Search results for "plasticity"

showing 10 items of 765 documents

Involvement of TLR4 in the long-term epigenetic changes, rewarding and anxiety effects induced by intermittent ethanol treatment in adolescence

2016

Studies in humans and experimental animals have demonstrated the vulnerability of the adolescent brain to actions of ethanol and the long-term consequences of binge drinking, including the behavioral and cognitive deficits that result from alcohol neurotoxicity, and increased risk to alcohol abuse and dependence. Although the mechanisms that participate in these effects are largely unknown, we have shown that ethanol by activating innate immune receptors, toll-like receptor 4 (TLR4), induces neuroinflammation, impairs myelin proteins and causes cognitive dysfunctions in adolescent mice. Since neuroimmune signaling is also involved in alcohol abuse, the aim of this study was to assess whethe…

Male0301 basic medicineEpigenetic changesmedia_common.quotation_subjectImmunologyRewarding effectsAlcohol abuseBinge drinkingAnxietyBinge DrinkingEpigenesis GeneticMice03 medical and health sciencesBehavioral Neuroscience0302 clinical medicineRewardNeuroimmune systemmedicineAnimalsTLR4Neuroinflammationmedia_commonMice KnockoutEthanolBinge ethanol treatmentEndocrine and Autonomic SystemsAddictionAge FactorsNeurotoxicityBrainAnxiety-like behaviormedicine.diseaseEthanol preferencePrelimbic medial prefrontal cortexAdolescenceMice Inbred C57BLToll-Like Receptor 4Alcoholism030104 developmental biologySynaptic plasticityFemaleCognition DisordersPsychologyNeuroscienceMyelin Proteins030217 neurology & neurosurgeryFOSBBrain, Behavior, and Immunity
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Neurovascular EGFL7 regulates adult neurogenesis in the subventricular zone and thereby affects olfactory perception

2016

Adult neural stem cells reside in a specialized niche in the subventricular zone (SVZ). Throughout life they give rise to adult-born neurons in the olfactory bulb (OB), thus contributing to neural plasticity and pattern discrimination. Here, we show that the neurovascular protein EGFL7 is secreted by endothelial cells and neural stem cells (NSCs) of the SVZ to shape the vascular stem-cell niche. Loss of EGFL7 causes an accumulation of activated NSCs, which display enhanced activity and re-entry into the cell cycle. EGFL7 pushes activated NSCs towards quiescence and neuronal progeny towards differentiation. This is achieved by promoting Dll4-induced Notch signalling at the blood vessel-stem …

Male0301 basic medicineGeneral Physics and AstronomyNEURAL STEM-CELLSMOUSEMiceSUBEPENDYMAL ZONENeural Stem CellsLateral VentriclesLINEAGE PROGRESSIONBRAININ-VIVOMice KnockoutNeuronal PlasticityMultidisciplinaryCell CycleQNeurogenesisNICHEAnatomyNeural stem cellCell biologyAdult Stem Cellsmedicine.anatomical_structureSignal TransductionSTIMULATES NEUROGENESISEGF Family of ProteinsNeurogenesisScienceNotch signaling pathwaySubventricular zoneBiologyInhibitory postsynaptic potentialArticleGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesNeuroplasticitymedicineBiological neural networkAnimalsCalcium-Binding ProteinsProteinsGeneral ChemistryOlfactory PerceptionENDOTHELIAL-CELLSnervous system diseasesOlfactory bulbMice Inbred C57BLSELF-RENEWAL030104 developmental biologynervous system
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Existence of muscarinic acetylcholine receptor (mAChR) and fibroblast growth factor receptor (FGFR) heteroreceptor complexes and their enhancement of…

2017

Abstract Background Recently, it was demonstrated that G-protein-coupled receptors (GPCRs) can transactivate tyrosine kinase receptors in absence of their ligands. In this work, driven by the observation that mAChRs and fibroblast growth factor receptors (FGFRs) share signalling pathways and regulation of brain functions, it was decided to explore whether mAChRs activation may transactivate FGFRs and, if so, to characterize the related trophic effects in cultured hippocampal neurons. Methods Oxotremorine-M transactivation of FGFRs and related trophic effects were tested in primary hippocampal neurons. Western blotting and in situ proximity ligation assay (PLA) were used to detect FGFR phosp…

Male0301 basic medicineHippocampusBiochemistryReceptor tyrosine kinaseReceptors G-Protein-CoupledRats Sprague-DawleyTransactivation0302 clinical medicineMuscarinic acetylcholine receptorNeural plasticityNeuronsNeuronal PlasticitybiologyReceptors MuscarinicCell biologyFibroblast growth factor receptorFibroblast Growth Factor 2Signal TransductionProto-oncogene tyrosine-protein kinase Srcmedicine.medical_specialtyNeuriteNeuronal OutgrowthBiophysicsHeteroreceptor03 medical and health sciencesHippocampuInternal medicinemedicineAnimalsReceptor Fibroblast Growth Factor Type 1Rats WistarMolecular BiologyTransactivationAnimalOxotremorineFibroblast growth factor receptor 1Receptor Muscarinic M1NeuronReceptors Fibroblast Growth FactorRatsFGFR1030104 developmental biologyEndocrinologyM1receptorBiophysicHeteroreceptor complexebiology.proteinRat030217 neurology & neurosurgeryBiochimica et Biophysica Acta (BBA) - General Subjects
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Perineuronal Nets Regulate the Inhibitory Perisomatic Input onto Parvalbumin Interneurons and γ Activity in the Prefrontal Cortex

2020

Parvalbumin-expressing (PV+) interneurons play a key role in the maturation and synchronization of cortical circuitry and alterations in these inhibitory neurons, especially in the medial prefrontal cortex (mPFC), have been found in different psychiatric disorders. The formation of perineuronal nets (PNNs) around many of these interneurons at the end of the critical periods reduces their plasticity and sets their connectivity. Consequently, the presence of PNNs must have an important impact on the synaptic input and the physiology of PV+ cells. In the present study, we have found that in adult male mice, prefrontocortical PV+ cells surrounded by PNNs show higher density of perisomatic excit…

Male0301 basic medicineInterneuronPrefrontal CortexInhibitory postsynaptic potentialMice03 medical and health sciences0302 clinical medicineInterneuronsBasket cellmedicineExtracellularAnimalsGamma RhythmPrefrontal cortexResearch ArticlesNeuronal PlasticitybiologyChemistryGeneral NeurosciencePerineuronal netExtracellular MatrixMice Inbred C57BLParvalbumins030104 developmental biologymedicine.anatomical_structurenervous systembiology.proteinExcitatory postsynaptic potentialNeuroscience030217 neurology & neurosurgeryParvalbuminThe Journal of Neuroscience
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Plasticity-Related Gene 1 Affects Mouse Barrel Cortex Function via Strengthening of Glutamatergic Thalamocortical Transmission

2016

Plasticity-related gene-1 (PRG-1) is a brain-specific protein that modulates glutamatergic synaptic transmission. Here we investigated the functional role of PRG-1 in adolescent and adult mouse barrel cortex both in vitro and in vivo. Compared with wild-type (WT) animals, PRG-1-deficient (KO) mice showed specific behavioral deficits in tests assessing sensorimotor integration and whisker-based sensory discrimination as shown in the beam balance/walking test and sandpaper tactile discrimination test, respectively. At P25-31, spontaneous network activity in the barrel cortex in vivo was higher in KO mice compared with WT littermates, but not at P16-19. At P16-19, sensory evoked cortical respo…

Male0301 basic medicinePatch-Clamp TechniquesCognitive NeuroscienceThalamusGlutamic AcidNerve Tissue ProteinsStimulationSensory systemWalkingNeurotransmissionBiologySomatosensory systempatch-clamp recordingsSynaptic TransmissionTissue Culture Techniques03 medical and health sciencesCellular and Molecular NeuroscienceGlutamatergic0302 clinical medicineThalamusNeural PathwaysNeuroplasticityAnimalsPostural BalanceMice KnockoutNeuronsNeuronal Plasticitybehaviorin vitroArticlesSomatosensory CortexBarrel cortexnetwork activityin vivo030104 developmental biologyTouch PerceptionVibrissaeCalmodulin-Binding ProteinsFemaleNeuroscience030217 neurology & neurosurgeryCerebral Cortex
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Dark exposure affects plasticity-related molecules and interneurons throughout the visual system during adulthood

2020

Several experimental manipulations, including visual deprivation, are able to induce critical period-like plasticity in the visual cortex of adult animals. In this regard, many studies have analyzed the effects of dark exposure in adult animals, but still little is known about the role of interneurons and plasticity-related molecules on such mechanisms. In this study, we analyzed the effects of 10 days of dark exposure on the connectivity and structure of interneurons, both in the primary visual cortex and in the rest of cerebral regions implicated in the transmission of visual stimulus. We found that this environmental manipulation induces changes in the expression of synaptic molecules th…

Male0301 basic medicinegenetic structuresinterneurons ()Mice TransgenicNeural Cell Adhesion Molecule L1Stimulus (physiology)PlasticityInhibitory postsynaptic potentialsensory deprivation ()Mice03 medical and health sciences0302 clinical medicineInterneuronsextracellular matrix ()medicineAnimalsVisual Cortexvisual pathways ()Neuronal PlasticitybiologyGeneral NeurosciencePerineuronal netAge FactorsDarknessPSA-NCAM ()030104 developmental biologyVisual cortexmedicine.anatomical_structureSialic Acidsbiology.proteinNeural cell adhesion moleculeneuronal plasticity ()Nerve NetSensory DeprivationNeuroscience030217 neurology & neurosurgeryParvalbumin
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The FAAH inhibitor URB597 suppresses hippocampal maximal dentate afterdischarges and restores seizure-induced impairment of short and long-term synap…

2017

Synthetic cannabinoids and phytocannabinoids have been shown to suppress seizures both in humans and experimental models of epilepsy. However, they generally have a detrimental effect on memory and memory-related processes. Here we compared the effect of the inhibition of the endocannabinoid (eCB) degradation versus synthetic CB agonist on limbic seizures induced by maximal dentate activation (MDA) acute kindling. Moreover, we investigated the dentate gyrus (DG) granule cell reactivity and synaptic plasticity in naïve and in MDA-kindled anaesthetised rats. We found that both the fatty acid amide hydrolase (FAAH) inhibitor URB597 and the synthetic cannabinoid agonist WIN55,212-2 displayed AM…

Male0301 basic medicinemedicine.medical_treatmentLong-Term Potentiationlcsh:MedicineBrain -- Diseases -- DiagnosisSynaptic TransmissionEpilepsy -- Alternative treatmentchemistry.chemical_compoundEpilepsy0302 clinical medicineFatty acid amide hydrolaselcsh:ScienceTemporal lobe epilepsyInhibitionNeuronal PlasticityMultidisciplinaryLong-term potentiationmedicine.anatomical_structureAnesthesiaBenzamidesHippocampus (Brain)medicine.medical_specialtyArticleAmidohydrolases03 medical and health sciencesSeizuresInternal medicinemedicineAnimalsAuthor CorrectionEpilepsyCannabinoidsDentate gyruslcsh:RURB597medicine.diseaseGranule cellHippocampus (Brain) -- PhysiologyRats030104 developmental biologyEndocrinologychemistryDentate GyrusSynaptic plasticitylcsh:QNeuroplasticityCarbamatesCannabinoid030217 neurology & neurosurgery
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Sub-chronic variable stress induces sex-specific effects on glutamatergic synapses in the nucleus accumbens

2017

Men and women manifest different symptoms of depression and under current diagnostic criteria, depression is twice as prevalent in woman. However, little is known of the mechanisms contributing to these important sex differences. Sub-chronic variable stress (SCVS), a rodent model of depression, induces depression-like behaviors in female mice only, modeling clinical evidence of higher susceptibility to mood disorders in women. Accumulating evidence indicates that altered neuroplasticity of excitatory synapses in the nucleus accumbens (NAc) is a key pathophysiological feature of susceptibility to social stress in males. Here we investigated the effects of SCVS on pre- and post-synaptic prote…

Male0301 basic medicinesex differenceVesicular glutamate transporter 1Nucleus accumbensMedium spiny neuronmedium spiny neuronArticleNucleus Accumbens03 medical and health sciencesGlutamatergicchemistry.chemical_compound0302 clinical medicineStress PhysiologicalstreNeuroplasticityAnimalsSocial stressSex CharacteristicsLucifer yellowNeuronal PlasticityNeuroscience (all)biologynucleus accumbenGeneral NeurosciencePost-Synaptic DensityMice Inbred C57BL030104 developmental biologychemistryplasticitySynapsesVesicular Glutamate Transport Protein 1depressionVesicular Glutamate Transport Protein 2biology.proteinExcitatory postsynaptic potentialFemaleNeuroscience030217 neurology & neurosurgeryNeuroscience
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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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Loss of all three APP family members during development impairs synaptic function and plasticity, disrupts learning, and causes an autism-like phenot…

2021

The key role of APP for Alzheimer pathogenesis is well established. However, perinatal lethality of germline knockout mice lacking the entire APP family has so far precluded the analysis of its physiological functions for the developing and adult brain. Here, we generated conditional APP/APLP1/APLP2 triple KO (cTKO) mice lacking the APP family in excitatory forebrain neurons from embryonic day 11.5 onwards. NexCre cTKO mice showed altered brain morphology with agenesis of the corpus callosum and disrupted hippocampal lamination. Further, NexCre cTKOs revealed reduced basal synaptic transmission and drastically reduced long-term potentiation that was associated with reduced dendritic length …

Male10017 Institute of AnatomyLong-Term PotentiationHippocampal formationSynaptic TransmissionAmyloid beta-Protein Precursor0302 clinical medicine2400 General Immunology and MicrobiologyAmyloid precursor proteinMolecular Biology of DiseaseAutism spectrum disorderMice KnockoutNeurons0303 health sciencesbiologyBehavior AnimalGeneral NeuroscienceBrain2800 General NeuroscienceLong-term potentiationArticlesPhenotype10076 Center for Integrative Human PhysiologyKnockout mouseFemalelearning and memory610 Medicine & healthGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesProsencephalon1300 General Biochemistry Genetics and Molecular Biologymental disorders1312 Molecular BiologyAnimalsLearningAPLP1Autistic DisorderSocial BehaviorMolecular BiologyAPLP2CA1 Region Hippocampal030304 developmental biologysynaptic plasticityGeneral Immunology and MicrobiologyAmyloid precursor proteinSynaptic plasticityForebrainSynapsesbiology.proteinAlzheimer570 Life sciences; biologyNeuroscience030217 neurology & neurosurgeryNeuroscienceThe EMBO journal
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