Search results for "SVZ"

showing 7 items of 7 documents

Fibroblast growth factor-2 and its receptor expression in proliferating precursor cells of the subventricular zone in the adult rat brain

2008

Several findings have suggested the existence in the subventricular zone (SVZ) from sagittal sections of adult rat brain of a trophic mechanism, mediated by fibroblast growth factor-2 (FGF-2) and its multiple high-affinity FGF receptors (FGFRs), regulating neurogenesis mainly by controlling precursor cell proliferation. However, no clear data are available on the expression of FGF-2 and FGFRs in proliferating precursor cells of the SVZ. To address these questions we examined FGF-2 mRNA and its FGFR mRNA expression in proliferating precursor cells of the SVZ by using a double labeling procedure, combining in situ hybridization for FGF-2 and its FGFR mRNA with immunohistochemistry for bromode…

Maleanimal diseasesReceptor expressionGene ExpressionFGF-2Subventricular zoneSVZBiologySettore BIO/09 - FisiologiaCerebral Ventricleschemistry.chemical_compoundPrecursor cellmedicineAnimalsReceptor Fibroblast Growth Factor Type 3RNA MessengerReceptor Fibroblast Growth Factor Type 1Rats WistarReceptor Fibroblast Growth Factor Type 2BrdUCell ProliferationFGF receptorGeneral NeuroscienceFibroblast growth factor receptor 1NeurogenesisBrainPrecursor cellsFibroblast growth factor receptor 4RatsCell biologyAdult Stem CellsFGF receptorsmedicine.anatomical_structureBromodeoxyuridinenervous systemchemistryFibroblast growth factor receptorFibroblast Growth Factor 2NeuroscienceBromodeoxyuridineBrdU; FGF receptors; FGF-2Neuroscience Letters
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The FGF-2/FGFRs neurotrophic system promotes neurogenesis in the adult brain.

2009

Neurogenesis occurs in two regions of the adult brain, namely, the subventricular zone (SVZ) throughout the wall of the lateral ventricle and the subgranular zone (SGZ) of the dentate gyrus (DG) in hippocampal formation. Adult neurogenesis requires several neurotrophic factors to sustain and regulate the proliferation and differentiation of the adult stem cell population. In the present review, we examine the cellular and functional aspects of a trophic system mediated by fibroblast growth factor-2 (FGF-2) and its receptors (FGFRs) related to neurogenesis in the SVZ and SGZ of the adult rat brain. In the SVZ, FGF-2 is expressed in GFAP-positive cells of SVZ but is not present in proliferati…

AgingNeurogenesisSubventricular zoneCerebral VentriclesSubgranular zoneNeurotrophic factorsPrecursor cellmedicineAnimalsHumansBiological PsychiatrybiologyDentate gyrusNeurogenesisBrainReceptors Fibroblast Growth FactorPsychiatry and Mental healthmedicine.anatomical_structurenervous systemNeurologybiology.proteinFibroblast Growth Factor 2Neurology (clinical)NeurosciencePrecursor cells Fibroblast growth factor-2 (FGF-2) Fibroblast growth factor receptor 1 (FGFR-1) Fibroblast growth factor receptor 2 (FGFR-2) Subgranular zone (SGZ) Subventricular zone (SVZ) NeurogenesisSignal TransductionAdult stem cellNeurotrophin
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Nicotine-induced fibroblast growth factor-2 restores the age-related decline of precursor cell proliferation in the subventricular zone of rat brain.

2007

Precursor cell proliferation is present in the subventricular zone (SVZ) of the lateral ventricles and the subgranular zone (SGZ) of the dentate gyrus of the hippocampus of adult rat and persists during aging although at reduced levels. Previous studies have shown that acute intermittent nicotine treatment significantly increases fibroblast growth factor-2 (FGF-2) expression in several brain regions of aged rats. The aim of the present investigation was to test the hypothesis that nicotine-induced expression of FGF-2 may restore the age-related decline of precursor cell proliferation. It was first demonstrated that nicotine treatment increases both mRNA and protein FGF-2 in the SVZ of aged …

Malemedicine.medical_specialtyAgingNicotineBasic fibroblast growth factorSubventricular zoneCell CountNerve Tissue ProteinsBiologyFibroblast growth factorSettore BIO/09 - FisiologiaAntibodiesSubgranular zoneNestinchemistry.chemical_compoundIntermediate Filament ProteinsInternal medicinePrecursor cellLateral VentriclesGlial Fibrillary Acidic ProteinmedicineAnimalsNicotinic AgonistsRats WistarMolecular BiologyCell ProliferationAnalysis of VarianceCell growthGeneral NeuroscienceDentate gyrusFibroblast growth factor receptor 1BrainPrecursor proliferationFGF-2 FGFR1 SVZ Nicotine AgedRatsAdult Stem CellsEndocrinologymedicine.anatomical_structurenervous systemchemistryBromodeoxyuridineGene Expression RegulationFibroblast Growth Factor 2Neurology (clinical)Developmental BiologyBrain research
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Unique Organization of the Nuclear Envelope in the Post-natal Quiescent Neural Stem Cells

2017

Summary Neural stem cells (B1 astrocytes; NSCs) in the adult ventricular-subventricular-zone (V-SVZ) originate in the embryo. Surprisingly, recent work has shown that B1 cells remain largely quiescent. They are reactivated postnatally to function as primary progenitors for neurons destined for the olfactory bulb and some corpus callosum oligodendrocytes. The cellular and molecular properties of quiescent B1 cells remain unknown. Here we found that a subpopulation of B1 cells has a unique nuclear envelope invagination specialization similar to envelope-limited chromatin sheets (ELCS), reported in certain lymphocytes and some cancer cells. Using molecular markers, [3H]thymidine birth-dating, …

0301 basic medicineNuclear EnvelopeV-SVZBiologyBiochemistry*nuclear ELCSArticleMice03 medical and health sciences*neural stem cellsNeural Stem CellsLateral VentriclesGeneticsAnimalsquiescenceProgenitor celllcsh:QH301-705.5Cells CulturedGeneticslcsh:R5-920*quiescencenuclear envelope invaginationsCell CycleCell Biology*V-SVZnuclear ELCS*nuclear envelope invaginationsEmbryonic stem cellChromatinNeural stem cellOlfactory bulbCell biologyChromatinB-1 cellAdult Stem Cells030104 developmental biologylcsh:Biology (General)nervous systemAstrocytesCancer celllcsh:Medicine (General)Developmental BiologyAdult stem cell
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The aged brain: Genesis and fate of residual progenitor cells in the subventricular zone

2015

Neural stem cells (NSCs) persist in the adult mammalian brain through life. The subventricular zone (SVZ) is the largest source of stem cells in the nervous system, and continuously generates new neuronal and glial cells involved in brain regeneration. During aging, the germinal potential of the SVZ suffers a widespread decline, but the causes of this turn down are not fully understood. This review provides a compilation of the current knowledge about the age-related changes in the NSC population, as well as the fate of the newly generated cells in the aged brain. It is known that the neurogenic capacity is clearly disrupted during aging, while the production of oligodendroglial cells is no…

AgingRostral migratory streamRostral migratory streamNeurogenesisSubventricular zoneReviewBiologylcsh:RC321-571Cellular and Molecular NeurosciencemedicineSubependymal zoneCell migrationlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryNeural stem cellsNeurogenesissubventricular zonesubventricular zone (SVZ)Neural stem cellNeuroepithelial cellmedicine.anatomical_structurenervous systemOligodendrogenesisStem cellNeuroscienceAdult stem cellNeuroscience
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Estudio de la migración neuronal de las células nerviosas de la SVZ en la enfermedad de Alzheimer

2021

En el cerebro adulto de la mayoría de los mamíferos el nicho neurogénico con mayor capacidad neurogénica es la zona ventricular-subventricular (V-SVZ). Esta región se encuentra distribuida a lo largo de las paredes de los ventrículos laterales. La capacidad neurogénica que presenta esta región se debe a la presencia de las denominadas células B. Además nos encontramos con otros tipos celulares como son las células tipo C o progenitores intermedios, las tipo A o migradoras y las tipo E o células ependimarias. Las células tipo B son capaces de dar lugar a las células tipo C que finalmente generan las células tipo A. En condiciones fisiológicas, las células tipo A migran principalmente hasta l…

:CIENCIAS DE LA VIDA::Neurociencias::Neurofisiología [UNESCO]migración:CIENCIAS MÉDICAS ::Patología::Neuropatología [UNESCO]:CIENCIAS DE LA VIDA::Fisiología humana ::Fisiología del sistema nervioso central [UNESCO]alzheimerneurogénesissenescenciaSVZUNESCO::CIENCIAS DE LA VIDA::Neurociencias::NeurofisiologíaUNESCO::CIENCIAS MÉDICAS ::Patología::NeuropatologíaAPC/C-Cdh1UNESCO::CIENCIAS DE LA VIDA::Fisiología humana ::Fisiología del sistema nervioso central
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Drug connectivity mapping and functional analysis reveal therapeutic small molecules that differentially modulate myelination

2022

Disruption or loss of oligodendrocytes (OLs) and myelin has devastating effects on CNS function and integrity, which occur in diverse neurological disorders, including Multiple Sclerosis (MS), Alzheimer’s disease and neuropsychiatric disorders. Hence, there is a need to develop new therapies that promote oligodendrocyte regeneration and myelin repair. A promising approach is drug repurposing, but most agents have potentially contrasting biological actions depending on the cellular context and their dose-dependent effects on intracellular pathways. Here, we have used a combined systems biology and neurobiological approach to identify compounds that exert positive and negative effects on olig…

MyelinMiceMyelin SheathNSC Neural stem cellSystems BiologyOPC Oligodendrocyte progenitor cellHigh-Throughput Nucleotide SequencingLINCS The Library of Integrated Network-based Cellular SignaturesCell DifferentiationGeneral MedicineCNS Central Nervous SystemOligodendrogliamedicine.anatomical_structureOligodendrogenesisNFOL Newly formed oligodendrocyteOL OligodendrocyteSignal TransductionSubventricular zoneOptic nerveIn silicoSystems biologyMorpholinesSVZ subventricular zoneContext (language use)RM1-950BiologyArticlemedicinePharmacogenomics The Library of Integrated Network-Based Cellular Signatures/LINCSAnimalsH-LY29 High concentration of LY294002Computer SimulationPI3K/AKT/mTOR pathwayL-LY29 Low concentration of LY294002PharmacologyPI3K/AktTCN TriciribineDose-Response Relationship DrugRegeneration (biology)Multiple sclerosismedicine.diseaseOligodendrocyteOligodendrocyteiNSCs iPSC-derived NSCsTAPs Transiently amplifying progenitorsMice Inbred C57BLMS Multiple SclerosisiPCS induced Pluripotent Stem CellChromonesPharmacogeneticsTherapeutics. PharmacologyMOL Myelinating oligodendrocyteNeuroscienceBiomedicine & Pharmacotherapy
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