infarction and 10 with cerebral haemorrhage; and time since incident 2.4 ± 2.0 years). These subjects were randomized to functional electrical therapy or conventional phys…

Male030506 rehabilitationmedicine.medical_specialtymedicine.medical_treatmentNeural ConductionElectric Stimulation TherapyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationNeuroplasticitymedicineHumansFunctional electrical stimulationStrokeAnalysis of VarianceNeuronal Plasticitybusiness.industryCerebral infarctionMotor controlGeneral MedicineMiddle AgedHandmedicine.diseaseTranscranial Magnetic StimulationParesisStrokeTranscranial magnetic stimulationHemiparesisPhysical therapyFemalePrimary motor cortexmedicine.symptom0305 other medical sciencebusiness030217 neurology & neurosurgery
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Lamotrigine differently modulates 7-Nitroindazole and L-Arginine influence on Rat Maximal Dentate Gyrus Activation

2007

The effects induced on the maximal dentate gyrus activation (MDA) by administering the anticonvulsant lamotrigine (LTG), the selective inhibitor of neuronal nitric oxide synthase 7-nitroindazole (7-NI) and the precursor of nitric oxide (NO) synthesis L-arginine, alone or in combination, were studied in urethane anaesthetized rats. Either 7-NI or LTG alone administration reduced the number of convulsing animals following angular bundle (AB) stimulation; their combined treatment induced a further increase of the anticonvulsant effect as also demonstrated by the decrease of MDA and afterdischarge (AD) durations in the animals still responding to AB stimulation. On the contrary, the injection o…

Male7-NitroindazoleIndazolesArgininemedicine.medical_treatmentStimulationPharmacologyLamotrigineArginineLamotrigineNitric OxideSettore BIO/09 - FisiologiaNitric oxidechemistry.chemical_compoundSeizuresmedicineAnimalsEnzyme InhibitorsRats WistarBiological PsychiatryTriazinesDentate gyrusElectric StimulationRatsPsychiatry and Mental healthAnticonvulsantNeurologychemistryDentate GyrusAnticonvulsantsNeurology (clinical)Neuronal Nitric Oxide Synthasemedicine.drugLAMOTRIGINE NITRIC OXIDE EPILEPSY CONTROL
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Phencyclidine inhibits the activity of thalamic reticular gamma-aminobutyric acidergic neurons in rat brain.

2014

Póster presentado en el IX Simposi de Neurobiologia Experimental, celebrado los días 22 y 23 de octubre de 2014 en Barcelona y organizado por la Societat Catalana de Biologia del Institut d'Estudis Catalans

MaleAction PotentialsPhencyclidinePrefrontal CortexLocal field potentialGABA AntagonistsThalamusthalamocortical networksNeural PathwaysmedicinePremovement neuronal activityAnimalsNMDA receptor antagonistsAntipsychotic drugsGABAergic NeuronsRats WistarPrefrontal cortexReceptorPhencyclidineClozapineBiological PsychiatryClozapineAnalysis of VarianceChemistryRatsschizophreniaElectrophysiologyParvalbuminspsychotic symptomsExcitatory postsynaptic potentialHallucinogensNeurosciencemedicine.drugBiological psychiatry
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Nitric oxide modulates striatal neuronal activity via soluble guanylyl cyclase: an in vivo microiontophoretic study in rats.

2003

It is now well established that nitric oxide (NO) acts as a neuromodulator in the central nervous system. To assess the role of NO in modulating striatal activity, single-unit recording was combined with iontophoresis to study presumed spiny projection neurons in urethane-anesthetized male rats. Striatal neurons recorded were essentially quiescent and were therefore activated to fire by the iontophoretic administration of glutamate, pulsed in cycles of 30 sec on and 40 sec off. In this study, iontophoresis of 3-morpholinosydnonimine hydrochloride (SIN 1), a nitric oxide donor, produced reproducible, current-dependent inhibition of glutamate-induced excitation in 12 of 15 striatal neurons, r…

MaleAction PotentialsReceptors Cytoplasmic and NuclearPharmacologyMedium spiny neuronNitric OxideNitric oxideCellular and Molecular Neurosciencechemistry.chemical_compoundSoluble Guanylyl CyclasePremovement neuronal activityAnimalsRats WistarCyclic guanosine monophosphateNeuronsbiologyIontophoresisGlutamate receptorIontophoresisCorpus StriatumRatsNitric oxide synthasenervous systemchemistryBiochemistrySolubilityGuanylate CyclaseMolsidominebiology.proteinSoluble guanylyl cyclaseSynapse (New York, N.Y.)
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Connexin-30 mRNA Is Up-Regulated in Astrocytes and Expressed in Apoptotic Neuronal Cells of Rat Brain Following Kainate-Induced Seizures

2002

Glial connexins (Cxs) make an extensively interconnected functional syncytium created by a network of gap junctions between astrocytes and oligodendrocytes. Among Cxs expressed in the brain, Cx30 is expressed in grey matter astrocytes, as shown at the protein level by immunoistochemistry. In the present study we aimed to perform a detailed study of the regional distribution of Cx30 mRNA in the adult and postnatal developing rat brain, analyzing its expression by in situ hybridization, and determining its cell type localization by double labeling. Recently, it has been suggested that neuronal activity may control the level of intercellular communication between astrocytes through gap junctio…

MaleAgingCell typeGene ExpressionConnexinApoptosisKainate receptorCell CommunicationIn situ hybridizationGrey matterBiologyConnexinsCellular and Molecular NeuroscienceStatus EpilepticusSeizuresExcitatory Amino Acid AgonistsmedicineAnimalsPremovement neuronal activityRNA MessengerRats WistarMolecular BiologyNeuronsSyncytiumKainic AcidGap junctionBrainCell BiologyImmunohistochemistryRatsUp-RegulationCell biologymedicine.anatomical_structureAnimals NewbornAstrocytesNeuroscienceMolecular and Cellular Neuroscience
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Cellular expression of connexins in the rat brain: neuronal localization, effects of kainate-induced seizures and expression in apoptotic neuronal ce…

2003

The identification of connexins (Cxs) expressed in neuronal cells represents a crucial step for understanding the direct communication between neurons and between neuron and glia. In the present work, using a double-labelling method combining in situ hybridization for Cx mRNAs with immunohistochemical detection for neuronal markers, we provide evidence that, among cerebral connexins (Cx26, Cx32, Cx36, Cx37, Cx40, Cx43, Cx45 and Cx47), only Cx45 and Cx36 mRNAs are localized in neuronal cells in both developing and adult rat brain. In order to establish whether connexin expression is influenced in vivo by abnormal neuronal activity, we examined the short-term effects of kainate-induced seizur…

MaleAgingTime FactorsgliaHippocampusConnexinbrain developmentKainate receptorApoptosisIn situ hybridizationBiologyConnexinsgap junctionbrain development; gap junction; gliaSeizuresTubulinmedicineExcitatory Amino Acid AgonistsIn Situ Nick-End LabelingPremovement neuronal activityAnimalsRNA MessengerOrganic ChemicalsRats WistarIn Situ HybridizationFluorescent DyesNeuronsMessenger RNAKainic AcidReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceGap junctionBrainGene Expression Regulation DevelopmentalFluoresceinsImmunohistochemistryCell biologyRatsmedicine.anatomical_structurenervous systemAnimals NewbornPhosphopyruvate HydrataseAutoradiographysense organsNeuronNeuroscienceDensitometryThe European journal of neuroscience
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FGF-2/FGFR1 neurotrophic system expression level and its basal activation do not account for the age-dependent decline of precursor cell proliferatio…

2010

It is largely accepted that neurogenesis in the adult brain decreases with age and reduced levels of local neurotrophic support is speculated to be a contributing factor. Among neurotrophic factors involved on neurogenesis, we focused our attention on the neurotrophic system fibroblast growth factor-2 (FGF-2) and its receptor FGFR1, a potent modulator of precursor cell proliferation. In the present work, we aimed to analyse if potential age-dependent changes of the FGF-2/FGFR1 neurotrophic system may give account for the age-dependent decline of precursor cell proliferation in the neurogenic region of the subventricular zone (SVZ) in the rat brain. Using in situ hybridization and western bl…

MaleAgingmedicine.medical_specialtySubventricular zoneNeurogenesisReceptor expressionFGF-2Subventricular zoneFibroblast growth factorSettore BIO/09 - FisiologiaCerebral VentriclesFGF-2; FGFR1; Neurogenesis; Subventricular zone; Neuronal precursor cells; AgingGrowth factor receptorNeurotrophic factorsInternal medicinePrecursor cellmedicineAnimalsRNA MessengerReceptor Fibroblast Growth Factor Type 1PhosphorylationRats WistarMolecular BiologyCell ProliferationMitogen-Activated Protein Kinase 3biologyPhospholipase C gammaGeneral NeuroscienceNeurogenesisBrainNeuronal precursor cellRatsAdult Stem CellsFGFR1medicine.anatomical_structureEndocrinologyBromodeoxyuridineGene Expression Regulationbiology.proteinFibroblast Growth Factor 1NeurogenesiFibroblast Growth Factor 2Neurology (clinical)Developmental BiologyNeurotrophinBrain Research
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High dose of 8-OH-DPAT decreases maximal dentate gyrus activation and facilitates granular cell plasticity in vivo.

2013

Although several studies have emphasized a crucial role for the serotonergic system in the control of hippocampal excitability, the role of serotonin (5-HT) and its receptors in normal and pathologic conditions, such as temporal lobe epilepsy (TLE), is still unclear. The present study was therefore designed firstly to investigate the acute effect of 8-OH-DPAT, a mixed 5-HT1A/7 receptor agonist, at a high dose (1 mg/kg, i.p.) known to have antiepileptic properties, in a model of acute partial epilepsy in rats. For this purpose, a maximal dentate activation (MDA) protocol was used to measure electrographic seizure onset and duration. In addition, the effect of 8-OH-DPAT on in vivo dentate gyr…

MaleAgonistSerotoninmedicine.medical_specialtymedicine.drug_classSerotonergic1AHippocampal formationDentate gyruSerotonergicSettore BIO/09 - FisiologiaRats Sprague-Dawleychemistry.chemical_compoundEpilepsyMemoryInternal medicineAnimalsMedicineDentate gyrusTemporal lobe epilepsySerotonin receptor5-HT receptor8-Hydroxy-2-(di-n-propylamino)tetralinNeuronal PlasticityDepressionbusiness.industry8-OH-DPATGeneral NeuroscienceDentate gyrusLong-term potentiationmedicine.diseaseRatsSerotonin Receptor AgonistsEndocrinologyDepression Mentalnervous systemchemistryReceptors SerotoninDentate Gyrusbusinessdrugs.Neuroscience
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Mutations in ATP13A2 (PARK9) are associated with an amyotrophic lateral sclerosis-like phenotype, implicating this locus in further phenotypic expans…

2019

Background Amyotrophic lateral sclerosis [1] is a genetically heterogeneous neurodegenerative disorder, characterized by late-onset degeneration of motor neurons leading to progressive limb and bulbar weakness, as well as of the respiratory muscles, which is the primary cause of disease fatality. To date, over 25 genes have been implicated as causative in ALS with C9orf72, SOD1, FUS, and TARDBP accounting for the majority of genetically positive cases. Results We identified two patients of Italian and French ancestry with a clinical diagnosis of juvenile-onset ALS who were mutation-negative in any of the known ALS causative genes. Starting with the index case, a consanguineous family of Ita…

MaleAmyotrophic lateral sclerosis ATP13A2 parkinsonismlcsh:Medicine0302 clinical medicineC9orf72Drug DiscoveryAmyotrophic lateral sclerosisIndex caseZebrafishExome sequencingMotor NeuronsGenetics0303 health sciencesDEMENTIA1184 Genetics developmental biology physiologyMiddle AgedPedigree3. Good healthProton-Translocating ATPasesPhenotypeMolecular MedicineFemaleSettore MED/26 - NeurologiaPrimary ResearchAdultlcsh:QH426-470SOD1BiologyTARDBP03 medical and health sciencesParkinsonian DisordersNeuronal Ceroid-LipofuscinosesExome SequencingGeneticsmedicineAnimalsHumansGenetic Predisposition to DiseaseMolecular Biology030304 developmental biologyGenetic heterogeneityAmyotrophic Lateral Sclerosislcsh:Rmedicine.diseaseDisease Models Animallcsh:GeneticsMutationNeuronal ceroid lipofuscinosis030217 neurology & neurosurgeryPARKINSONISM
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Therapeutic effects of hMAPC and hMSC transplantation after stroke in mice.

2012

Stroke represents an attractive target for stem cell therapy. Although different types of cells have been employed in animal models, a direct comparison between cell sources has not been performed. The aim of our study was to assess the effect of human multipotent adult progenitor cells (hMAPCs) and human mesenchymal stem cells (hMSCs) on endogenous neurogenesis, angiogenesis and inflammation following stroke. BALB/Ca-RAG 2(-/-) γC(-/-) mice subjected to FeCl(3) thrombosis mediated stroke were intracranially injected with 2 × 10(5) hMAPCs or hMSCs 2 days after stroke and followed for up to 28 days. We could not detect long-term engraftment of either cell population. However, in comparison w…

MaleAnatomy and PhysiologyMousemedicine.medical_treatmentCell therapyMiceCell MovementMolecular Cell BiologyNeurobiology of Disease and RegenerationMedicineMultidisciplinaryNeuronal MorphologyNeurogenesisQRBrainInfarction Middle Cerebral ArteryAnimal ModelsStem-cell therapyStrokeAdult Stem Cellsmedicine.anatomical_structureNeurologyMedicineResearch ArticleAdult stem cellCell PhysiologyHistologyCell SurvivalCerebrovascular DiseasesScienceTherapeutic effectsNeurophysiologyNeovascularization PhysiologicSubventricular zoneMesenchymal Stem Cell TransplantationNeurological SystemModel OrganismsAnimalsHumansProgenitor cellBiologyTransplantationbusiness.industryMultipotent Stem CellsMesenchymal stem cellMultipotent Stem CellCellular NeuroscienceImmunologyCancer researchMolecular NeurosciencebusinesshMAPC and hMSCNeurosciencePLoS ONE
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