Search results for "Cerebral Cortex"

showing 10 items of 529 documents

Cortical neurons selectively inhibit MHC class II induction in astrocytes but not in microglial cells.

1993

Astrocytes have been shown to act as potent accessory cells for MHC class II-restricted T cell responses in vitro after treatment with interferon-gamma. In contrast, even under conditions of severe central nervous system (CNS) inflammation, they seem to express little, if any, class II molecules in vivo. Thus the role of astroglial cells as accessory cells in immune responses in the CNS remains to be determined. We have studied neuron--glia interactions with respect to induction of MHC class II molecules. Surprisingly, in a co-culture system, viable neurons inhibited the induction of class II restriction elements on astrocytes. This effect was only observed when neurons had contact to astro…

T cellT-LymphocytesImmunologyAntigen presentationAntigen-Presenting CellsDown-RegulationLymphocyte ActivationMHC class ImedicineImmunology and AllergyAnimalsCells CulturedCerebral CortexNeuronsMHC class IIbiologyMicrogliaHistocompatibility Antigens Class IIGeneral MedicineCell biologyRatsmedicine.anatomical_structurenervous systemAstrocytesImmunologybiology.proteinNeurogliaNeuronNeurogliaAstrocyteInternational immunology
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Differential evolution of PSA-NCAM expression during aging of the rat telencephalon

2007

Changes in the ability of neuronal networks to undergo structural remodeling may be involved in the age-associated cognitive decline. The polysialylated form of the neural cell adhesion molecule (PSA-NCAM) declines dramatically during postnatal development, but persists in several regions of the young-adult rat telencephalon, where it participates, through its anti-adhesive properties, in neuronal structural plasticity. However, PSA-NCAM expression during aging has only been studied in the dentate gyrus and the piriform cortex layer II, where it is strongly downregulated in adult (middle-aged) individuals. Using immunohistochemistry, we have observed that in most of the telencephalic areas …

TelencephalonAgingDendritic SpinesDown-RegulationHippocampusCell CountNeural Cell Adhesion Molecule L1BiologyPiriform cortexCell AdhesionLimbic SystemmedicineNeuropilAnimalsCognitive declineCerebral CortexNeuronsNeuronal PlasticityNeocortexGeneral NeuroscienceDentate gyrusAmygdalaImmunohistochemistryRats Inbred F344RatsDisease Models Animalmedicine.anatomical_structurenervous systemSialic AcidsFemaleNeural cell adhesion moleculeNeurology (clinical)Geriatrics and GerontologyNeuroscienceBiomarkersDevelopmental BiologyStratum lucidumNeurobiology of Aging
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Expression of MAP1a and MAP1b in the ganglionic eminence and the internal capsule of the human fetal brain.

2001

The expression of microtubule-associated proteins 1a and 1b (MAP1a and 1b) were investigated in two transient structures, the ganglionic eminence (GE) being a prominent part of the telencephalic proliferative zone and the perireticular nucleus (PR) within the internal capsule (IC). Anti-MAP1a immunolabels PR neurons from 18 weeks of gestation (wg) onwards, whereas anti-MAP1b immunolabels long IC fibers between 18 and 22 wg. MAP1b is further present in thalamic fibers that seem to terminate at the medial margin of the GE, in a moderate number of cells of the GE and its medial extension, the gangliothalamic body (GTB). From 26 to 33 wg MAP1b is expressed in short fiber bundles of the IC, a fe…

TelencephalonInternal capsuleGanglionic eminenceThalamusGrowth ConesBiologyFetusThalamusInternal CapsuleNeural PathwaysmedicineHumansModerate numberMedial marginCerebral CortexNeuronsGeneral NeuroscienceCell DifferentiationGeneral MedicineAnatomyImmunohistochemistrymedicine.anatomical_structureCell cultureHuman fetalNucleusMicrotubule-Associated ProteinsNeuroscience research
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CRMP-4 expression in the adult cerebral cortex and other telencephalic areas of the lizard Podarcis hispanica.

2002

The control of neuritogenesis is crucial for the development, maturation and regeneration of the nervous system. The collapsin response-mediated protein 4 (CRMP-4) is a member of a family of proteins that are involved in neuronal differentiation and axonal outgrowth. In rodents, this protein is expressed in recently generated neurons such as some granule neurons of the dentate gyrus, as well as in certain differentiated neurons undergoing neurite outgrowth or synaptogenesis during adulthood. Since CRMP-4 protein appears to be highly conserved throughout the evolutionary scale, we have used immunocytochemistry to study its distribution in the lizard cerebral cortex. We have found pronounced …

TelencephalonNeuriteMedial cortexGrowth ConesSynaptogenesisNerve Tissue ProteinsPodarcis hispanicaEvolution MolecularDevelopmental NeurosciencemedicineAnimalsCerebral CortexbiologyDentate gyrusStem CellsNeurogenesisCell DifferentiationLizardsbiology.organism_classificationImmunohistochemistrymedicine.anatomical_structurenervous systemBromodeoxyuridineCerebral cortexDentate GyrusNeuroscienceNucleusCell DivisionDevelopmental BiologyBrain research. Developmental brain research
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Modeling Vestibular Compensation: Neural Plasticity Upon Thalamic Lesion.

2020

The present study in rats was conducted to identify brain regions affected by the interruption of vestibular transmission and to explore selected aspects of their functional connections. We analyzed, by positron emission tomography (PET), the regional cerebral glucose metabolism (rCGM) of cortical, and subcortical cerebral regions processing vestibular signals after an experimental lesion of the left laterodorsal thalamic nucleus, a relay station for vestibular input en route to the cortical circuitry. PET scans upon galvanic vestibular stimulation (GVS) were conducted in each animal prior to lesion and at post-lesion days (PLD) 1, 3, 7, and 20, and voxel-wise statistical analysis of rCGM a…

Thalamusneuronal tracingSensory systemSomatosensory systemInsular cortexlcsh:RC346-429Lesionlesion03 medical and health sciences0302 clinical medicinethalamusMedicinePET-imagingimmunofluorescenceGalvanic vestibular stimulationlcsh:Neurology. Diseases of the nervous system030304 developmental biologyOriginal ResearchVestibular system0303 health sciencesbusiness.industrymedicine.anatomical_structureNeurologyCerebral cortexcerebral cortexNeurology (clinical)medicine.symptombusinessNeuroscience030217 neurology & neurosurgeryFrontiers in neurology
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Transcranial magnetic stimulation (TMS) application in sport medicine: A brief review

2017

Since 1985, transcranial magnetic stimulation (TMS) has been used for non-invasive exploration of motor control in humans and for a wide range of applications in all ages of life. This brief review examined briefly the potential interest in sport medicine.

Transcrania magnetic stimulationAtlethes; Motor cerebral cortex; TMS; Transcrania magnetic stimulationAtlethes; Motor cerebral cortex; TMS; Transcrania magnetic stimulation; Medicine (all)TMSMedicine (all)AtlethesAtletheMotor cerebral cortex
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mTOR Driven Gene Transcription Is Required for Cholesterol Production in Neurons of the Developing Cerebral Cortex

2021

AbstractDysregulated mammalian target of rapamycin (mTOR) activity is associated with various neurodevelopmental disorders ranging from idiopathic autism spectrum disorders to syndromes caused by single gene defects. This suggests that maintaining mTOR activity levels in a physiological range is essential for brain development and functioning. Upon activation, mTOR regulates a variety of cellular processes such as cell growth, autophagy and metabolism. On a molecular level, however, the consequences of mTOR activation in the brain are not well understood.Low levels of cholesterol are associated with a wide variety of neurodevelopmental disorders. We here describe numerous genes of the stero…

Transcription GeneticQH301-705.5Primary Cell CulturemTORC1Mechanistic Target of Rapamycin Complex 1BiologySREBPCatalysisArticleInorganic ChemistryMiceAutophagyTranscriptional regulationmedicineAnimalsPhysical and Theoretical ChemistryBiology (General)Molecular BiologyTranscription factorQD1-999mTORC1SpectroscopyPI3K/AKT/mTOR pathwayCerebral CortexNeuronsSterol Regulatory Element Binding ProteinsCell growthTOR Serine-Threonine KinasesOrganic Chemistrycholesterol ; NF-Y ; neurogenesis ; mTOR ; mTORC1 ; SP1 ; SREBPAutophagyGene Expression Regulation DevelopmentalcholesterolGeneral MedicineComputer Science ApplicationsSterol regulatory element-binding proteinCell biologySP1Chemistryneurogenesismedicine.anatomical_structureCCAAT-Binding FactorCerebral cortexmTORNF-YProtein KinasesSignal TransductionInternational Journal of Molecular Sciences
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Long-term gene expression changes in the cortex following cortical ischemia revealed by transcriptional profiling

2006

Cerebral ischemia evokes changes in gene expression time-dependently after the ischemic event. Most studies on transcriptional changes following ischemia have centered on relatively early postischemic time points, and detected multiple genes relevant to neuronal cell death. However, functional outcome after ischemia depends critically on adaptations of the postischemic brain. Plasticity may derive from network-inherent changes, or from the formation of new nerve cells in the CNS. We have screened for gene expression changes up to 3 weeks following a limited photothrombotic cortical insult in the rat sensorimotor cortex by using the sensitive restriction-mediated differential display (RMDD) …

Transcriptional ActivationCentral nervous systemIschemiaStathminBrain IschemiaTimeDevelopmental NeuroscienceSemaphorinGene expressionmedicineAnimalsBrain ChemistryCerebral CortexDifferential displaybiologyGene Expression ProfilingNeurogenesisNestinmedicine.diseaseRatsmedicine.anatomical_structureGene Expression RegulationNeurologybiology.proteinsense organsNeuroscienceExperimental Neurology
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Efficacy and tolerability of a fixed dose combination of cortex phospholipid liposomes and cyanocobalamin for intramuscular use in peripheral neuropa…

2019

Peripheral neuropathies are frequently encourtered in clinical practice and are assiociated with a major impairment in quality of life . Howewvwr, their management reamans poor, and current therapies are often burdened with major side effects and can present poor efficacy on pain and functionality. Therefore, it has been suggested that the combination of two or more different drugs may improve analgesis efficacy and reduce side effects. Tricortin 1000 is formulated with 12 mg of Brain cortex phospholipid liposomes + 1000 microgrammi of Cyanocobalamin injectable (PL+ CNCb1) for intramuscolar use and is indicated in the tratment of poly-algo-neuropathic syndromes. This combination exerts a ma…

Viitamin B 12Fixed-dose combinationAnalgesicPharmacologyInjections IntramuscularInjections03 medical and health sciences0302 clinical medicinePharmacotherapyPeripheral nervous system diseasemedicineHumansCyanocobalaminphospholipidPhospholipidsCerebral CortexIntramuscularAnalgesicsClinical Trials as TopicNeck painLiposomebiologybusiness.industrySettore MED/34 - Medicina Fisica E RiabilitativaBack painPeripheral Nervous System DiseasesGeneral MedicineBack pain; Liposomes; Neuralgia; Peripheral nervous system diseases; Phospholipids; Vitamin B 12; Analgesics; Cerebral Cortex; Clinical Trials as Topic; Drug Combinations; Humans; Injections Intramuscular; Liposomes; Neuroprotective Agents; Peripheral Nervous System Diseases; Phospholipids; Vitamin B 12Drug CombinationsVitamin B 12Neuroprotective AgentsTolerability030220 oncology & carcinogenesisLiposomesbiology.proteinNeuralgia030211 gastroenterology & hepatologyIiposomemedicine.symptombusinessNeurotrophinMinerva Medica
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Electrophysiological and morphological properties of Cajal–Retzius cells with different ontogenetic origins

2010

International audience; The different origins of Cajal-Retzius cells (CRc) as well as their diverse molecular profile suggest that this cell type may represent different neuronal subpopulations. In order to investigate whether CRc from different origins show distinct functional or morphological characteristics we used transgenic Dbx1(cre);ROSA26(YFP) mice in which two subpopulations of CRc, originating from the septum and ventral pallium (VP) at the pallial-subpallial border (PSB), were permanently labeled by yellow fluorescent protein (YFP) expression. Electrophysiological properties of YFP(+) and YFP(-) CRc were investigated by whole-cell patch-clamp recordings, while a thorough somatoden…

Yellow fluorescent proteinCell typePatch-Clamp TechniquesNeurogenesisAction PotentialsGlutamic AcidMice Transgenicmacromolecular substancesReceptors N-Methyl-D-AspartateMembrane PotentialsMice03 medical and health scienceschemistry.chemical_compoundOrgan Culture Techniques0302 clinical medicineBiocytinAnimalsCell LineagePatch clampCell Shapegamma-Aminobutyric AcidImage Cytometry030304 developmental biologyCerebral CortexNeurons0303 health sciencesbiologyStem CellsGeneral NeurosciencefungiCell DifferentiationDendritesHyperpolarization (biology)digestive system diseasesCell biologyLuminescent ProteinsElectrophysiologynervous systemchemistrybiology.proteinGABAergic[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]DBX1Nerve NetExcitatory Amino Acid Antagonists030217 neurology & neurosurgeryNeuroscience
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