Search results for "glial cell"

showing 10 items of 48 documents

Spatio-temporal expression of Prospero is finely tuned to allow the correct development and function of the nervous system in Drosophila melanogaster.

2007

0012-1606 (Print) Comparative Study Journal Article Research Support, Non-U.S. Gov't; Adaptive animal behaviors depend upon the precise development of the nervous system that underlies them. In Drosophila melanogaster, the pan-neural prospero gene (pros), is involved in various aspects of neurogenesis including cell cycle control, axonal outgrowth, neuronal and glial cell differentiation. As these results have been generally obtained with null pros mutants inducing embryonic lethality, the role of pros during later development remains poorly known. Using several pros-Voila (prosV) alleles, that induce multiple developmental and behavioral anomalies in the larva and in adult, we explored the…

Nervous systemDrosophila melanogaster/*embryologyTranscription Factors/genetics/*metabolismNervous SystemPolymerase Chain Reaction0302 clinical medicineMessenger/*metabolismAntenno-maxillary complexNervous System/*embryologyDrosophila ProteinsProtein IsoformsRegulation of gene expressionGenetics0303 health sciencesbiologyProtein Isoforms/genetics/metabolismNeurogenesisGene Expression Regulation DevelopmentalNuclear ProteinsDrosophila Proteins/genetics/*metabolismPhenotypehumanitiesmedicine.anatomical_structureDrosophila melanogasterPhenotypeDrosophilaDrosophila melanogastereducationContext (language use)ProsperoNerve Tissue ProteinsNerve Tissue Proteins/genetics/*metabolism03 medical and health sciencesNuclear Proteins/genetics/*metabolismmedicineIn Situ Nick-End LabelingAnimalsRNA MessengerMolecular Biology030304 developmental biologyDNA PrimersDevelopmental/*physiologyProsperoCell Biologybiology.organism_classificationGlial cell differentiationMitotic activityGlial cellGene Expression RegulationCentral nervous systemNeuronal cellsRNANeuroscience030217 neurology & neurosurgeryDevelopmental BiologyTranscription FactorsDevelopmental biology
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Glial precursors clear sensory neuron corpses during development via Jedi-1, an engulfment receptor

2009

During the development of peripheral ganglia, 50% of the neurons that are generated undergo apoptosis. How the massive numbers of corpses are removed is unknown. We found that satellite glial cell precursors are the primary phagocytic cells for apoptotic corpse removal in developing mouse dorsal root ganglia (DRG). Confocal and electron microscopic analysis revealed that glial precursors, rather than macrophages, were responsible for clearing most of the dead DRG neurons. Moreover, we identified Jedi-1, an engulfment receptor, and MEGF10, a purported engulfment receptor, as homologs of the invertebrate engulfment receptors Draper and CED-1 expressed in the glial precursor cells. Expression …

Nervous systemSensory Receptor CellsGreen Fluorescent ProteinsApoptosisMice TransgenicBiologyKidneyArticleMice03 medical and health sciences0302 clinical medicinePhagocytosisPregnancyGanglia SpinalNerve Growth FactormedicineAnimalsHumansCells Cultured030304 developmental biology0303 health sciencesSatellite glial cellStem CellsGeneral NeuroscienceNeurodegenerationGene Expression Regulation DevelopmentalMembrane ProteinsFibroblastsmedicine.diseaseOligodendrocyteSensory neuronmedicine.anatomical_structurenervous systemNeurogliaFemaleNeuronNeurogliaNeuroscience030217 neurology & neurosurgeryAstrocyteNature Neuroscience
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Netrins guide migration of distinct glial cells in the Drosophila embryo

2010

Development of the nervous system and establishment of complex neuronal networks require the concerted activity of different signalling events and guidance cues, which include Netrins and their receptors. In Drosophila, two Netrins are expressed during embryogenesis by cells of the ventral midline and serve as attractant or repellent cues for navigating axons. We asked whether glial cells, which are also motile, are guided by similar cues to axons, and analysed the influence of Netrins and their receptors on glial cell migration during embryonic development. We show that in Netrin mutants, two distinct populations of glial cells are affected: longitudinal glia (LG) fail to migrate medially …

Nervous systemanimal structuresCentral nervous systemBiologyNeuroblastCell MovementPrecursor cellGlial cell migrationNetrinmedicineAnimalsNerve Growth FactorsMolecular BiologyTumor Suppressor ProteinsfungiNeurogenesisCell PolarityExonsAnatomyNetrin-1ImmunohistochemistryEmbryonic stem cellCell biologyPhenotypemedicine.anatomical_structurenervous systemMutationDrosophilaCuesNeurogliaSignal TransductionDevelopmental BiologyDevelopment
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Analysis of the RET, GDNF, EDN3, and EDNRB genes in patients with intestinal neuronal dysplasia and Hirschsprung disease

2001

BACKGROUNDHirschsprung disease (HSCR) is a frequent congenital disorder with an incidence of 1 in 5000 live births, characterised by the absence of parasympathetic intramural ganglion cells in the hindgut resulting in intestinal obstruction in neonates and severe constipation in infants and adults. Intestinal neuronal dysplasia (IND) shares clinical features with HSCR but the submucosal parasympathetic plexus is affected. IND has been proposed as one of the most frequent causes of chronic constipation and is often associated with HSCR.METHODSWe examined 29 patients diagnosed with sporadic HSCR, 20 patients with IND, and 12 patients with mixed HSCR/IND for mutations in the coding regions of …

Pathologymedicine.medical_specialtyGlial Cell Line-Derived Neurotrophic Factor ReceptorsHirschsprung diseaseMUTATION ANALYSISNerve Tissue ProteinsTYROSINE KINASEEDNRBArticleExonGermline mutationProto-Oncogene ProteinsNEUROTROPHIC FACTOR GDNFmedicineGlial cell line-derived neurotrophic factorDrosophila ProteinsHumansGlial Cell Line-Derived Neurotrophic FactorNerve Growth FactorsAlleleintestinal neuronal dysplasiaAllelesPolymorphism Single-Stranded ConformationalIntestinal neuronal dysplasiabiologyReceptors EndothelinSHAH-WAARDENBURG SYNDROMEProto-Oncogene Proteins c-retENDOTHELIN-B-RECEPTORMULTIGENIC INHERITANCEGastroenterologyReceptor Protein-Tyrosine KinasesSequence Analysis DNAGERMLINE MUTATIONSbiochemical phenomena metabolism and nutritionPROTOONCOGENEmedicine.diseasePHENOTYPIC-EXPRESSIONGDNFPedigreeProto-Oncogene Proteins c-retDysplasiaCase-Control StudiesMutationbiology.proteinLIGANDRETCongenital disorderEDN3
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Nicotinic receptors and neurotrophic factors

2000

PharmacologybiologyNicotinic ReceptorsChemistryTropomyosin receptor kinase BCiliary neurotrophic factorCell biologyPsychiatry and Mental healthNeurologyNeurotrophic factorsbiology.proteinGlial cell line-derived neurotrophic factorPharmacology (medical)Neurology (clinical)Biological PsychiatryEuropean Neuropsychopharmacology
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Expression profiling of glial genes during Drosophila embryogenesis

2006

AbstractIn the central nervous system of Drosophila, the induction of the glial cell fate is dependent on the transcription factor glial cells missing (gcm). Though a considerable number of other genes have been shown to be expressed in all or in subsets of glial cells, the course of glial cell differentiation and subtype specification is only poorly understood. This prompted us to design a whole genome microarray approach comparing gcm gain-of-function and, for the first time, gcm loss-of-function genetics to wildtype in time course experiments along embryogenesis. The microarray data were analyzed with special emphasis on the temporal profile of differential regulation. A comparison of bo…

Quality ControlCell typeMicroarraysGenes InsectCell fate determinationBiologygcmGlial developmentAnimalsDrosophila ProteinsGeneMolecular BiologyOligonucleotide Array Sequence AnalysisGeneticsDrosophila embryogenesisMicroarray analysis techniquesGene Expression ProfilingDrosophila embryogenesisGene Expression Regulation DevelopmentalCell BiologyCell biologyGene expression profilingDNA-Binding ProteinsGlial cell differentiationDrosophilaDNA microarrayNeurogliaGlial genesTranscription FactorsDevelopmental BiologyDevelopmental Biology
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Retinal neurodegenerative changes in the adult insulin receptor substrate-2 deficient mouse.

2014

Abstract Insulin receptor substrate-2 (Irs2) mediates peripheral insulin action and is essential for retinal health. Previous investigations have reported severe photoreceptor degeneration and abnormal visual function in Irs2-deficient mice. However, molecular changes in the Irs2 − / −  mouse retina have not been described. In this study, we examined retinal degenerative changes in neuronal and glial cells of adult (9- and 12-week old) Irs2 − / −  mice by immunohistochemistry. 9-week old Irs2 − / −  mice showed significant thinning of outer retinal layers, concomitant to Muller and microglial cell activation. Photoreceptor cells displayed different signs of degeneration, such as outer/inner…

Retinal degenerationRetinal Ganglion CellsRetinal Bipolar Cellsgenetic structuresOuter plexiform layerBiologyRetinal ganglionCellular and Molecular Neurosciencechemistry.chemical_compoundMicemedicineElectroretinographyAnimalsVision OcularRetinaMicroscopy Confocalmedicine.diagnostic_testRetinal DegenerationRetinalmedicine.diseaseInner plexiform layerImmunohistochemistrySensory SystemsCell biologyMice Inbred C57BLOphthalmologyMicroglial cell activationDisease Models Animalmedicine.anatomical_structurechemistryInsulin Receptor Substrate Proteinssense organsNeuroscienceElectroretinographyPhotoreceptor Cells VertebrateExperimental eye research
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Plasmalogen metabolism in retinal glial cells : interaction between cells during normal or pathological vascular development

2017

Retinal vascular disorders such as retinopathy of prematurity (ROP), diabetic retinopathy or age-related macular degeneration represent the first cause of vision loss at all ages in industrialized countries. Many epidemiological or animal studies have shown the involvement of polyunsaturated fatty acids (PUFA) in the regulation of vascular development and more specifically the beneficial properties of omega 3 PUFA (n-3 PUFA) against pathological vascularization. Those PUFA are esterified on glycerophospholipids (GP). GP are the primary constituents of the lipid bilayer of cell membranes. PUFA can be also esterified on a specific class of GP, called plasmalogens. Plasmalogens are characteriz…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesRétine[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyRetinaRetinopathy of prematurityPlasmalogenPlasmalogenesGlial cellsAcides gras polyinsaturésCellules gliales[SDV.MHEP.OS]Life Sciences [q-bio]/Human health and pathology/Sensory Organs[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyPUFARétinopathie du prématuré
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Notch and Numb are required for normal migration of peripheral glia in Drosophila

2006

Abstract A prominent feature of glial cells is their ability to migrate along axons to finally wrap and insulate them. In the embryonic Drosophila PNS, most glial cells are born in the CNS and have to migrate to reach their final destinations. To understand how migration of the peripheral glia is regulated, we have conducted a genetic screen looking for mutants that disrupt the normal glial pattern. Here we present an analysis of two of these mutants: Notch and numb. Complete loss of Notch function leads to an increase in the number of glial cells. Embryos hemizygous for the weak NotchB-8X allele display an irregular migration phenotype and mutant glial cells show an increased formation of …

animal structuresMutantNotch signaling pathwayBiologyCell MovementGlial cell migrationAnimalsDrosophila ProteinsMolecular BiologyGeneticsReceptors NotchCell migrationCell BiologyImmunohistochemistryEmbryonic stem cellPhenotypeCell biologyJuvenile Hormonesnervous systemMutagenesisNUMBDrosophilaNeurogliaSignal TransductionGenetic screenDevelopmental BiologyDevelopmental Biology
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Mildronate as a Regulator of Protein Expression in a Rat Model of Parkinson’s Disease

2011

Background. Mildronate (3-[2,2,2-trimethylhydrazinium] propionate dihydrate) traditionally is a well-known cardioprotective drug. However, our recent studies convincingly demonstrated its neuroprotective properties. The aim of the present study was to evaluate the influence of mildronate on the expression of proteins that are involved in the differentiation and survival of the nigrostriatal dopaminergic neurons in the rat model of Parkinson’s disease (PD). The following biomarkers were used: heat shock protein 70 (Hsp70, a molecular chaperone), glial cell line-derived nerve growth factor (GDNF, a growth factor promoting neuronal differentiation, regeneration, and survival), and neural cell …

biologybusiness.industryGrowth factormedicine.medical_treatmentSubstantia nigraGeneral MedicineStriatumPharmacologyNeuroprotectionHsp70Nerve growth factornervous systemmedicineGlial cell line-derived neurotrophic factorbiology.proteinmildronate; protein expression; neuroprotectionNeural cell adhesion moleculebusinessMedicina
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