Search results for "Ependyma"

showing 10 items of 66 documents

FM19G11, a New Hypoxia-inducible Factor (HIF) Modulator, Affects Stem Cell Differentiation Status

2009

The biology of the alpha subunits of hypoxia-inducible factors (HIF alpha) has expanded from their role in angiogenesis to their current position in the self-renewal and differentiation of stem cells. The results reported in this article show the discovery of FM19G11, a novel chemical entity that inhibits HIF alpha proteins that repress target genes of the two alpha subunits, in various tumor cell lines as well as in adult and embryonic stem cell models from rodents and humans, respectively. FM19G11 inhibits at nanomolar range the transcriptional and protein expression of Oct4, Sox2, Nanog, and Tgf-alpha undifferentiating factors, in adult rat and human embryonic stem cells, FM19G11 activit…

MaleHomeobox protein NANOGTranscription GeneticCellular differentiationBiologyResponse ElementsBenzoatesBiochemistryHistonesRats Sprague-DawleyMolecular Basis of Cell and Developmental BiologySOX2EpendymaBasic Helix-Loop-Helix Transcription FactorsAnimalsHumansp300-CBP Transcription FactorsMolecular BiologyEmbryonic Stem CellsHomeodomain ProteinsRegulation of gene expressionSOXB1 Transcription FactorsAcetylationCell DifferentiationNanog Homeobox ProteinCell BiologyTransforming Growth Factor alphaHypoxia-Inducible Factor 1 alpha SubunitMolecular biologyEmbryonic stem cellCell HypoxiaRatsCell biologyAdult Stem CellsGene Expression RegulationPharmaceutical PreparationsBenzamidesStem cellOctamer Transcription Factor-3Chromatin immunoprecipitationHeLa CellsAdult stem cellJournal of Biological Chemistry
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Morphological Changes within the Rat Lateral Ventricle after the Administration of Proteasome Inhibitors.

2015

The broad variety of substances that inhibit the action of the ubiquitin-proteasome system (UPS)—known as proteasome inhibitors—have been used extensively in previous studies, and they are currently frequently proposed as a novel form of cancer treatment and as a protective factor in intracerebral hemorrhage treatment. The experimental data on the safest route of proteasome inhibitor administration, their associated side effects, and the possible ways of minimizing these effects have recently become a very important topic. The aim of our present study was to determine the effects of administering of MG-132, lactacystin and epoxomicin, compounds belonging to three different classes of protea…

MalePathologymedicine.medical_specialtyProteasome Endopeptidase ComplexEpendymal CellRosette FormationLactacystinlcsh:MedicineBiologyGlial scarchemistry.chemical_compoundLateral ventriclesEpoxomicinEpendymaLateral VentriclesmedicineAnimalsRats Wistarlcsh:ScienceMultidisciplinaryUbiquitinlcsh:RRatsmedicine.anatomical_structureProteasomechemistryGlioma SubependymalProteasome inhibitorlcsh:QAtrophyEpendymaProteasome Inhibitorsmedicine.drugResearch ArticlePloS one
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Cell population analysis of the adult murine subependymal neurogenic lineage by flow cytometry

2021

Summary This protocol provides a flow-cytometry-based procedure to classify and isolate all cells of the adult rodent subependymal zone (SEZ) neurogenic lineage, without the need for reporter mice, into different cell populations, including three neural stem cell (NSC) fractions with molecular signatures that are coherent with single-cell transcriptomics. Additionally, their cycling behavior can be assessed by means of 5-ethynyl-2′-deoxyuridine (EdU) incorporation. Our method allows the isolation of different NSC fractions and the functional assay of their cycling heterogeneity and quiescence-activation transitions. For complete details on the use, execution, and outcomes of this protocol, …

MaleScience (General)Lineage (genetic)CellPopulationCell Culture TechniquesSingle CellBiologyGeneral Biochemistry Genetics and Molecular BiologyCell LineFlow cytometryTranscriptomeMiceQ1-390Neural Stem CellsEpendymaProtocolmedicineSubependymal zoneAnimalsFlow Cytometry/Mass Cytometryeducationeducation.field_of_studyGeneral Immunology and Microbiologymedicine.diagnostic_testGene Expression ProfilingStem CellsGeneral NeuroscienceCell BiologyFlow CytometryNeural stem cellCell biologyMice Inbred C57BLmedicine.anatomical_structureFemaleSingle-Cell AnalysisStem cellTranscriptomeNeuroscienceSTAR Protocols
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Ultrastructural observations on the central innervation of the guinea-pig pineal gland.

1981

In the present study the central innervation of the guinea-pig pineal gland was investigated. The habenulae and the pineal stalk contain myelinated and non-myelinated nerve fibres with few dense-cored and electron-lucent vesicles. Some myelinated fibres leave the main nerve fibre bundles, lose their myelin-sheaths and terminate in the pineal gland. Although direct proof is lacking, the non-myelinated fibres appear to end near the site where the bulk of the myelinated fibres are located. Here a neuropil area exists where synapses between non-myelinated fibre elements are abundant. Neurosecretory fibres were also seen. The results support the concept of functional interrelationships between h…

Maleendocrine systemCytoplasmHistologyGuinea PigsBiologySynaptic vesicleNerve Fibers MyelinatedPineal GlandPathology and Forensic MedicineGuinea pigPineal glandNerve FibersEpendymamedicineNeuropilEpithalamusAnimalsCell NucleusCell BiologyAnatomyMicroscopy Electronmedicine.anatomical_structurenervous systemHypothalamusSynapsesUltrastructureSynaptic VesiclesEpendymahormones hormone substitutes and hormone antagonistsCell and tissue research
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Region specific expression of furin mRNA in the rat brain.

1993

The distribution of furin mRNA was examined in the rat central nervous system. Northern blot analysis reveals the presence of a 4.4 kb band in all brain tissues examined. In situ hybridization analysis of frozen rat brain sections using a radioactively labeled antisense cRNA probe to rat furin demonstrated moderate to low levels of expression in both neuronal and non-neuronal tissue in all areas examined. Interestingly, higher levels of furin were expressed in selective regions which include the ventricles (the choroid plexus and ependymal cells), the islands of Calleja, the hippocampus and the pineal gland. the ubiquitous localization of furin in the brain is consistent with its postulated…

Malemedicine.medical_specialtyanimal structuresvirusesProprotein convertase 2In situ hybridizationRats Sprague-DawleyInternal medicineGene expressionmedicineAnimalsTissue DistributionNorthern blotRNA MessengerSubtilisinsFurinIn Situ HybridizationFurinbiologyHistocytochemistryGeneral NeuroscienceSerine EndopeptidasesBrainCell biologyRatsEndocrinologymedicine.anatomical_structureProprotein Convertase 2embryonic structuresIslands of Callejabiology.proteinChoroid plexusProprotein ConvertasesEpendymaNeuroscience letters
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Intrinsic organization of the medial cerebral cortex of the lizardLacerta pityusensis: A golgi study

1987

The morphology of cells and the organization of axons were studied in Golgi-Colonnier and toluidine blue stained preparations from the medial cerebral cortex of the lizard Lacerta pityusensis. In the medial cortex, six strata were distinguished between the superficial glial membrane and the ependyma. Strata I and II formed the outer plexiform layer, stratum III formed the cellular layer, and strata IV go VI the inner plexiform layer. The outer plexiform layer contained smooth bipolar neurons; their dendrites were oriented anteroposteriorly and their axons were directed towards the posterior zone of the brain. Five neuronal types were observed in the cellular layer. The spinous pyramidal neu…

Medial cortexOuter plexiform layerHippocampusAnatomyBiologyInner plexiform layermedicine.anatomical_structurenervous systemCerebral cortexmedicineAnimal Science and Zoologysense organsNeuronAxonEpendymaDevelopmental BiologyJournal of Morphology
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Paracrine regulation of neural stem cells in the subependymal zone.

2012

Stem cells maintain their self-renewal and multipotency capacities through a self-organizing network of transcription factors and intracellular pathways activated by extracellular signaling from the microenvironment or "niche" in which they reside in vivo. In the adult mammalian brain new neurons continue to be generated throughout life of the organisms and this lifelong process of neurogenesis is supported by a reservoir of neural stem cells in the germinal regions. The discovery of adult neurogenesis in the mammalian brain has sparked great interest in defining the conditions that guide neural stem cell (NSC) maintenance and differentiation into the great variety of neuronal and glial sub…

NeurogenesisBiophysicsParacrine CommunicationNeovascularization PhysiologicBiologyBiochemistrySynaptic TransmissionParacrine signallingNeural Stem CellsCell MovementNeurosphereEpendymaParacrine CommunicationSubependymal zoneAnimalsHumansStem Cell NicheMolecular BiologyCell ProliferationNeurogenesisOlfactory BulbNeural stem cellNeuroepithelial cellAstrocytesImmunologyChoroid PlexusStem cellNeuroscienceArchives of biochemistry and biophysics
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Adult Neural Stem Cells Are Alerted by Systemic Inflammation through TNF-α Receptor Signaling.

2021

Summary Adult stem cells (SCs) transit between the cell cycle and a poorly defined quiescent state. Single neural SCs (NSCs) with quiescent, primed-for-activation, and activated cell transcriptomes have been obtained from the subependymal zone (SEZ), but the functional regulation of these states under homeostasis is not understood. Here, we develop a multilevel strategy to analyze these NSC states with the aim to uncover signals that regulate their level of quiescence/activation. We show that transitions between states occur in vivo and that activated and primed, but not quiescent, states can be captured and studied in culture. We also show that peripherally induced inflammation promotes a …

NeurogenesisInflammationBiologyReceptors Tumor Necrosis Factor03 medical and health sciences0302 clinical medicineNeural Stem CellsLateral VentriclesGeneticsSubependymal zonemedicineHumansReceptor030304 developmental biologyInflammation0303 health sciencesMicrogliaTumor Necrosis Factor-alphaNeurogenesisCell BiologyNeural stem cellCell biologyAdult Stem Cellsmedicine.anatomical_structurenervous systemReceptors Tumor Necrosis Factor Type IMolecular MedicineSignal transductionmedicine.symptom030217 neurology & neurosurgeryAdult stem cellSignal TransductionCell stem cell
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Architecture and cell types of the adult subventricular zone: in search of the stem cells.

1998

Neural stem cells are maintained in the subventricular zone (SVZ) of the adult mammalian brain. Here, we review the cellular organization of this germinal layer and propose lineage relationships of the three main cell types found in this area. The majority of cells in the adult SVZ are migrating neuroblasts (type A cells) that continue to proliferate. These cells form an extensive network of tangentially oriented pathways throughout the lateral wall of the lateral ventricle. Type A cells move long distances through this network at high speeds by means of chain migration. Cells in the SVZ network enter the rostral migratory stream (RMS) and migrate anteriorly into the olfactory bulb, where t…

NeuronsRostral migratory streamGeneral NeuroscienceStem CellsNeurogenesisSubventricular zoneBiologyOlfactory BulbNeural stem cellCerebral VentriclesNeuroepithelial cellCellular and Molecular Neurosciencemedicine.anatomical_structurenervous systemCell MovementInterneuronsSubependymal zonemedicineAnimalsStem cellNeuroscienceCell DivisionAdult stem cellJournal of neurobiology
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Neurogenesis in adult subventricular zone

2002

Much excitement has been generated by the identification of adult brain regions harboring neural stem cells and their continual generation of new neurons throughout life. This is an important departure from traditional views of the germinal potential of the postnatal brain. However, a more profound

NeuronsRostral migratory streamGeneral NeuroscienceStem CellsNeurogenesisSubventricular zoneCell DifferentiationBiologyMini-ReviewNeural stem cellLateral ventriclesmedicine.anatomical_structureCell MovementNeuroblast migrationAstrocytesLateral VentriclesmedicineSubependymal zoneAnimalsHumansRegenerationStem cellNeuroscience
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