Search results for "Astrocyte"

showing 10 items of 209 documents

Thyroid hormone induction of the adrenoleukodystrophy-related gene (ABCD2).

2003

X-linked adrenoleukodystrophy (X-ALD) is a demyelinating disorder associated with impaired very-long-chain fatty-acid (VLCFA) beta-oxidation caused by mutations in the ABCD1 (ALD) gene that encodes a peroxisomal membrane ABC transporter. ABCD2 (ALDR) displays partial functional redundancy because when overexpressed, it is able to correct the X-ALD biochemical phenotype. The ABCD2 promoter contains a putative thyroid hormone-response element conserved in rodents and humans. In this report, we demonstrate that the element is capable of binding retinoid X receptor and 3,5,3'-tri-iodothyronine (T3) receptor (TRbeta) as a heterodimer and mediating T3 responsiveness of ABCD2 in its promoter conte…

MaleThyroid HormonesReceptors Retinoic AcidGene ExpressionATP-binding cassette transporterRetinoid X receptorRats Sprague-DawleyMiceABCD3Gene expressionABCD2medicineAnimalsHumansReceptorAdrenoleukodystrophyPromoter Regions GeneticGeneCells CulturedRepetitive Sequences Nucleic AcidPharmacologyChemokine CCL22Mice KnockoutReceptors Thyroid Hormonebiologymedicine.diseaseCell biologyRatsUp-RegulationOligodendrogliaRetinoid X ReceptorsLiverAstrocytesChemokines CCbiology.proteinCancer researchMolecular MedicineTriiodothyronineAdrenoleukodystrophyChemokine CCL17Transcription FactorsMolecular pharmacology
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Structural and functional identification of two distinct inspiratory neuronal populations at the level of the phrenic nucleus in the rat cervical spi…

2018

The diaphragm is driven by phrenic motoneurons that are located in the cervical spinal cord. Although the anatomical location of the phrenic nucleus and the function of phrenic motoneurons at a single cellular level have been extensively analyzed, the spatiotemporal dynamics of phrenic motoneuron group activity have not been fully elucidated. In the present study, we analyzed the functional and structural characteristics of respiratory neuron population in the cervical spinal cord at the level of the phrenic nucleus by voltage imaging, together with histological analysis of neuronal and astrocytic distribution in the cervical spinal cord. We found spatially distinct two cellular populations…

MaleTime FactorsFunctional identificationAction PotentialsPhrenic motoneuron0302 clinical medicineNeural PathwaysMotor Neuronseducation.field_of_studyPhrenic nucleusGeneral Neurosciencemusculoskeletal neural and ocular physiologyRespiratory control05 social sciencesVoltage imagingAnatomymusculoskeletal systemDiaphragm (structural system)Neuroanatomical Tract-Tracing Techniquesmedicine.anatomical_structureInhalationCervical VertebraeFemaleOriginal ArticleAnatomyAstrocyteAstrocyteHistologyCordInterneuronPopulationDiaphragmBiologyIn Vitro Techniques050105 experimental psychologyInterneuron03 medical and health sciencesmedicineAnimals0501 psychology and cognitive sciencesPhrenic NucleusRats WistareducationCervical CordScalene motoneuronCervical spinal cordSpinal cordVoltage-Sensitive Dye Imagingnervous systemAnimals Newborn030217 neurology & neurosurgeryBrain StemBrain structurefunction
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Incidence of Abcd1 level on the induction of cell death and organelle dysfunctions triggered by very long chain fatty acids and TNF-alpha on oligoden…

2012

X-linked adrenoleukodystrophy (X-ALD) is characterized by ABCD1 deficiency. This disease is associated with elevated concentrations of very long chain fatty acids (C24:0 and C26:0) in the plasma and tissues of patients. Under its severe form, brain demyelination and inflammation are observed. Therefore, we determined the effects of C24:0 and C26:0 on glial cells:oligodendrocytes, which synthesize myelin, and astrocytes, which participate in immune response. So, 158N murine oligodendrocytes, rat C6 glioma cells, rat primary cultures of neuronal-glial cells, and of oligodendrocytes were treated for various periods of time in the absence or presence of C24:0 and C26:0 used at plasmatic concent…

MaleTime FactorsVacuoleMitochondrionToxicologyATP Binding Cassette Transporter Subfamily D Member 1chemistry.chemical_compoundMice0302 clinical medicineRNA Small InterferingAdrenoleukodystrophyCells CulturedComputingMilieux_MISCELLANEOUSMembrane Potential MitochondrialNeurons0303 health sciencesGeneral NeuroscienceFatty AcidsBrainPeroxisomeCatalaseFlow Cytometry3. Good healthCell biologyMitochondriaOligodendrogliamedicine.anatomical_structureFemaleProgrammed cell deathChromatography GasBiologyGas Chromatography-Mass SpectrometryStatistics Nonparametric03 medical and health sciencesMicroscopy Electron TransmissionLysosomeOrganellemedicineAnimalsHumansPropidium iodideRNA MessengerRats Wistar030304 developmental biologyCell SizeChemokine CCL22OrganellesDose-Response Relationship DrugCell growthTumor Necrosis Factor-alphaRatschemistryAnimals NewbornAstrocytesATP-Binding Cassette Transporters[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgery
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Subventricular zone localized irradiation affects the generation of proliferating neural precursor cells and the migration of neuroblasts

2012

Radiation therapy is a part of the standard treatment for brain tumor patients, often resulting in irreversible neuropsychological deficits. These deficits may be due to permanent damage to the neural stem cell (NSC) niche, damage to local neural progenitors, or neurotoxicity. Using a computed tomography-guided localized radiation technique, we studied the effects of radiation on NSC proliferation and neuroblast migration in the mouse brain. Localized irradiation of the subventricular zone (SVZ) eliminated the proliferating neural precursor cells and migrating neuroblasts. After irradiation, type B cells in the SVZ lacked the ability to generate migrating neuroblasts. Neuroblasts from the u…

Maleanimal structuresanimal diseasesSubventricular zoneCell CountBiologyArticleCerebral VentriclesMiceNeuroblastNeural Stem CellsCell MovementPrecursor cellNeuroblast migrationSpheroids CellularmedicineAnimalsreproductive and urinary physiologyCells CulturedCell ProliferationNeurogenesisCell migrationCell BiologyOlfactory BulbNeural stem cellCell biologyMice Inbred C57BLmedicine.anatomical_structurenervous systemAstrocytesImmunologyMolecular MedicineGanglion mother cellDevelopmental Biology
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Stage-Specific Transcription Factors Drive Astrogliogenesis by Remodeling Gene Regulatory Landscapes.

2017

Summary A broad molecular framework of how neural stem cells are specified toward astrocyte fate during brain development has proven elusive. Here we perform comprehensive and integrated transcriptomic and epigenomic analyses to delineate gene regulatory programs that drive the developmental trajectory from mouse embryonic stem cells to astrocytes. We report molecularly distinct phases of astrogliogenesis that exhibit stage- and lineage-specific transcriptomic and epigenetic signatures with unique primed and active chromatin regions, thereby revealing regulatory elements and transcriptional programs underlying astrocyte generation and maturation. By searching for transcription factors that …

Malecell fateActivating Transcription Factor 3Neurogenesisepigenetic mechanismsCore Binding Factor Alpha 1 SubunitArticleMice Inbred C57BLastrogliogenesisMiceNFI Transcription FactorsastrocyteGene Expression Regulationtranscription factorsAnimalsgene regulationCells Culturedneural stem cellsCell stem cell
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Characterization of rodent pineal astrocytes by immunofluorescence microscopy using a monoclonal antibody (J1-31).

1987

In previous studies pineal astrocytes have been characterized immunohistochemically mainly by use of antisera to glial fibrillary acidic protein. Because of the recent demonstration of this protein in non-astrocytic cells the question of its specificity as an astrocytic marker has been raised. A possible alternative tool for characterizing pineal astrocytes is the J1-31 monoclonal antibody, which is directed against a 30 000 dalton astrocytic protein clearly distinguishable from glial fibrillary acidic protein. Immunofluorescence microscopy of this antibody in the pineal gland of rat and guinea-pig revealed a staining pattern similar to that obtained by glial acidic fibrillary protein antis…

Maleendocrine systemHistologymedicine.drug_classGuinea PigsFluorescent Antibody TechniqueMonoclonal antibodyPineal GlandPathology and Forensic MedicinePineal glandmedicineAnimalsHumansAntiserumCerebral CortexGlial fibrillary acidic proteinbiologyAntibodies MonoclonalRats Inbred StrainsCell BiologyGFAP stainMolecular biologyStainingRatsmedicine.anatomical_structurenervous systemAstrocytesbiology.proteinImmunohistochemistryAntibodyGerbillinaeCell and tissue research
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Acute intermittent nicotine treatment produces a reduction in the total number of FGF-2 immunoreactive astroglial cells in the substantia nigra of th…

2004

To understand the morphological substrate of the nicotine effect on nigral FGF-2 expression, a stereological analysis of FGF-2 immunoreactive neuronal and glial profiles has been performed in the substantia nigra of the rat after acute intermittent nicotine treatment. The major finding of this paper is the demonstration that this type of nicotine treatment produces a significant reduction in the total number of nuclear FGF-2 immunoreactive astroglial profiles in the substantia nigra. A parallel analysis of nigral FGF-1 and FGF-5 immunoreactivities showed no effect of this type of nicotine treatment. The results may be explained by an inhibition of FGF-2 synthesis in a subpopulation of nigra…

Malemedicine.medical_specialtyNicotineCentral nervous systemFGF-2Substantia nigraStereologyFGF-1Cell CountBiologyFibroblast growth factornicotine; FGF-2; stereology; immunoreactivity; substantia nigra; FGF-1; FGF-5FGF-5NicotineRats Sprague-DawleyStereotaxic TechniquesInternal medicinemedicineAnimalsGeneral NeuroscienceAlkaloidImmunohistochemistryRatsSubstantia Nigramedicine.anatomical_structureEndocrinologyNicotinic agonistnervous systemsubstantia nigraAstrocytesStereotaxic techniquestereologyFibroblast Growth Factor 2immunoreactivitymedicine.drugnicotineNeuroscience letters
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Molecular and functional interactions between tumor necrosis factor-alpha receptors and the glutamatergic system in the mouse hippocampus: Implicatio…

2009

Tumor necrosis factor (TNF)-alpha is a proinflammatory cytokine acting on two distinct receptor subtypes, namely p55 and p75 receptors. TNF-alpha p55 and p75 receptor knockout mice were previously shown to display a decreased or enhanced susceptibility to seizures, respectively, suggesting intrinsic modifications in neuronal excitability. We investigated whether alterations in glutamate system function occur in these naive knockout mice with perturbed cytokine signaling that could explain their different propensity to develop seizures. Using Western blot analysis of hippocampal homogenates, we found that p55(-/-) mice have decreased levels of membrane GluR3 and NR1 glutamate receptor subuni…

Malemedicine.medical_specialtyReceptors Kainic acidMicrodialysisAction PotentialsGlutamic AcidKainate receptorAMPA receptorIn Vitro TechniquesBiologyHippocampusReceptors N-Methyl-D-Aspartateelectrophysiology microiontophoresisSettore BIO/09 - FisiologiaMicechemistry.chemical_compoundGlutamatergicReceptors Kainic AcidSeizuresInternal medicinemedicineAnimalsReceptors Tumor Necrosis Factor Type IIReceptors AMPAMice KnockoutNeuronsInflammationTumor Necrosis Factor-alphaGeneral NeuroscienceGlutamate receptorProtein SubunitsEndocrinologymedicine.anatomical_structureReceptors Glutamatenervous systemchemistryReceptors Tumor Necrosis Factor Type IMetabotropic glutamate receptorAstrocytesCytokinesNMDA receptorNBQXDisease SusceptibilityAstrocyte
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Astroglial plasticity in the hippocampus is affected by chronic psychosocial stress and concomitant fluoxetine treatment.

2006

Analysis of post-mortem tissue from patients with affective disorders has revealed a decreased number of glial cells in several brain areas. Here, we examined whether long-term psychosocial stress influences the number and morphology of hippocampal astrocytes in an animal model with high validity for research on the pathophysiology of major depression. Adult male tree shrews were submitted to 5 weeks of psychosocial stress, after which immunocytochemical and quantitative stereological techniques were used to estimate the total number and somal volume of glial fibrillary acidic protein-positive astrocytes in the hippocampal formation. Stress significantly decreased both the number (-25%) and…

Malemedicine.medical_specialtySerotonin reuptake inhibitorHippocampusHippocampal formationHippocampus03 medical and health scienceschemistry.chemical_compound0302 clinical medicineInternal medicineFluoxetinemedicineAnimalsNeurotransmitter030304 developmental biologyPharmacologyTupaia0303 health sciencesFluoxetineNeuronal PlasticityPsychiatry and Mental healthEndocrinologymedicine.anatomical_structurechemistryAstrocytesChronic DiseaseAntidepressantNeurogliaPsychologyNeuroscienceNeuroglia030217 neurology & neurosurgeryStress PsychologicalAstrocytemedicine.drugNeuropsychopharmacology : official publication of the American College of Neuropsychopharmacology
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Identification of calcium sensing receptor (CaSR) mRNA-expressing cells in normal and injured rat brain

2009

Calcium sensing receptor (CaSR), isolated for the first time from bovine and human parathyroid, is a G-protein-coupled receptors that has been involved in diverse physiological functions. At present a complete in vivo work on the identification of CaSR mRNA-expressing cells in the adult brain lacks and this investigation was undertaken in order to acquire more information on cell type expressing CaSR mRNA in the rat brain and to analyse for the first time its expression in different experimental models of brain injury. The expression of CaSR mRNAs was found mainly in scattered cells throughout almost all the brain regions. A double labeling analysis showed a colocalization of CaSR mRNA expr…

Malemedicine.medical_specialtyTime FactorsCentral nervous systemHippocampusCell CountSettore BIO/11 - Biologia MolecolareBiologySettore BIO/09 - Fisiologiachemistry.chemical_compoundSeizuresInternal medicineSettore BIO/10 - BiochimicaCaSRmedicineAnimalsRNA MessengerRats WistarIbotenic AcidMolecular BiologyIn Situ HybridizationNeuronsKainic AcidGeneral NeuroscienceDentate gyrusBrainColocalizationImmunohistochemistryRatsOligodendrogliamedicine.anatomical_structureEndocrinologynervous systemchemistryBrain InjuriesNeurogliaNeurology (clinical)Pyramidal cellCaSR; BrainCalcium sensing receptor (CaSR) isolated for the first time from bovine and human parathyroid is a G-protein-coupled receptors that has been involved in diverse physiological functions. At present a complete in vivo work on the identification of CaSR mRNA-expressing cells in the adult brain lacks and this investigation was undertaken in order to acquire more information on cell type expressing CaSR mRNA in the rat brain and to analyse for the first time its expression in different experimental models of brain injury. The expression of CaSR mRNAs was found mainly in scattered cells throughout almost all the brain regions. A double labeling analysis showed a colocalization of CaSR mRNA expression in neurons and oligodendrocytes whereas it was not found expressed both in the microglia and in astrocytes. One week after kainate-induced seizure CaSR was found in the injured CA3 region of the hippocampus and very interestingly it was found up-regulated in the neurons of CA1-CA2 and dentate gyrus. Similarly 1 week following ibotenic acid injection in the hippocampus CaSR mRNA expression was increased in oligodendrocytes both in the lesioned area and in the contralateral CA1-CA3 pyramidal cell layers and dentate gyrus. One week after needle-induced mechanical lesion an increase of labeled cells expressing CaSR mRNA was observed along the needle track. In conclusion the present results contribute to extend available data on cell type-expressing CaSR in normal and injured brain and could spur to understand the role of CaSR in repairing processes of brain injury.Receptors Calcium-SensingIbotenic acidDevelopmental BiologyAstrocyte
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