Search results for "Neural stem cell"

showing 10 items of 250 documents

Unveiling neural stem cell quiescence: a crosstalk with the extracellular matrix niche

2023

Neural stem cells (NSCs) in the subependymal zone (SEZ) reside in a very specialized microenvironment that tightly regulates their activation state. Three NSC populations coexist in the niche, quiescent (qNSCs), primed and activated (aNSCs), which display unique, actively modulated, molecular identities. One of the specialized extrinsic properties that affect NSC quiescence-to-activation transitions is the extracellular matrix (ECM). The SEZ is the only region in the whole mouse brain that has two basement membrane (BM) structures: vascular and speckled BMs. Further, it displays higher stiffness compared to non-neurogenic areas, suggesting that both composition and ECM properties could part…

extracellular matrixUNESCO::CIENCIAS DE LA VIDAquiescenceneural stem cells
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Neural Stem Cells in the Adult Brain: From Benchside to Clinic

2012

Increasing evidence indicates that neural stem cells (NSCs) play an important role in sustaining cellular homeostasis and brain tissue restoration. The study of all mechanisms that control and modulate the function of NSC is a crucial step for the design of therapies against chronic neurodegenerative processes. In this special issue of the journal, we had the pleasure to edit the topic entitled “Neural Stem Cells in the Adult Brain: From Benchside to Clinic.” This special compilation of paper was aimed to provide a global forum for publications of original peer-reviewed manuscripts that reported original research findings in the field of adult neural stem cell, including short communication…

lcsh:Internal medicineArticle SubjectNeurogenesisSubventricular zoneCellular homeostasisCell BiologyNestinBiologyBioinformaticsNeural stem cellmedicine.anatomical_structureEditorialmedicineStem cellProgenitor celllcsh:RC31-1245Molecular BiologyNeurosciencePI3K/AKT/mTOR pathwayStem Cells International
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An O2-sensitive glomus cell-stem cell synapse induces carotid body growth in chronic hypoxia.

2013

Summary Neural stem cells (NSCs) exist in germinal centers of the adult brain and in the carotid body (CB), an oxygen-sensing organ that grows under chronic hypoxemia. How stem cell lineage differentiation into mature glomus cells is coupled with changes in physiological demand is poorly understood. Here, we show that hypoxia does not affect CB NSC proliferation directly. Rather, mature glomus cells expressing endothelin-1, the O 2 -sensing elements in the CB that secrete neurotransmitters in response to hypoxia, establish abundant synaptic-like contacts with stem cells, which express endothelin receptors, and instruct their growth. Inhibition of glomus cell transmitter release or their sel…

medicine.medical_specialtyMice TransgenicBiologyGeneral Biochemistry Genetics and Molecular BiologyProlyl HydroxylasesMiceGlomus cellNeural Stem CellsInternal medicinemedicineAnimalsRats WistarCell ProliferationCarotid BodyCell growthBiochemistry Genetics and Molecular Biology(all)Germinal centerCell DifferentiationHypoxia (medical)Respiratory CenterNeural stem cellRatsOxygenEndocrinologymedicine.anatomical_structureCarotid bodyStem cellmedicine.symptomEndothelin receptorCell
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cGMP MODULATES STEM CELLS DIFFERENTIATION TO NEURONS IN BRAIN IN VIVO

2010

During brain development neural stem cells may differentiate to neurons or to other cell types. The aim of this work was to assess the role of cGMP (cyclic GMP) in the modulation of differentiation of neural stem cells to neurons or non-neuronal cells. cGMP in brain of fetuses was reduced to 46% of controls by treating pregnant rats with nitroarginine-methylester (L-NAME) and was restored by co-treatment with sildenafil.Reducing cGMP during brain development leads to reduced differentiation of stem cells to neurons and increased differentiation to non-neuronal cells. The number of neurons in the prefrontal cortex originated from stem cells proliferating on gestational day 14 was 715 +/- 14/…

medicine.medical_specialtyPhosphodiesterase InhibitorsNeurogenesissildenafilHippocampusPrefrontal CortexApoptosisHippocampusPiperazinesSildenafil Citratenitric oxideNeurosphereInternal medicinemedicineAnimalsratSulfonesEnzyme InhibitorsRats WistarCyclic GMPNitritesCerebral CortexNeuronsNitratesbiologyGeneral NeuroscienceStem CellsBrainCell DifferentiationNeural stem cellRatsNeuroepithelial cellmedicine.anatomical_structureEndocrinologyNG-Nitroarginine Methyl Esternervous systemPurinesbiology.proteinNeuronStem cellNeuNAdult stem cell
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Signaling through BMPR-IA regulates quiescence and long-term activity of neural stem cells in the adult hippocampus.

2010

SummaryNeural stem cells (NSCs) in the adult hippocampus divide infrequently, and the molecules that modulate their quiescence are largely unknown. Here, we show that bone morphogenetic protein (BMP) signaling is active in hippocampal NSCs, downstream of BMPR-IA. BMPs reversibly diminish proliferation of cultured NSCs while maintaining their undifferentiated state. In vivo, acute blockade of BMP signaling in the hippocampus by intracerebral infusion of Noggin first recruits quiescent NSCs into the cycle and increases neurogenesis; subsequently, it leads to decreased stem cell division and depletion of precursors and newborn neurons. Consistently, selective ablation of Bmpr1a in hippocampal …

medicine.medical_specialtyanimal structuresGenetic VectorsHippocampal formationBiologyBone morphogenetic proteinHippocampusModels BiologicalMOLNEUROCell LineMiceNeural Stem CellsInternal medicineGeneticsmedicineAnimalsHumansNogginBone Morphogenetic Protein Receptors Type ICells Culturedreproductive and urinary physiologySmad4 ProteinNeuronsReverse Transcriptase Polymerase Chain ReactionStem CellsCell CycleLentivirusNeurogenesisCentral-nervous-system; Bone morphogenetic protein; Dentate gyrus; Progenitor cells; Neurogenesis; Expression; Receptor; Noggin; Brain; DifferentiationCell BiologyFlow CytometrySTEMCELLRats Inbred F344BMPR1ANeural stem cellRatsCell biologyEndocrinologyStem cell divisionnervous systemembryonic structuresMolecular MedicineStem cellbiological phenomena cell phenomena and immunityCarrier ProteinsSignal Transduction
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Programming of neural progenitors of the adult subependymal zone towards a glutamatergic identity by Neurogenin2

2017

ABSTRACTWhile the adult subependymal zone (SEZ) harbors pools of distinct neural stem cells that generate different types of GABAergic interneurons, a small progenitor population in the dorsal SEZ expresses Neurog2 and gives rise to glutamatergic neurons. Here we investigated whether SEZ progenitors can be programmed towards glutamatergic neurogenesis through forced expression of Neurog2. Retrovirus-mediated expression of Neurog2 induced the glutamatergic neuron lineage markers Tbr2 and Tbr1 in cultured SEZ progenitors which subsequently differentiated into functional glutamatergic neurons. Likewise, retrovirus-mediated expression of Neurog2 in dividing SEZ progenitors within the adult SEZ …

medicine.medical_specialtyeducation.field_of_studybiologyRostral migratory streamNeurogenesisPopulationNeural stem cellGlutamatergicmedicine.anatomical_structureEndocrinologyInternal medicineembryonic structuresmedicinebiology.proteinSubependymal zoneTBR1NeuroneducationNeuroscience
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Age-Related Changes in Astrocytic and Ependymal Cells of the Subventricular Zone

2014

Neurogenesis persists in the adult subventricular zone (SVZ) of the mammalian brain. During aging, the SVZ neurogenic capacity undergoes a progressive decline, which is attributed to a decrease in the population of neural stem cells (NSCs). However, the behavior of the NSCs that remain in the aged brain is not fully understood. Here we performed a comparative ultrastructural study of the SVZ niche of 2-month-old and 24-month-old male C57BL/6 mice, focusing on the NSC population. Using thymidine-labeling, we showed that residual NSCs in the aged SVZ divide less frequently than those in young mice. We also provided evidence that ependymal cells are not newly generated during senescence, as ot…

nervous systemagingastrocytesependymal cellssubventricular zoneultrastructureneural stem cells
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The lizard cerebral cortex as a model to study neuronal regeneration

2002

The medial cerebral cortex of lizards, an area homologous to the hippocampal fascia dentata, shows delayed postnatal neurogenesis, i.e., cells in the medial cortex ependyma proliferate and give rise to immature neurons, which migrate to the cell layer. There, recruited neurons differentiate and give rise to zinc containing axons directed to the rest of cortical areas, thus resulting in a continuous growth of the medial cortex and its zinc-enriched axonal projection. This happens along the lizard life span, even in adult lizards, thus allowing one of their most important characteristics: neuronal regeneration. Experiments in our laboratory have shown that chemical lesion of the medial cortex…

neurogênese pós-natalMedial cortexhippocampushipocampoHippocampusBiologyHippocampal formationcélulas-troncomedicineAnimalsmedial cortexcortex mediallcsh:Scienceneural stem cellsCerebral CortexNeuronsMultidisciplinaryzincLizardsAnatomypostnatal neurogenesisNeural stem cellNerve Regenerationregeneraçãomedicine.anatomical_structurenervous systemzincoCerebral cortexregenerationModels AnimalFascia dentatalcsh:QNeuronSeasonsEpendymaNeuroscienceAnais da Academia Brasileira de Ciências
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p73 deficiency results in impaired self renewal and premature neuronal differentiation of mouse neural progenitors independently of p53

2010

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p53Cancer ResearchGenotypeCellular differentiationImmunologyPopulationp73RegulatorBiologyCellular and Molecular NeuroscienceMiceNeurosphereAnimalsProgenitor celleducationCell ProliferationNeuronsNeural stem cellseducation.field_of_studyCell growthTumor Suppressor ProteinsNuclear ProteinsCell DifferentiationNeurodegenerative DiseasesTumor Protein p73Cell BiologyEmbryonic stem cellasymmetric divisionNeural stem cellCell biologyDNA-Binding ProteinsDifferentiationSelf-renewalOriginal ArticleTumor Suppressor Protein p53
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Development of Bioimage Analysis tools for the study of neurogenesis and neurodegeneration

2021

ANTECEDENTES La combinación sinérgica de métodos automatizados de captura y análisis de bioimagen está emergiendo como un enfoque de vanguardia para abordar muchas cuestiones biológicas. Sin embargo, hay muchos campos en los que estas técnicas aún no se implementan y, en cambio, todavía se basan en la inspección visual y el análisis manual, que inevitablemente limitan el rendimiento alcanzable y son más propensos a introducir el sesgo del investigador. Por lo tanto, aún queda un gran esfuerzo por hacer en la difusión del uso de tecnologías de bioimagen de vanguardia en los campos de las ciencias de la vida con una gran dependencia de métodos de microscopía. En la presente tesis, nuestro obj…

remyelinationhigh content screeningUNESCO::CIENCIAS DE LA VIDAbioimage analysis:CIENCIAS DE LA VIDA [UNESCO]neural stem cells
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