Search results for "Astrocyte"

showing 10 items of 209 documents

Effect of inorganic arsenic on rat cortical astrocytes in culture

2009

Although inorganic arsenic is a well known poisonous metalloid, the cellular and molecular mechanisms of its action remain elusive. The present study was aimed at analyzing the effects of NaAsO2 on primary cultures of rat astrocytes by determining DNA damage by comet assay, and by evaluating possible changes of the concentration of some conserved heat shock proteins. Cells treated with inorganic arsenic underwent induction of Hsp70, demonstrating a state of stress. Moreover, although micromolar NaAsO2 treatments (60 μM) only reduced cell viability to 60% respect to untreated cells, high DNA damage was already observed after 24h treatment with 10 μM arsenite. Since arsenic is known to be not…

Settore BIO/18 - GeneticaastrocyteSettore BIO/10 - BiochimicaArsenic
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CHARACTERIZATION OF TRANSFORMED CELL LINES OBTAINED FROM PRIMARY RAT CORTICAL ASTROCYTES

2021

Brain cancers are complex and heterogeneous; most of them derive from glial cells[1], and are called gliomas, further subdivided into astrocytomas, oligodendrogliomas, ependymomas and glioastrocytomas[2]. The malignant cells undergo modifications of their metabolism and behaviour, and acquire the ability to migrate along the blood vessels in small groups (model of the guerrilla war)[3], thus invading the surrounding brain parenchyma. Most important, they have the capacity to affect the surrounding microenvironment, by altering both the extracellular matrix and the properties of the normal cells present in the brain, including glial-, endothelial-, and immune-cells, further promoting cancer …

Settore BIO/18 - Geneticaastrocyteepigenetic and chromosomal alterations.Settore BIO/10 - Biochimicaextracellular vesicleSettore BIO/06 - Anatomia Comparata E CitologiaBrain cancer
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An In Vitro Model of Glioma Development

2023

Gliomas are the prevalent forms of brain cancer and derive from glial cells. Among them, astrocytomas are the most frequent. Astrocytes are fundamental for most brain functions, as they contribute to neuronal metabolism and neurotransmission. When they acquire cancer properties, their functions are altered, and, in addition, they start invading the brain parenchyma. Thus, a better knowledge of transformed astrocyte molecular properties is essential. With this aim, we previously developed rat astrocyte clones with increasing cancer properties. In this study, we used proteomic analysis to compare the most transformed clone (A-FC6) with normal primary astrocytes. We found that 154 proteins are…

Settore BIO/18 - Geneticaepigenetic alterationSettore BIO/10 - Biochimicaastrocytomas; astrocyte cell lines; epigenetic alterations; chromosome alterations; proteomics; metalloproteinases; extracellular vesicles (EVs)Geneticschromosome alterationmetalloproteinaseextracellular vesicles (EVs)Settore BIO/06 - Anatomia Comparata E Citologiaastrocytomaastrocyte cell lineGenetics (clinical)proteomic
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Microscopic evidence of the primary astrocytes' morphological differentiation and migration inside porous Poly-L-lactic acid 3D‑scaffolds

2019

Tissue engineering is an emerging multidisciplinary field that aims at reproducing in vitro and/or in vivo tissues with morphological and functional features similar to the biological tissue of the human body [1]. In the attempt to construct suitable tissue models, a critical step is the setting of 3D scaffolds that mimic the supportive structures of a natural extracellular matrix microenvironment into which cells are normally embedded. In this context, the generation of 3D cultures of brain cells is of particular interest. For instance, the poly L‐lactic acid (PLLA) polymer is wildly used because of its biocompatible and biodegradable potential; the PLLA scaffold topography simulates the n…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore BIO/13 - Biologia ApplicataSettore BIO/10 - Biochimicaastrocytesnanomaterials in biology and medicineextracellular vesicles3D cultures
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CEND1 and NEUROGENIN2 Reprogram Mouse Astrocytes and Embryonic Fibroblasts to Induced Neural Precursors and Differentiated Neurons

2015

Summary Recent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogrammed into functional neurons through forced expression of neurogenic factors. Here we explored the effect of CEND1 and NEUROG2 on reprogramming of mouse cortical astrocytes and embryonic fibroblasts. Forced expression of CEND1, NEUROG2, or both resulted in acquisition of induced neuronal cells expressing subtype-specific markers, while long-term live-cell imaging highlighted the existence of two different modes of neuronal trans-differentiation. Of note, a subpopulation of CEND1 and NEUROG2 double-transduced astrocytes formed spheres exhibiting neural stem cell properties. mRNA and protein exp…

Somatic cellCellular differentiationNerve Tissue ProteinsEndogenyBiologyBiochemistryArticleMiceNeural Stem CellsBasic Helix-Loop-Helix Transcription FactorsGeneticsAnimalslcsh:QH301-705.5NeuronsGene knockdownMessenger RNAlcsh:R5-920Membrane ProteinsCell DifferentiationCell BiologyFibroblastsCellular ReprogrammingEmbryo MammalianEmbryonic stem cellNeural stem cellCell biologylcsh:Biology (General)Astrocytesembryonic structureslcsh:Medicine (General)ReprogrammingDevelopmental BiologyStem Cell Reports
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Streptomyces coelicolor secretoma protects astrocytes from oxidative stress

2016

Streptomycetes are gram-positive bacteria that produce about 2/3 of pharmaceutically active secondary metabolites, such as antibiotics, and anti-tumor, immunosuppressive, antifungal and antiparasitic agents. In this study, we investigated the possible effects of Streptomyces coelicolor extracts and putative vesicular fraction on primary cultures of rat astrocytes, in both physiological and stressed conditions, induced by treatment with hydrogen peroxide. Briefly, crude extracts and putative vesicular fractions were prepared from two S.coelicolor strains (M145 wild-type strain and bold F166 strain), and used to treat primary astrocytes, which were then also treated with hydrogen peroxide. Da…

Streptomyces coelicolor primary cultures of rat astrocytes utative vesicular fraction ROS productionSettore BIO/10 - BiochimicaSettore BIO/06 - Anatomia Comparata E CitologiaSettore BIO/19 - Microbiologia Generale
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Permeability properties of a three-cell type in vitro model of blood-brain barrier.

2005

We previously found that RBE4.B brain capillary endothelial cells (BCECs) form a layer with blood‐brain barrier (BBB) properties if co‐cultured with neurons for at least one week. As astrocytes are known to modulate BBB functions, we further set a culture system that included RBE4.B BCECs, neurons and astrocytes. In order to test formation of BBB, we measured the amount of (3)H‐sucrose able to cross the BCEC layer in this three‐cell type model of BBB. Herein we report that both neurons and astrocytes induce a decrease in the permeability of the BCEC layer to sucrose. These effects are synergic as if BCECs are cultured with both neurons and astrocytes for 5 days, permeability to sucrose decr…

SucroseCell typeTime FactorsBlotting WesternVascular permeabilityBiologyBlood–brain barrierOccludinArticleCapillary PermeabilityOccludinmedicineAnimalsRats WistarCell Line TransformedNeuronsBrainEndothelial CellsMembrane ProteinsCell BiologyPermeationblood-brain barrier cortical neurons astrocytes brain capillary endothelial cells RBE4.B occludin.Coculture TechniquesRatsmedicine.anatomical_structurenervous systemMembrane proteinBiochemistryBlood-Brain BarrierPermeability (electromagnetism)Astrocytescardiovascular systembiology.proteinBiophysicsMolecular MedicineAntibody
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Capture of extracellular zinc ions by astrocytes.

2006

Synaptic zinc ions released during synaptic transmission interact with pre- and postsynaptic neuroreceptors, thus modulating neurotransmission. It is likely that they have to be efficiently cleared from the extracellular milieu to assure subsequent synaptic events. Both neurons and glia are assumed to participate in this clearance by mechanisms that are not fully understood. In this study, electron microscopic zinc cytochemistry has shown zinc-electrondense particles associated with hippocampal astrocytic membranes frequently found accumulated in stacked lamellae. In cultured astrocytes, the use of zinc fluorochromes and endocytic markers allowed the simultaneous imaging of the capture of e…

SucroseEndosomeEndocytic cyclechemistry.chemical_elementZincEndosomesNeurotransmissionBiologyCellular and Molecular NeuroscienceGlial Fibrillary Acidic ProteinmedicineExtracellularAnimalsHomeostasisCells CulturedOrganellesDose-Response Relationship DrugImmunohistochemistryMicroscopy ElectronZincmedicine.anatomical_structureNeurologychemistryAstrocytesBiophysicsCytochemistryNeurogliaRabbitsExtracellular SpaceNeuroscienceAstrocyteGlia
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Cortical neurons selectively inhibit MHC class II induction in astrocytes but not in microglial cells.

1993

Astrocytes have been shown to act as potent accessory cells for MHC class II-restricted T cell responses in vitro after treatment with interferon-gamma. In contrast, even under conditions of severe central nervous system (CNS) inflammation, they seem to express little, if any, class II molecules in vivo. Thus the role of astroglial cells as accessory cells in immune responses in the CNS remains to be determined. We have studied neuron--glia interactions with respect to induction of MHC class II molecules. Surprisingly, in a co-culture system, viable neurons inhibited the induction of class II restriction elements on astrocytes. This effect was only observed when neurons had contact to astro…

T cellT-LymphocytesImmunologyAntigen presentationAntigen-Presenting CellsDown-RegulationLymphocyte ActivationMHC class ImedicineImmunology and AllergyAnimalsCells CulturedCerebral CortexNeuronsMHC class IIbiologyMicrogliaHistocompatibility Antigens Class IIGeneral MedicineCell biologyRatsmedicine.anatomical_structurenervous systemAstrocytesImmunologybiology.proteinNeurogliaNeuronNeurogliaAstrocyteInternational immunology
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Pigment epithelium-derived factor is a niche signal for neural stem cell renewal.

2006

Adult stem cells are characterized by self-renewal and multilineage differentiation, and these properties seem to be regulated by signals from adjacent differentiated cell types and by extracellular matrix molecules, which collectively define the stem cell "niche." Self-renewal is essential for the lifelong persistence of stem cells, but its regulation is poorly understood. In the mammalian brain, neurogenesis persists in two germinal areas, the subventricular zone (SVZ) and the hippocampus, where continuous postnatal neuronal production seems to be supported by neural stem cells (NSCs). Here we show that pigment epithelium-derived factor (PEDF) is secreted by components of the murine SVZ a…

TelencephalonCellular differentiationSubventricular zoneBiologyHippocampusMicePEDFEpendymaLateral VentriclesChlorocebus aethiopsmedicineAnimalsHumansNerve Growth FactorsEye ProteinsCells CulturedSerpinsCell ProliferationInjections IntraventricularNeuronsNeuronal PlasticityGeneral NeuroscienceStem CellsNeurogenesisCell CycleCell DifferentiationNeural stem cellmedicine.anatomical_structurenervous systemCOS CellsEndothelium VascularStem cellNeuroscienceCell DivisionAstrocyteAdult stem cellSignal TransductionNature neuroscience
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