Search results for "glia"

showing 10 items of 1274 documents

Neuroprotective potential of antihyperglycemic drug metformin in streptozocin-induced rat model of sporadic Alzheimer's disease.

2020

Abstract The earliest hallmarks of sporadic Alzheimer's disease (sAD) are impaired glucose metabolism, chronic neuroinflammation, diminished synaptic plasticity and subsequent cognitive decline. The safest antidiabetic drug metformin has shown both glucose metabolism-improving and cognition-enhancing action in type 2 diabetes patients and diabetic model animals. However, metformin has not been previously studied in intracerebroventricular streptozocin (STZ)-induced model of sAD. Therefore, our aim was to assess the preventive action of metformin in sAD model-rats. Firstly, the actions of metformin (75 and 100 mg/kg) on cognitive functions and sociability were examined. Secondly, we wanted t…

0301 basic medicineMaleendocrine system diseasesNerve Tissue ProteinsType 2 diabetesPharmacologyGPI-Linked ProteinsNeuroprotectionStreptozocin03 medical and health sciencesGlycogen Synthase Kinase 30302 clinical medicineCognitionAlzheimer DiseaseMorris Water Maze TestMedicineAnimalsHypoglycemic AgentsCognitive declineRats WistarSocial BehaviorNeuroinflammationInjections IntraventricularPharmacologyGlucose Transporter Type 1Behavior AnimalGlucose Transporter Type 3business.industrydigestive oral and skin physiologyGlucose transporternutritional and metabolic diseasesBrainmedicine.diseaseMetforminMetforminAstrogliosisDisease Models Animal030104 developmental biologyGlucoseNeuroprotective AgentsSynaptic plasticityAcetylcholinesterasebusinessNeuroglia030217 neurology & neurosurgerymedicine.drugEuropean journal of pharmacology
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GABA-containing compound gammapyrone protects against brain impairments in Alzheimer's disease model male rats and prevents mitochondrial dysfunction…

2018

Neuroinflammation, oxidative stress, decreased glucose/energy metabolism, and disrupted neurotransmission are changes that occur early in sporadic Alzheimer's disease (AD), manifesting as mild cognitive impairment. Recently, the imbalanced function of the gamma-aminobutyric acid (GABA) system was identified as a critical factor in AD progression. Thus, maintaining balance among neurotransmitter systems, particularly the GABA system, can be considered a beneficial strategy to slow AD progression. The present study investigated the effects of the compound gammapyrone, a molecule containing three GABA moieties: "free" moiety attached to the position 4 of the 1,4-dihydropyridine (DHP) ring, and…

0301 basic medicineMalemedicine.medical_specialtyAllosteric regulationbioenergetics; GABA; intracerebroventricular streptozocin; PC12 cells; protein expression; spatial learning/memoryNeurotransmissionspatial learning/memorymedicine.disease_causebioenergeticsNeuroprotection03 medical and health sciencesCellular and Molecular NeuroscienceGABA0302 clinical medicineReceptors GABAAlzheimer DiseaseMemoryInternal medicinemedicineAnimalsRats WistarReceptorMaze Learningprotein expressionNeuroinflammationCells Culturedgamma-Aminobutyric AcidGABAA receptorChemistryGlutamate DecarboxylasePC12 cellsBrainintracerebroventricular streptozocinMitochondriaStreptozocinDisease Models Animal030104 developmental biologyEndocrinologyNeuroprotective AgentsAstrocytesAcetylcholinesteraseEncephalitisMicroglia030217 neurology & neurosurgeryOxidative stressJournal of neuroscience research
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Glucagon-like peptide-2 reduces the obesity-associated inflammation in the brain.

2018

Growing evidence suggests a link between obesity and neurodegeneration. The purpose of the present study was to explore the neuroprotective potential of glucagon-like peptide-2 (GLP-2) in the brain of high fat diet (HFD)-fed mice. Markers of inflammation and oxidative stress were analysed in the brains of obese mice chronically treated with [Gly2]-GLP-2 (teduglutide), the stable analogue of the GLP-2, and they were compared to age-matched untreated obese and lean animals. Neurodegeneration was examined by TUNEL assay. HFD feeding increased the expression of pro-inflammatory mediators (NF-kB, IL-8, TNF-α, IL-1β and IL-6), glial fibrillary acidic protein (GFAP), index of gliosis and neurodege…

0301 basic medicineMalemedicine.medical_specialtyInflammationmedicine.disease_causeDiet High-FatSettore BIO/09 - FisiologiaNeuroprotectionlcsh:RC321-57103 medical and health sciences0302 clinical medicineNeuroinflammationInternal medicinemedicineGlucagon-Like Peptide 2AnimalsObesityNeurodegenerationlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryNeuroinflammationTUNEL assayGlial fibrillary acidic proteinbiologyChemistryNeurodegenerationdigestive oral and skin physiologyBrainmedicine.diseaseMice Inbred C57BL030104 developmental biologyEndocrinologyNeuroprotective AgentsNeurologyGliosisOxidative stressAstrocytesbiology.proteinGlucagon-Like Peptide-2 ReceptorOxidative streEncephalitismedicine.symptomInflammation MediatorsGLP-2030217 neurology & neurosurgeryOxidative stresshormones hormone substitutes and hormone antagonistsNeurobiology of disease
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Proinflammatory and amyloidogenic S100A9 induced by traumatic brain injury in mouse model.

2019

Traumatic brain injury (TBI) represents a significant risk factor for development of neurodegenerative diseases such as Alzheimer’s and Parkinson’s. The S100A9-driven amyloid-neuroinflammatory cascade occurring during primary and secondary TBI events can serve as a mechanistic link between TBI and Alzheimer’s as demonstrated recently in the human brain tissues. Here by using immunohistochemistry in the controlled cortical impact TBI mouse model we have found pro-inflammatory S100A9 in the brain tissues of all mice on the first and third post-TBI days, while 70% of mice did not show any S100A9 presence on seventh post-TBI day similar to controls. This indicates that defensive mechanisms effe…

0301 basic medicineMalemedicine.medical_specialtyNeurologyAmyloidTraumatic brain injuryPlaque AmyloidProtein Aggregation PathologicalS100A9Proinflammatory cytokine03 medical and health sciencesMice0302 clinical medicineBrain Injuries TraumaticmedicineAnimalsCalgranulin BSignificant riskNeuroinflammationNeuronsbusiness.industryGeneral NeuroscienceBrainmedicine.diseasenervous system diseasesDisease Models Animal030104 developmental biologyMicrogliabusinessAlzheimer’s disease Amyloid Neuroinflammation Oligomerization S100A9 Traumatic brain injuryNeuroscience030217 neurology & neurosurgeryNeuroscience letters
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Aromatic and proteomic analyses corroborate the distinction between Mediterranean landraces and modern varieties of durum wheat

2016

AbstractIn this paper volatile organic compounds (VOCs) from durum wheat cultivars and landraces were analyzed using PTR-TOF-MS. The aim was to characterize the VOC’s profile of the wholemeal flour and of the kernel to find out if any VOCs were specific to varieties and sample matrices. The VOC data is accompanied by SDS-PAGE analyses of the storage proteins (gliadins and glutenins). Statistical analyses was carried out both on the signals obtained by MS and on the protein profiles. The difference between the VOC profile of two cultivars or two preparations of the same sample - matrices, in this case kernel vs wholemeal flour - can be very subtle; the high resolution of PTR-TOF-MS - down to…

0301 basic medicineMediterranean climateVOLATILE COMPOUNDSPTR-TOF-MS; VOLATILE COMPOUNDS; GLUTEN STRENGTH; RAPID CHARACTERIZATION; PROTEIN-COMPOSITION; EXTRUSION-COOKING; QUALITY; CULTIVARS; FLOUR; SUBUNITS02 engineering and technologyPROTEIN-COMPOSITIONGliadinFLOURSettore BIO/04 - Fisiologia VegetaleCultivarFood scienceTriticumMathematicschemistry.chemical_classificationPrincipal Component AnalysisMultidisciplinarybiologyvolatile organic compounds; protein composition; gluten strength; quality; cultivars021001 nanoscience & nanotechnologyWholemeal flourBiological EvolutionSUBUNITSCULTIVARSSettore AGR/02 - Agronomia E Coltivazioni ErbaceeItalyPlant proteinSeedsPrincipal component analysis0210 nano-technologyGLUTEN STRENGTHRAPID CHARACTERIZATIONGlutensArticle03 medical and health sciencesfoodBotanyQUALITYStorage proteinPlant breedingVolatile Organic CompoundsEXTRUSION-COOKINGDurum wheat Volatile Organic Compounds VOC profilefood.foodPlant Breeding030104 developmental biologychemistrySpectrometry Mass Matrix-Assisted Laser Desorption-Ionizationbiology.proteinPTR-TOF-MSGliadinScientific Reports
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2018

In mammalian species, including humans, the hippocampal dentate gyrus (DG) is a primary region of adult neurogenesis. Aberrant adult hippocampal neurogenesis is associated with neurological pathologies. Understanding the cellular mechanisms controlling adult hippocampal neurogenesis is expected to open new therapeutic strategies for mental disorders. Microglia is intimately associated with neural progenitor cells in the hippocampal DG and has been implicated, under varying experimental conditions, in the control of the proliferation, differentiation and survival of neural precursor cells. But the underlying mechanisms remain poorly defined. Using fluorescent in situ hybridization we show th…

0301 basic medicineMicrogliaDentate gyrusNeurogenesisHippocampusHippocampal formationBiologyNeural stem cellSubgranular zone03 medical and health sciencesCellular and Molecular Neuroscience030104 developmental biology0302 clinical medicinemedicine.anatomical_structuremedicineNeuronNeuroscience030217 neurology & neurosurgeryFrontiers in Cellular Neuroscience
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Myelin changes in Alexander disease

2018

Introduction: Alexander disease (AxD) is a type of leukodystrophy. Its pathological basis, along with myelin loss, is the appearance of Rosenthal bodies, which are cytoplasmic inclusions in astrocytes. Mutations in the gene coding for glial fibrillary acidic protein (GFAP) have been identified as a genetic basis for AxD. However, the mechanism by which these variants produce the disease is not understood. Development: The most widespread hypothesis is that AxD develops when a gain-of-function mutation causes an increase in GFAP. However, this mechanism does not explain myelin loss, given that experimental models in which GFAP expression is normal or mutated do not exhibit myelin disorders. …

0301 basic medicineMutationGlial fibrillary acidic proteinbiologyMechanism (biology)Cytoplasmic inclusionLeukodystrophymedicine.diseasemedicine.disease_causelcsh:RC346-429Alexander diseaseCell biology03 medical and health sciencesMyelin030104 developmental biology0302 clinical medicinemedicine.anatomical_structurenervous systembiology.proteinmedicineEpigeneticslcsh:Neurology. Diseases of the nervous system030217 neurology & neurosurgeryNeurología (English Edition)
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Two different pathogenic mechanisms, dying-back axonal neuropathy and pancreatic senescence, are present in the YG8R mouse model of Friedreich ataxia

2016

Frataxin (FXN) deficiency causes Friedreich's ataxia (FRDA), a multisystem disorder with neurological and non-neurological symptoms. FRDA pathophysiology combines developmental and degenerative processes of dorsal root ganglia (DRG), sensory nerves, dorsal columns and other central nervous structures. A dying-back mechanism has been proposed to explain the peripheral neuropathy and neuropathology. In addition, affected individuals have non-neuronal symptoms such as diabetes mellitus or glucose intolerance. To go further in the understanding of the pathogenic mechanisms of neuropathy and diabetes associated with the disease, we have investigated the humanized mouse YG8R model of FRDA. By bio…

0301 basic medicineNervous systemAgingPathologylcsh:MedicineMedicine (miscellaneous)Mice0302 clinical medicineImmunology and Microbiology (miscellaneous)Ganglia SpinalInsulin-Secreting CellsInsulin SecretionInsulinMuscle spindleDorsal root gangliaCellular SenescenceDiabetisbiologyMusclesDiabetesAnatomyMitochondria3. Good healthmedicine.anatomical_structureSistema nerviós simpàticDying-back neuropathyPeripheral nervous systemCell senescencemedicine.symptomOxidation-Reductionlcsh:RB1-214Research ArticleSenescencemedicine.medical_specialtyAtaxiaNeuroscience (miscellaneous)Friedreich’s ataxiaNeuropathologyGeneral Biochemistry Genetics and Molecular BiologyPàncreesMalalties del sistema nerviós03 medical and health sciencesPeripheral Nervous Systemlcsh:PathologymedicineAnimalsHumansPancreasIslet of Langerhanslcsh:R302Friedreich's ataxiaNervous system Diseasesmedicine.diseaseAxonsMice Inbred C57BLDisease Models Animal030104 developmental biologyPeripheral neuropathyFriedreich AtaxiaSympathetic nervous systemMutationHumanized mouseFrataxinbiology.proteinEnergy Metabolism030217 neurology & neurosurgeryDisease Models & Mechanisms
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Cell-to-Cell Communication in Learning and Memory: From Neuro- and Glio-Transmission to Information Exchange Mediated by Extracellular Vesicles

2019

Most aspects of nervous system development and function rely on the continuous crosstalk between neurons and the variegated universe of non-neuronal cells surrounding them. The most extraordinary property of this cellular community is its ability to undergo adaptive modifications in response to environmental cues originating from inside or outside the body. Such ability, known as neuronal plasticity, allows long-lasting modifications of the strength, composition and efficacy of the connections between neurons, which constitutes the biochemical base for learning and memory. Nerve cells communicate with each other through both wiring (synaptic) and volume transmission of signals. It is by now…

0301 basic medicineNervous systemCell CommunicationReviewSynaptic Transmissiontetrapartite synapseRegulatory moleculesmemorylcsh:Chemistry0302 clinical medicineCell to cell communicationSettore BIO/10 - BiochimicaSettore BIO/06 - Anatomia Comparata E Citologialcsh:QH301-705.5SpectroscopyNeuronsDrug CarriersNeuronal PlasticitylearningBrainGeneral Medicineglial cellsComputer Science ApplicationsCrosstalk (biology)medicine.anatomical_structureNerve cellsextracellular vesiclesNeurogliavolume transmissionBiologytripartite synapsisExtracellular vesiclesCatalysisInorganic Chemistry03 medical and health sciencesNeuroplasticitymedicineAnimalsHumansPhysical and Theoretical ChemistryMolecular BiologyMemory Disorderssynaptic plasticityOrganic Chemistryglial cellwiring transmissionBiological Transport030104 developmental biologylcsh:Biology (General)lcsh:QD1-999nervous systemAstrocytesSynapsesSynaptic plasticitytripartite synapsiextracellular vesiclesynaptic plasticity.NeuroscienceBiomarkers030217 neurology & neurosurgeryInternational Journal of Molecular Sciences
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Septin/anillin filaments scaffold central nervous system myelin to accelerate nerve conduction

2016

Myelination of axons facilitates rapid impulse propagation in the nervous system. The axon/myelin-unit becomes impaired in myelin-related disorders and upon normal aging. However, the molecular cause of many pathological features, including the frequently observed myelin outfoldings, remained unknown. Using label-free quantitative proteomics, we find that the presence of myelin outfoldings correlates with a loss of cytoskeletal septins in myelin. Regulated by phosphatidylinositol-(4,5)-bisphosphate (PI(4,5)P2)-levels, myelin septins (SEPT2/SEPT4/SEPT7/SEPT8) and the PI(4,5)P2-adaptor anillin form previously unrecognized filaments that extend longitudinally along myelinated axons. By confoca…

0301 basic medicineNervous systemCentral Nervous SystemProteomicsScaffoldMouseProteomeNeural ConductionSeptinNerve Fibers MyelinatedMyelinGene Knockout TechniquesMiceContractile ProteinsAxonBiology (General)CytoskeletonMicroscopy ImmunoelectronCytoskeletonMyelin SheathMicroscopy ConfocalGeneral NeuroscienceQRGeneral MedicineAnatomyCell biologyglial cellsmedicine.anatomical_structureGene TargetingMedicineResearch ArticleQH301-705.5ScienceCentral nervous systemmyelinated axonsmacromolecular substancesBiologyGeneral Biochemistry Genetics and Molecular Biologymyelin structure03 medical and health sciencesSeptin/anillin filaments; central nervous system; myelinlabel-free proteomicsmedicineAnimalsneuropathologyGeneral Immunology and Microbiology030104 developmental biologynervous systemseptin cytoskeletonProtein MultimerizationSeptinsSeptin cytoskeletonNeuroscienceeLife
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