Search results for "Astrocyte"

showing 10 items of 209 documents

Astrocytes of the murine model for Down Syndrome Ts65Dn display reduced intracellular ionic zinc.

2014

Zinc is an essential trace element that is critical for a large number of structural proteins, enzymatic processes and transcription factors. In the brain, zinc ions are involved in synaptic transmission. The homeostasis of zinc is crucial for cell survival and function, and cells have developed a wide variety of systems to control zinc concentration. Alterations in free zinc concentration have been related with brain dysfunction. Down Syndrome individuals present alterations in free zinc concentration and in some of the proteins related with zinc homeostasis. We have analyzed the amount of free zinc and the zinc chelating protein metallothionein 3 in the astrocytes using primary cultures o…

Endocytic cyclechemistry.chemical_elementZincBiologyCellular and Molecular NeuroscienceMicemedicineAnimalsHomeostasisTranscription factorCells Culturedchemistry.chemical_classificationMice Inbred C3HCell BiologyCell biologyDisease Models AnimalZincmedicine.anatomical_structureEnzymechemistryBiochemistryCytoplasmAstrocytesFemaleDown SyndromeIntracellularHomeostasisAstrocyteNeurochemistry international
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Ethanol reduces zincosome formation in cultured astrocytes.

2010

Aims Zinc is an ion that participates in basic cellular and tissular functions. Zinc deficiency is present in many physiological and health problems affecting most body organs, including the brain. Among the circumstances involved in zinc deficiency, ethanol consumption is probably one of the most frequent. A dietary zinc supplement has been proposed as possibly being an efficient method to palliate zinc deficiency. Astrocytes form part of the hematoencephalic barrier, and they are apparently implicated in the homeostasis of the neuronal medium. In this work, we analyze the effect of ethanol on extracellular zinc management by rat astrocytes in culture. Methods Intracellular levels of 'free…

Endocytic cyclechemistry.chemical_elementZincEndocytosischemistry.chemical_compoundExtracellularmedicineAnimalsHomeostasisCells CulturedEthanolEthanolCytoplasmic VesiclesGeneral Medicinemedicine.diseaseEndocytosisCell biologyRatsZincBiochemistrychemistryBlood-Brain BarrierAstrocytesZinc deficiencyIntracellularHomeostasisAlcohol and alcoholism (Oxford, Oxfordshire)
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Astrocytes and neurons share region-specific transcriptional signatures that confer regional identity to neuronal reprogramming

2021

Region-specific gene expression shared with neurons imparts to astrocytes competence for region-specific neuronal reprogramming.

EpigenomicsCellThalamusNeocortexBiology03 medical and health sciences0302 clinical medicineThalamusGene expressionmedicineEpigeneticsProgenitor cellNeural cellResearch Articles030304 developmental biologyNeurons0303 health sciencesMultidisciplinaryNeocortexSciAdv r-articlesmedicine.anatomical_structurenervous systemAstrocytesNeuroscienceReprogramming030217 neurology & neurosurgeryResearch ArticleNeuroscience
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Cross-talk between phosphatidic acid and ceramide during ethanol-induced apoptosis in astrocytes

2005

Background Ethanol inhibits proliferation in astrocytes, an effect that was recently linked to the suppression of phosphatidic acid (PA) formation by phospholipase D (PLD). The present study investigates ethanol's effect on the induction of apoptosis in astrocytes and the formation of ceramide, an apoptotic signal. Evidence is presented that the formation of PA and ceramide may be reciprocally linked during ethanol exposure. Results In cultured rat cortical astrocytes, ethanol (0.3–1 %, v/v) induced nuclear fragmentation and DNA laddering indicative of apoptosis. Concomitantly, in cells prelabeled with [3H]-serine, ethanol caused a dose-dependent, biphasic increase of the [3H]-ceramide/ [3H…

EthanolAstrocytesHydrolysisPhospholipase DAnimalsPhosphatidic AcidsApoptosisCeramidesCells CulturedResearch ArticleRatsSphingomyelinsBMC Pharmacology
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Disruption of Eph/ephrin signaling affects migration and proliferation in the adult subventricular zone.

2000

The subventricular zone (SVZ) of the lateral ventricles, the largest remaining germinal zone of the adult mammalian brain, contains an extensive network of neuroblasts migrating rostrally to the olfactory bulb. Little is known about the endogenous proliferation signals for SVZ neural stem cells or guidance cues along the migration pathway. Here we show that the receptor tyrosine kinases EphB1-3 and EphA4 and their transmembrane ligands, ephrins-B2/3, are expressed by cells of the SVZ. Electron microscopy revealed ephrin-B ligands associated with SVZ astrocytes, which function as stem cells in this germinal zone. A three-day infusion of the ectodomain of either EphB2 or ephrin-B2 into the la…

Fetal Proteinsanimal structuresanimal diseasesSubventricular zoneEphrin-B2Ephrin-B1BiologyMiceNeuroblastCell MovementNeuroblast migrationLateral VentriclesmedicineEphrinAnimalsHumansGeneral NeuroscienceErythropoietin-producing hepatocellular (Eph) receptorReceptor EphA4Membrane ProteinsReceptor Protein-Tyrosine KinasesNeural stem cellOlfactory bulbmedicine.anatomical_structurenervous systemAstrocytesembryonic structuresStem cellNeuroscienceCell DivisionSignal TransductionNature neuroscience
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Cholesterol and Amyloid-β: Evidence for a Cross-Talk between Astrocytes and Neuronal Cells.

2011

Accumulating data supports the concept that alterations of cholesterol metabolism might influence the development of Alzheimer's disease (AD), a neurodegenerative disorder characterized by progressive accumulation of amyloid-β (Aβ) peptides in the brain. Changes in the neuronal production of Aβ have been described as a function of cholesterol levels, thus suggesting a causal link between cholesterol homeostasis dysregulation and AD pathogenesis. Under physiological conditions, cholesterol uptake in the brain is efficiently prevented by the blood-brain barrier, and mature neurons are thought to rely on glial cells for their cholesterol supply. In the present study, we tested the hypothesis t…

Genetically modified mouseBlotting WesternEnzyme-Linked Immunosorbent AssayMice TransgenicCell LinePathogenesisMicechemistry.chemical_compoundAlzheimer DiseasemedicineAnimalsHomeostasisHumansBrain ChemistryNeuronsAmyloid beta-PeptidesbiologyCholesterolGeneral NeuroscienceTransporterReceptor Cross-TalkGeneral Medicinemedicine.diseaseCoculture TechniquesPsychiatry and Mental healthClinical PsychologyCholesterolATP Binding Cassette Transporter 1chemistryAstrocytesABCA1biology.proteinATP-Binding Cassette Transporterslipids (amino acids peptides and proteins)Geriatrics and GerontologyAlzheimer's diseaseNeuroscienceHomeostasisATP Binding Cassette Transporter 1
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Astrocytic alterations in interleukin-6/Soluble interleukin-6 receptor alpha double-transgenic mice.

2000

Interleukin-6 (IL-6), a major cytokine with diverse effects on cells mainly of the immune and hematopoietic systems, has been linked to several neurological disorders such as acquired immune deficiency syndrome dementia, multiple sclerosis, and Alzheimer's disease. Central nervous system (CNS)-specific expression of IL-6 caused neurodegeneration, massive gliosis, and vascular proliferation in transgenic mice. However, the effects of systemically circulating IL-6 and its receptor IL-6Ralpha on the CNS are unknown. IL-6Ralpha is the specific component of the IL-6 receptor system and hence an important co-factor of IL-6. IL-6Ralpha is bioactive in a membrane-bound and in a soluble (s) form. We…

Genetically modified mouseCentral Nervous SystemPathologymedicine.medical_specialtyTransgeneCentral nervous systemGene ExpressionMice TransgenicBiologyPathology and Forensic MedicineMicemedicineAnimalsHumansTransgenesReceptorInterleukin 6Interleukin-6NeurodegenerationBrainmedicine.diseaseReceptors Interleukin-6Astrogliosismedicine.anatomical_structurePhenotypeGliosisSolubilityAstrocytesbiology.proteinmedicine.symptomRegular ArticlesThe American journal of pathology
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A new actor involved in hypothalamic glucose detection : the Transient Receptor Potential Canonical (TRPC) channels

2015

Hyperglycemia is detected and integrated by the mediobasal hypothalamus (MBH) which, in turn, inhibits food intake and triggers insulin secretion. The MBH houses specialized glucose-sensitive (GS) neurons, which directly or indirectly modulate their electrical activity in response to changes in glucose level. In a first study, we hypothesized that indirect detection of glucose by MBH GS neurons involves the secretion of endozepine by astrocytes, a gliotransmitter known to inhibit food intake in response to hyperglycemia. The present work shows that endozepines selectively activate anorexigenic MBH pro-opiomelanotortine (POMC) neurons. In the second study, we show that the direct detection o…

Glucose-sensing neuronsEspèces actives de l’oxygèneEndozépines[SDV.MHEP.PHY] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]Glucose detectionHypothalamusHoméostasie énergétiqueTRPC channelsCanaux TRPCAstrocytesEnergy homeostasisNeurones gluco-sensibles[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Détection du glucoseReactive oxygen species
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Maintenance of GSH content in primary astrocyte cultures under oxidative stress conditions.

1993

Glutathione metabolismAscorbic Acidmedicine.disease_causeBiochemistryAntioxidantschemistry.chemical_compoundMicetert-ButylhydroperoxideStress PhysiologicalmedicineAnimalsCells CulturedPrimary (chemistry)GlutathioneGlutathioneRatsPeroxidesmedicine.anatomical_structurechemistryBiochemistryAstrocytesCystineTert-ButylhydroperoxideOxidation-ReductionOxidative stressAstrocyteBiochemical Society transactions
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Astrocytes give rise to new neurons in the adult mammalian hippocampus

2001

Neurogenesis in the dentate gyrus of the hippocampus persists throughout life in many vertebrates, including humans. The progenitors of these new neurons reside in the subgranular layer (SGL) of the dentate gyrus. Although stem cells that can self-renew and generate new neurons and glia have been cultured from the adult mammalian hippocampus, the in vivo primary precursors for the formation of new neurons have not been identified. Here we show that SGL cells, which express glial fibrillary acidic protein and have the characteristics of astrocytes, divide and generate new neurons under normal conditions or after the chemical removal of actively dividing cells. We also describe a population o…

HippocampusAntineoplastic AgentsCell CountBiologyHippocampusSubgranular zoneMicemedicineAnimalsARTICLENeuronsGlial fibrillary acidic proteinGeneral NeuroscienceDentate gyrusNeurogenesisCell DifferentiationAntigens DifferentiationImmunohistochemistryNeural stem cellNeuroepithelial cellMicroscopy Electronmedicine.anatomical_structureNeuropoiesisnervous systemBromodeoxyuridineAstrocytesDentate Gyrusbiology.proteinNeuroscienceCell Division
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