Search results for "Interneurons"

showing 10 items of 79 documents

Nrg1 haploinsufficiency alters inhibitory cortical circuits

2021

Neuregulin 1 (NRG1) and its receptor ERBB4 are schizophrenia (SZ) risk genes that control the development of both excitatory and inhibitory cortical circuits. Most studies focused on the characterization ErbB4 deficient mice. However, ErbB4 deletion concurrently perturbs the signaling of Nrg1 and Neuregulin 3 (Nrg3), another ligand expressed in the cortex. In addition, NRG1 polymorphisms linked to SZ locate mainly in non-coding regions and they may partially reduce Nrg1 expression. Here, to study the relevance of Nrg1 partial loss-of-function in cortical circuits we characterized a recently developed haploinsufficient mouse model of Nrg1 (Nrg1tm1Lex). These mice display SZ-like behavioral d…

Cortical neuronsReceptor ErbB-4Neuregulin-1Gene ExpressionneuronsNeurosciences. Biological psychiatry. NeuropsychiatryHaploinsufficiencyBiologyInhibitory postsynaptic potentialHippocampusMagnetic&nbspMiceInterneuronsNeuregulin 3mental disordersMagnetic resonance spectroscopyAnimalsRNA MessengerneurotransmissionNeuregulin 1GABAergic Neuronsgamma-Aminobutyric AcidInhibitory&nbspCerebral CortexNrg1resonance spectroscopyNeural InhibitionMagnetic Resonance ImagingCortex (botany)Inhibitory neurotransmissionParvalbuminsNeurologyInhibitory Postsynaptic PotentialsCalbindin 2Vesicular Glutamate Transport Protein 1biology.proteinExcitatory postsynaptic potentialSchizophreniaCalretininHaploinsufficiencyCortical&nbspNeuroscienceParvalbuminRC321-571Neurobiology of Disease
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Extensive migration of young neurons into the infant human frontal lobe

2016

Building the human brain As the brain develops, neurons migrate from zones of proliferation to their final locations, where they begin to build circuits. Paredes et al. have discovered that shortly after birth, a group of neurons that proliferates near the ventricles migrates in chains alongside circulatory vessels into the frontal lobes (see the Perspective by McKenzie and Fishell). Young neurons that migrate postnatally into the anterior cingulate cortex then develop features of inhibitory interneurons. The number of migratory cells decreases over the first 7 months of life, and by 2 years of age, migratory cells are not evident. Any damage during migration, such as hypoxia, may affect th…

Doublecortin Domain Proteins0301 basic medicineNeurogenesisNeuropeptideBiologyInhibitory postsynaptic potentialGyrus Cinguli03 medical and health sciencesLateral ventricles0302 clinical medicineCell MovementInterneuronsLateral VentriclesCorrespondenceNeuroplasticitymedicineHumansGyrus cinguliAnterior cingulate cortexNeuronsNeuronal PlasticityMultidisciplinaryNeuropeptidesNeurogenesisInfantAnatomyFrontal Lobe030104 developmental biologymedicine.anatomical_structureFrontal lobeMicrotubule-Associated Proteins030217 neurology & neurosurgeryScience
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Divergent impact of the polysialyltransferases ST8SiaII and ST8SiaIV on polysialic acid expression in immature neurons and interneurons of the adult …

2010

Polysialic acid (PSA) is a negatively charged carbohydrate polymer, which confers antiadhesive properties to the neural cell adhesion molecule NCAM and facilitates cellular plasticity during brain development. In mice, PSA expression decreases drastically during the first postnatal weeks and it gets confined to immature neurons and regions displaying structural plasticity during adulthood. In the brain, PSA is exclusively synthesized by the two polysialyltransferases ST8SiaII and ST8SiaIV. To study their individual contribution to polysialylation in the adult, we analyzed PSA expression in mice deficient for either polysialyltransferase. Focusing on the cerebral cortex, our results indicate…

Doublecortin Domain ProteinsNeurogenesisHippocampal formationHippocampusSubgranular zoneMiceInterneuronsmedicineNeuropilAnimalsCerebral CortexMice KnockoutNeuronsNeuronal PlasticitybiologyPolysialic acidGeneral NeuroscienceStem CellsNeurogenesisNeuropeptidesGene Expression Regulation DevelopmentalCell DifferentiationCD56 AntigenSialyltransferasesDoublecortinCell biologyMice Inbred C57BLmedicine.anatomical_structurenervous systemCerebral cortexbiology.proteinSialic AcidsNeural cell adhesion moleculeNeuroscienceMicrotubule-Associated ProteinsNeuroscience
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The aristaless (Arx) gene: one gene for many "interneuronopathies".

2009

The ARX (Aristaless-related (X-linked) homeobox) gene is not only present in arthropods and their ancestors, but also in vertebrates including humans (ARX orthologs). The gene is composed of 5 coding exons and it is expressed predominantly in foetal and adult brain and skeletal muscle. In this review we report on our experience and review the existing literature on the genotype and phenotype heterogeneity associated with ARX abnormalities in humans ranging from severe neuronal migration defects (e.g., lissencephaly), to mild forms of X-linked mental retardation without apparent brain abnormalities. The ARX-related disorders are reviewed focusing on their clinical features and on the role of…

Doublecortin ProteinGenotypeLissencephalyBiologyNeuronal migration defectsGeneral Biochemistry Genetics and Molecular BiologyExonMiceGenotype-phenotype distinctionSettore MED/38 - Pediatria Generale E SpecialisticaInterneuronsmedicineAnimalsHumansAbnormalities MultipleGeneZebrafishGeneticsHomeodomain ProteinsGeneral Immunology and MicrobiologyARX homeoboxmedicine.diseasePhenotypeCranial Nerve DiseasesPhenotypeMultigene FamilyMental Retardation X-LinkedHomeoboxAbnormalityTranscription FactorsFrontiers in bioscience (Elite edition)
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Comparison of spike parameters from optically identified GABAergic and glutamatergic neurons in sparse cortical cultures

2015

We are pleased to note that our publication “Comparison of spike parameters from optically identified GABAergic and glutamatergic neurons in sparse cortical cultures” by Weir et al. (2015) raised some discussion on the feasibility of solely electrophysiological discrimination of distinct neuronal subpopulations in vitro. We agree with Becchetti and Wanke (2015) that their report and our study on the same question were conducted with different technical approaches and that this may explain the observed differences between both studies. Although we obviously recorded a reduced spontaneous neuronal activity under our sparse culture conditions, these conditions were necessary to enable the uneq…

Fano factorinterneuronsGeneral Commentaryspike waveformimagingmulti-electrode arrayBiologynetwork activityInhibitory postsynaptic potentiallcsh:RC321-571Cellular and Molecular NeuroscienceElectrophysiologyGlutamatergicmedicine.anatomical_structureneuronal cultureSpike sortingmedicineExcitatory postsynaptic potentialPremovement neuronal activityNeuronlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryNeuroscienceNeuroscienceFrontiers in Cellular Neuroscience
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mGluR control of interneuron output regulates feedforward tonic GABAA inhibition in the visual thalamus

2011

Metabotropic glutamate receptors (mGluRs) play a crucial role in regulation of phasic inhibition within the visual thalamus. Here we demonstrate that mGluR-dependent modulation of interneuron GABA release results in dynamic changes in extrasynaptic GABAA receptor (eGABAAR)-dependent tonic inhibition in thalamocortical (TC) neurons of the rat dorsal lateral geniculate nucleus (dLGN). Application of the group I selective mGluR agonist dihydroxyphenylglycine produces a concentration-dependent enhancement of both IPSC frequency and tonic GABAA current (IGABAtonic) that is due to activation of both mGluR1a and mGluR5 subtypes. In contrast, group II/III mGluR activation decreases both IPSC freque…

InterneuronReceptors metabotropic glutamateAction PotentialsMetabotropic glutamate receptors GABA dorsal geniculate neurons ratNeurotransmissionReceptors Metabotropic GlutamateQ1DihydroxyphenylglycineSynaptic TransmissionSettore BIO/09 - Fisiologiagamma-Aminobutyric acidArticlechemistry.chemical_compoundThalamusKidney glomerulusInterneuronsmedicineAnimalsVisual Pathwaysgamma-Aminobutyric AcidChemistryGABAA receptorGeneral Neurosciencemusculoskeletal neural and ocular physiologyNeural InhibitionReceptors GABA-ARatsElectrophysiologymedicine.anatomical_structureInhibitory Postsynaptic Potentialsnervous systemMetabotropic glutamate receptorRC0321GABAergicNeuronNeurosciencemedicine.drug
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Effects of the Antidepressant Fluoxetine on the Somatostatin Interneurons in the Basolateral Amygdala

2018

Although the precise mechanism of action of antidepressant drugs remains elusive, the neuroplastic hypothesis has gained acceptance during the last two decades. Several studies have shown that treatment with antidepressants such as Fluoxetine is associated with enhanced plasticity in control animals, especially in regions such as the visual cortex, the hippocampus and the medial prefrontal cortex. More recently, the basolateral amygdala has been shown to be affected by Fluoxetine leading to a reopening of critical period-like plasticity in the fear and aggression circuits. One of the key elements triggering this type of brain plasticity are inhibitory networks, especially parvalbumin intern…

Male0301 basic medicineDendritic spinegenetic structuresInterneuronHippocampusMice TransgenicMice03 medical and health sciences0302 clinical medicineInterneuronsFluoxetineNeuroplasticitymedicineAnimalsPrefrontal cortexNeuronal PlasticitybiologyBasolateral Nuclear ComplexGeneral NeuroscienceAntidepressive Agents030104 developmental biologymedicine.anatomical_structureSomatostatinnervous systembiology.proteinSomatostatinNeuroscience030217 neurology & neurosurgeryParvalbuminBasolateral amygdalaNeuroscience
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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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Optogenetic Modulation of a Minor Fraction of Parvalbumin-Positive Interneurons Specifically Affects Spatiotemporal Dynamics of Spontaneous and Senso…

2017

Abstract Parvalbumin (PV) positive interneurons exert strong effects on the neocortical excitatory network, but it remains unclear how they impact the spatiotemporal dynamics of sensory processing in the somatosensory cortex. Here, we characterized the effects of optogenetic inhibition and activation of PV interneurons on spontaneous and sensory-evoked activity in mouse barrel cortex in vivo. Inhibiting PV interneurons led to a broad-spectrum power increase both in spontaneous and sensory-evoked activity. Whisker-evoked responses were significantly increased within 20 ms after stimulus onset during inhibition of PV interneurons, demonstrating high temporal precision of PV-shaped inhibition.…

Male0301 basic medicineTime FactorsCognitive NeurosciencePopulationAction PotentialsMice TransgenicSensory systemOptogeneticsSomatosensory system03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineLateral inhibitionEvoked Potentials SomatosensoryPhysical StimulationparvalbuminmedicineAnimalseducationmouseeducation.field_of_studyinterneuronsbiologyChemistrymusculoskeletal neural and ocular physiologyOriginal ArticlesSomatosensory CortexBarrel cortexMice Inbred C57BLOptogeneticsParvalbumins030104 developmental biologymedicine.anatomical_structureTouch Perceptionnervous systemCerebral cortexconnectivityVibrissaebiology.proteincerebral cortexFemaleMicroelectrodesNeuroscience030217 neurology & neurosurgeryParvalbuminCerebral 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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