Search results for "Subventricular zone"

showing 10 items of 98 documents

Astrocytic Calcium Waves Signal Brain Injury to Neural Stem and Progenitor Cells

2017

Summary Brain injuries, such as stroke or trauma, induce neural stem cells in the subventricular zone (SVZ) to a neurogenic response. Very little is known about the molecular cues that signal tissue damage, even over large distances, to the SVZ. Based on our analysis of gene expression patterns in the SVZ, 48 hr after an ischemic lesion caused by middle cerebral artery occlusion, we hypothesized that the presence of an injury might be transmitted by an astrocytic traveling calcium wave rather than by diffusible factors or hypoxia. Using a newly established in vitro system we show that calcium waves induced in an astrocytic monolayer spread to neural stem and progenitor cells and increase th…

Male0301 basic medicineTime FactorsNotch signaling pathwaySubventricular zonechemistry.chemical_elementBiologyCalciumcalcium signalingBiochemistryArticleMice03 medical and health sciencesAdenosine TriphosphateNeural Stem CellsDownregulation and upregulationCell MovementGeneticsmedicineAnimalsCell Self RenewalProgenitor celllcsh:QH301-705.5Cells CulturedCalcium signalinglcsh:R5-920Gene Expression ProfilingastrocytesGap JunctionsCell DifferentiationCell BiologyAnatomyHypoxia (medical)strokeNeural stem cellDisease Models Animal030104 developmental biologymedicine.anatomical_structurelcsh:Biology (General)chemistryBrain InjuriesCalciummedicine.symptomFunction and Dysfunction of the Nervous Systemlcsh:Medicine (General)TranscriptomeNeurosciencenotchDevelopmental BiologyStem Cell Reports
researchProduct

Influences of prenatal and postnatal stress on adult hippocampal neurogenesis: The double neurogenic niche hypothesis

2015

International audience; Adult hippocampal neurogenesis (AHN) is involved in learning, memory, and stress, and plays a significant role in neurodegenerative and psychiatric disorders. As an age-dependent process, AHN is largely influenced by changes that occur during the pre- and postnatal stages of brain development, and constitutes an important field of research. This review examines the current knowledge regarding the regulators of AHN and the influence of prenatal and postnatal stress on later AHN. In addition, a hypothesis is presented suggesting that each kind of stress influences a specific neurogenic pool, developmental or postnatal, that later becomes a precursor with important repe…

MaleAgingBrain developmentprogenitor cellNeurogenesisNicheAdult hipocampal neurogenesis (AHN)neural stem-cellHippocampal formationgrowth-factorHippocampusHypothalamic-pituitary-adrenal (HPA)03 medical and health sciencesBehavioral Neuroscience0302 clinical medicinePregnancyRisk FactorsPrecursor cellPostnatal stressAnimalsHumanspattern separation030304 developmental biologyCell Proliferationrat dentate gyrus0303 health sciencesMental DisordersNeurogenesisStressorsubventricular zoneCell DifferentiationPrecursor cellsPostnatal stress (PTS)Neurogenic poolgenetic influencePrenatal Exposure Delayed Effectsolfactory-bulbPrenatal stress (PS)Female[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]decreases neurogenesisPsychologyNeuroscience030217 neurology & neurosurgeryStress Psychologicalbrain neurogenesis
researchProduct

Postnatal loss of Dlk1 imprinting in stem cells and niche astrocytes regulates neurogenesis.

2011

The gene for the atypical NOTCH ligand delta-like homologue 1 (Dlk1) encodes membrane-bound and secreted isoforms that function in several developmental processes in vitro and in vivo. Dlk1, a member of a cluster of imprinted genes, is expressed from the paternally inherited chromosome. Here we show that mice that are deficient in Dlk1 have defects in postnatal neurogenesis in the subventricular zone: a developmental continuum that results in depletion of mature neurons in the olfactory bulb. We show that DLK1 is secreted by niche astrocytes, whereas its membrane-bound isoform is present in neural stem cells (NSCs) and is required for the inductive effect of secreted DLK1 on self-renewal. N…

MaleAgingGenotypeNeurogenesisSubventricular zoneBiologyArticle03 medical and health sciencesGenomic ImprintingMice0302 clinical medicineNeural Stem CellsmedicineAnimalsProtein IsoformsEpigeneticsImprinting (psychology)Stem Cell NicheCells Cultured030304 developmental biologyGenetics0303 health sciencesMultidisciplinaryBase SequenceNeurogenesisCalcium-Binding ProteinsCell MembraneEmbryo MammalianOlfactory BulbNeural stem cellCell biologyMice Inbred C57BLmedicine.anatomical_structureAnimals NewbornAstrocytesDNA methylationNeurogliaIntercellular Signaling Peptides and ProteinsFemaleGenomic imprinting030217 neurology & neurosurgery
researchProduct

Vascular‐derived TGF‐β increases in the stem cell niche and perturbs neurogenesis during aging and following irradiation in the adult mouse brain

2012

Neurogenesis decreases during aging and following cranial radiotherapy, causing a progressive cognitive decline that is currently untreatable. However, functional neural stem cells remained present in the subventricular zone of high dose-irradiated and aged mouse brains. We therefore investigated whether alterations in the neurogenic niches are perhaps responsible for the neurogenesis decline. This hypothesis was supported by the absence of proliferation of neural stem cells that were engrafted into the vascular niches of irradiated host brains. Moreover, we observed a marked increase in TGF-β1 production by endothelial cells in the stem cell niche in both middle-aged and irradiated mice. I…

MaleAgingNeurogenesisStem cell theory of agingSubventricular zoneBiologyMice03 medical and health sciences0302 clinical medicineNeural Stem CellsTransforming Growth Factor betamedicineAnimalsHumansTGF-betaStem Cell NicheProgenitor cellResearch ArticlesCell Proliferation030304 developmental biology0303 health sciencesirradiationNeurogenesisBrainEndothelial CellsNeural stem cellCell biologyMice Inbred C57BLEndothelial stem cellNeuroepithelial cellmedicine.anatomical_structureImmunologyMolecular Medicine030217 neurology & neurosurgerySignal TransductionAdult stem cellEMBO Molecular Medicine
researchProduct

FGF-2/FGFR1 neurotrophic system expression level and its basal activation do not account for the age-dependent decline of precursor cell proliferatio…

2010

It is largely accepted that neurogenesis in the adult brain decreases with age and reduced levels of local neurotrophic support is speculated to be a contributing factor. Among neurotrophic factors involved on neurogenesis, we focused our attention on the neurotrophic system fibroblast growth factor-2 (FGF-2) and its receptor FGFR1, a potent modulator of precursor cell proliferation. In the present work, we aimed to analyse if potential age-dependent changes of the FGF-2/FGFR1 neurotrophic system may give account for the age-dependent decline of precursor cell proliferation in the neurogenic region of the subventricular zone (SVZ) in the rat brain. Using in situ hybridization and western bl…

MaleAgingmedicine.medical_specialtySubventricular zoneNeurogenesisReceptor expressionFGF-2Subventricular zoneFibroblast growth factorSettore BIO/09 - FisiologiaCerebral VentriclesFGF-2; FGFR1; Neurogenesis; Subventricular zone; Neuronal precursor cells; AgingGrowth factor receptorNeurotrophic factorsInternal medicinePrecursor cellmedicineAnimalsRNA MessengerReceptor Fibroblast Growth Factor Type 1PhosphorylationRats WistarMolecular BiologyCell ProliferationMitogen-Activated Protein Kinase 3biologyPhospholipase C gammaGeneral NeuroscienceNeurogenesisBrainNeuronal precursor cellRatsAdult Stem CellsFGFR1medicine.anatomical_structureEndocrinologyBromodeoxyuridineGene Expression Regulationbiology.proteinFibroblast Growth Factor 1NeurogenesiFibroblast Growth Factor 2Neurology (clinical)Developmental BiologyNeurotrophinBrain Research
researchProduct

Interaction between Angiotensin Type 1, Type 2, and Mas Receptors to Regulate Adult Neurogenesis in the Brain Ventricular–Subventricular Zone

2019

The renin&ndash

MaleAgingproliferationNeurogenesisProliferationSubventricular zoneventricular–subventricular zoneBiologyModels BiologicalReceptor Angiotensin Type 2ArticleReceptor Angiotensin Type 1MiceNeuroblastNeural Stem CellsLateral VentriclesmedicineneurospheresAT1 receptorsAnimalsReceptorNeural stem cellsMice KnockoutAngiotensin II receptor type 1Cell growthAngiotensin IINeurogenesisagingAge FactorsGeneral MedicineImmunohistochemistryNeural stem cellOlfactory bulbCell biologyRatsVentricular–subventricular zonemedicine.anatomical_structurenervous systemAT2 receptorscardiovascular systemNeurosphereshormones hormone substitutes and hormone antagonistscirculatory and respiratory physiologyProtein BindingCells
researchProduct

Therapeutic effects of hMAPC and hMSC transplantation after stroke in mice.

2012

Stroke represents an attractive target for stem cell therapy. Although different types of cells have been employed in animal models, a direct comparison between cell sources has not been performed. The aim of our study was to assess the effect of human multipotent adult progenitor cells (hMAPCs) and human mesenchymal stem cells (hMSCs) on endogenous neurogenesis, angiogenesis and inflammation following stroke. BALB/Ca-RAG 2(-/-) γC(-/-) mice subjected to FeCl(3) thrombosis mediated stroke were intracranially injected with 2 × 10(5) hMAPCs or hMSCs 2 days after stroke and followed for up to 28 days. We could not detect long-term engraftment of either cell population. However, in comparison w…

MaleAnatomy and PhysiologyMousemedicine.medical_treatmentCell therapyMiceCell MovementMolecular Cell BiologyNeurobiology of Disease and RegenerationMedicineMultidisciplinaryNeuronal MorphologyNeurogenesisQRBrainInfarction Middle Cerebral ArteryAnimal ModelsStem-cell therapyStrokeAdult Stem Cellsmedicine.anatomical_structureNeurologyMedicineResearch ArticleAdult stem cellCell PhysiologyHistologyCell SurvivalCerebrovascular DiseasesScienceTherapeutic effectsNeurophysiologyNeovascularization PhysiologicSubventricular zoneMesenchymal Stem Cell TransplantationNeurological SystemModel OrganismsAnimalsHumansProgenitor cellBiologyTransplantationbusiness.industryMultipotent Stem CellsMesenchymal stem cellMultipotent Stem CellCellular NeuroscienceImmunologyCancer researchMolecular NeurosciencebusinesshMAPC and hMSCNeurosciencePLoS ONE
researchProduct

Lack of the Cell-Cycle Inhibitor p27Kip1 Results in Selective Increase of Transit-Amplifying Cells for Adult Neurogenesis

2002

The subventricular zone (SVZ) is the largest germinal layer in the adult mammalian brain and comprises stem cells, transit-amplifying progenitors, and committed neuroblasts. Although the SVZ contains the highest concentration of dividing cells in the adult brain, the intracellular mechanisms controlling their proliferation have not been elucidated. We show here that loss of the cyclin-dependent kinase inhibitor p27Kip1 has very specific effects on a population of CNS progenitors responsible for adult neurogenesis. Using bromodeoxyuridine and [3H]thymidine incorporation to label cells in S phase and cell-specific markers and electron microscopy to identify distinct cell types, we compared th…

MaleCell typePopulationSubventricular zoneApoptosisCell CountCell Cycle ProteinsMice TransgenicBiologyMicechemistry.chemical_compoundNeuroblastLateral VentriclesSpheroids CellularIn Situ Nick-End LabelingmedicineAnimalsARTICLEProgenitor celleducationCells CulturedNeuronseducation.field_of_studyStem CellsTumor Suppressor ProteinsGeneral NeuroscienceCell CycleNeurogenesisCell DifferentiationImmunohistochemistryCell biologyMice Inbred C57BLmedicine.anatomical_structureBromodeoxyuridinenervous systemchemistryStem cellCell DivisionCyclin-Dependent Kinase Inhibitor p27BromodeoxyuridineThymidineThe Journal of Neuroscience
researchProduct

Ultrastructure of the subventricular zone in Macaca fascicularis and evidence of a mouse-like migratory stream.

2009

Recent publications have shown that the lateral wall of the lateral ventricles in the Macaca fascicularis brain, in particular the subventricular zone (SVZ), contains neural stem cells throughout adulthood that migrate through a migratory pathway (RMS) to the olfactory bulb (OB). To date, a detailed and systematic cytoarchitectural and ultrastructural study of the monkey SVZ and RMS has not been done. We found that the organization of the SVZ was similar to that of humans, with the ependymal layer surrounding the lateral ventricles, a hypocellular GAP layer formed by astrocytic and ependymal expansions, and the astrocyte ribbon, composed of astrocytic bodies. We found no cells corresponding…

MaleEpendymal CellRostral migratory streamSubventricular zoneBiologyLateral ventriclesCell MovementEpendymaLateral VentriclesmedicineAnimalsNeuronsGeneral NeuroscienceNeurogenesisGTPase-Activating ProteinsImmunohistochemistryOlfactory BulbNeural stem cellOlfactory bulbMacaca fascicularisMicroscopy Electronmedicine.anatomical_structureKi-67 Antigennervous systemAstrocytesNeuroscienceAstrocyteThe Journal of comparative neurology
researchProduct

Postnatal Deletion of Numb/Numblike Reveals Repair and Remodeling Capacity in the Subventricular Neurogenic Niche

2006

Neural stem cells are retained in the postnatal subventricular zone (SVZ), a specialized neurogenic niche with unique cytoarchitecture and cell-cell contacts. Although the SVZ stem cells continuously regenerate, how they and the niche respond to local changes is unclear. Here we generated nestin-creERtm transgenic mice with inducible Cre recombinase in the SVZ, and removed Numb/Numblike, key regulators of embryonic neurogenesis from postnatal SVZ progenitors and ependymal cells. This resulted in severe damage to brain lateral ventricle integrity, and identified previously unknown roles for Numb/Numblike in regulating ependymal wall integrity and SVZ neuroblast survival. Surprisingly, the ve…

MaleEpendymal Cellanimal diseasesSubventricular zoneMice TransgenicNerve Tissue ProteinsCell CommunicationBiologyArticleGeneral Biochemistry Genetics and Molecular BiologyNestinMice03 medical and health sciences0302 clinical medicineIntermediate Filament ProteinsNeuroblastEpendymaLateral VentriclesmedicineAnimals030304 developmental biologyNeuronsGenetics0303 health sciencesIntegrasesBiochemistry Genetics and Molecular Biology(all)Stem CellsNeurogenesisIntracellular Signaling Peptides and ProteinsBrainMembrane ProteinsEmbryonic stem cellNeural stem cellCell biologyMice Inbred C57BLmedicine.anatomical_structureAnimals Newbornnervous systemNUMBFemaleStem cellGene Deletion030217 neurology & neurosurgeryCell
researchProduct