Search results for "nervous system"

showing 10 items of 3271 documents

Oligodendrocytes Support Neuronal Glutamatergic Transmission via Expression of Glutamine Synthetase.

2019

Summary: Glutamate has been implicated in a wide range of brain pathologies and is thought to be metabolized via the astrocyte-specific enzyme glutamine synthetase (GS). We show here that oligodendrocytes, the myelinating glia of the central nervous system, also express high levels of GS in caudal regions like the midbrain and the spinal cord. Selective removal of oligodendrocyte GS in mice led to reduced brain glutamate and glutamine levels and impaired glutamatergic synaptic transmission without disrupting myelination. Furthermore, animals lacking oligodendrocyte GS displayed deficits in cocaine-induced locomotor sensitization, a behavior that is dependent on glutamatergic signaling in th…

0301 basic medicineGlutamineCentral nervous systemNeurotransmissionBiologyGeneral Biochemistry Genetics and Molecular BiologyArticleMidbrain03 medical and health sciencesGlutamatergic0302 clinical medicineGlutamate-Ammonia LigaseGlutamine synthetasemedicineAnimalslcsh:QH301-705.5Glutamate receptorBrainOligodendrocyteCell biologyGlutamineOligodendroglia030104 developmental biologymedicine.anatomical_structurenervous systemlcsh:Biology (General)030217 neurology & neurosurgerySignal TransductionCell reports
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2016

Cytoglobin (Cygb) is a vertebrate globin with so far poorly defined function. It is expressed in the fibroblast cell-lineage but has also been found in neurons. Here we provide, using immunohistochemistry, a detailed study on the distribution of Cygb in the mouse brain. While Cygb is a cytoplasmic protein in active cells of the supportive tissue, in neurons it is located in the cytoplasm and the nucleus. We found the expression of Cygb in all brain regions, although only a fraction of the neurons was Cygb-positive. Signals were of different intensity ranging from faint to very intense. Telencephalic neurons in all laminae of the cerebral cortex, in the olfactory bulb (in particular periglom…

0301 basic medicineHabenular nucleiNeuroscience (miscellaneous)Ventral anterior nucleusStriatumBiologyOlfactory bulbVentral pallidum03 medical and health sciencesCellular and Molecular Neuroscience030104 developmental biologymedicine.anatomical_structurenervous systemBasal gangliamedicineEpithalamusAnatomyNeuroscienceNucleusFrontiers in Neuroanatomy
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Role of nitric oxide pathway in the conditioned rewarding effects of MDMA in mice.

2017

It is estimated that 2.1 million young adults used MDMA/Ecstasy in the last year in Europe. Vulnerable subjects can develop dependence after MDMA abuse but currently there does not exist an effective treatment for this disorder. The nitric oxide (NO) pathway seems to have an important role on the rewarding effects of different drugs and has been proposed as a new pharmacological treatment for psychostimulant addiction. In the present study, we intend to evaluate whether the blockade of the NO synthesis (NOS) interferes with the rewarding effects of MDMA in the conditioned preference place (CPP) paradigm in young adult male mice. Our results indicated that mice treated with 7-nitroindazole (…

0301 basic medicineHallucinogenMaleMDMA7-NitroindazoleIndazolesmedia_common.quotation_subjectN-Methyl-34-methylenedioxyamphetamineEcstasyConditioning ClassicalEnsayos clínicosPharmacologyNitric OxideNitric oxide03 medical and health sciencesBehavioral Neurosciencechemistry.chemical_compoundMice0302 clinical medicineRewardmental disordersConditioning PsychologicalmedicineAnimalsDrogasmedia_commonbiologyAddictionMDMABlockadeNitric oxide synthaseEfectos fisiológicos030104 developmental biologychemistrybiology.proteinHallucinogensConditioning OperantCentral Nervous System StimulantsNitric Oxide SynthasePsychologyEstupefacientepsychological phenomena and processes030217 neurology & neurosurgerymedicine.drugBehavioural brain research
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Oxidative Stress-Induced Axon Fragmentation Is a Consequence of Reduced Axonal Transport in Hereditary Spastic Paraplegia SPAST Patient Neurons

2020

Hereditary spastic paraplegia (HSP) is a group of inherited disorders characterized by progressive spasticity and paralysis of the lower limbs. Autosomal dominant mutations in SPAST gene account for ∼40% of adult-onset patients. We have previously shown that SPAST patient cells have reduced organelle transport and are therefore more sensitive to oxidative stress. To test whether these effects are present in neuronal cells, we first generated 11 induced pluripotent stem (iPS) cell lines from fibroblasts of three healthy controls and three HSP patients with different SPAST mutations. These cells were differentiated into FOXG1-positive forebrain neurons and then evaluated for multiple aspects …

0301 basic medicineHereditary spastic paraplegiaOxidative phosphorylationSpastinmedicine.disease_causelcsh:RC321-57103 medical and health sciences0302 clinical medicinemedicineSPASTAxonFragmentation (cell biology)hereditary spastic paraplegialcsh:Neurosciences. Biological psychiatry. NeuropsychiatryGeneral Neuroscienceperoxisomesaxon transportmedicine.diseaseepothilone Daxon degenerationCell biology030104 developmental biologymedicine.anatomical_structurenervous systemForebrainAxoplasmic transport030217 neurology & neurosurgeryOxidative stressFrontiers in Neuroscience
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Neonatal hyperinsulinemic hypoglycemia: case report of kabuki syndrome due to a novel KMT2D splicing-site mutation

2020

Abstract Background Persistent neonatal hypoglycemia, owing to the possibility of severe neurodevelopmental consequences, is a leading cause of neonatal care admission. Hyperinsulinemic hypoglycemia is often resistant to dextrose infusion and needs rapid diagnosis and treatment. Several congenital conditions, from single gene defects to genetic syndromes should be considered in the diagnostic approach. Kabuki syndrome type 1 (MIM# 147920) and Kabuki syndrome type 2 (MIM# 300867), can be associated with neonatal hyperinsulinemic hypoglycemia. Patient presentation We report a female Italian (Sicilian) child, born preterm at 35 weeks gestation, with persistent hypoglycemia. Peculiar facial dys…

0301 basic medicineHeterozygotePediatricsmedicine.medical_specialtyFacial dysmorphismNeonatal hypotoniaCase ReportHypoglycemiamedicine.disease_causeDiagnosis DifferentialNervous system malformation03 medical and health sciences0302 clinical medicineHyperinsulinismmedicineHumansAbnormalities MultipleHyperinsulinemic hypoglycemiaPathologicalbusiness.industryNeonatal hypoglycemiaInfant Newbornlcsh:RJ1-570lcsh:Pediatricsmedicine.diseaseHematologic DiseasesNeoplasm ProteinsDNA-Binding ProteinsPhenotype030104 developmental biologyNeonatal hypotoniaItalyVestibular DiseasesFaceMutationGestationFemalebusinessHyperinsulinismKabuki syndromeInfant PrematureNeonatal hypoglycemia030217 neurology & neurosurgeryItalian Journal of Pediatrics
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2019

Abstract Background Comprehensive transcriptomic analyses have shown that colorectal cancer (CRC) is heterogeneous and have led to the definition of molecular subtypes among which the stem-cell, mesenchymal-like group is associated with poor prognosis. The molecular pathways orchestrating the emergence of this subtype are incompletely understood. In line with the contribution of the cellular prion protein PrPC to stemness, we hypothesize that deregulation of this protein could lead to a stem-cell, mesenchymal-like phenotype in CRC. Methods We assessed the distribution of the PrPC-encoding PRNP mRNA in two large CRC cohorts according to molecular classification and its association with patie…

0301 basic medicineHippo signaling pathwayColorectal canceranimal diseasesMesenchymal stem cellCancerGeneral MedicineBiologymedicine.diseasePhenotypeGeneral Biochemistry Genetics and Molecular Biologynervous system diseases3. Good healthPRNPTranscriptome03 medical and health sciences030104 developmental biology0302 clinical medicine030220 oncology & carcinogenesismental disordersCancer researchmedicineGeneEBioMedicine
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The neurochaperonopathies: Anomalies of the chaperone system with pathogenic effects in neurodegenerative and neuromuscular disorders

2021

The chaperone (or chaperoning) system (CS) constitutes molecular chaperones, co-chaperones, and chaperone co-factors, interactors and receptors, and its canonical role is protein quality control. A malfunction of the CS may cause diseases, known as the chaperonopathies. These are caused by qualitatively and/or quantitatively abnormal molecular chaperones. Since the CS is ubiquitous, chaperonopathies are systemic, affecting various tissues and organs, playing an etiologic-pathogenic role in diverse conditions. In this review, we focus on chaperonopathies involved in the pathogenic mechanisms of diseases of the central and peripheral nervous systems: the neurochaperonopathies (NCPs). Genetic …

0301 basic medicineHspsDiseasechaperonopathieslcsh:Technologylcsh:Chemistry03 medical and health sciences0302 clinical medicineneurochaperonopathieschaperone systemchaperonotherapy.medicineGeneral Materials ScienceReceptorInstrumentationGenelcsh:QH301-705.5Fluid Flow and Transfer Processesbiologylcsh:TSettore BIO/16 - Anatomia UmanaProcess Chemistry and TechnologyNeurodegenerationmolecular chaperonesnervous systemGeneral Engineeringmedicine.diseaseHsp90lcsh:QC1-999Computer Science ApplicationsCell biologyPatient management030104 developmental biologylcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040Chaperone (protein)biology.proteinChaperone system ChaperonopathiesChaperonotherapy Hsps Molecular chaperones Nervous system Neurochaperonopathies Neurodegeneration neuromuscular disorderHSP60lcsh:Engineering (General). Civil engineering (General)030217 neurology & neurosurgerylcsh:Physics
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TLR4 participates in the transmission of ethanol-induced neuroinflammation via astrocyte-derived extracellular vesicles

2019

Background Current evidence indicates that extracellular vesicles (EVs) participate in intercellular signaling, and in the regulation and amplification of neuroinflammation. We have previously shown that ethanol activates glial cells through Toll-like receptor 4 (TLR4) by triggering neuroinflammation. Here, we evaluate if ethanol and the TLR4 response change the release and inflammatory content of astrocyte-derived EVs, and whether these vesicles are capable of communicating with neurons by spreading neuroinflammation. Methods Cortical neurons and astrocytes in culture were used. EVs were isolated from the extracellular medium of the primary culture of the WT and TLR4-KO astrocytes treated …

0301 basic medicineImmunologyInflammationlcsh:RC346-42903 medical and health sciencesCellular and Molecular NeuroscienceMice0302 clinical medicineWestern blotNeuroinflammationGlial cellsExtracellularmedicineAnimalsProtein Interaction MapsReceptorNeuroinflammationCells Culturedlcsh:Neurology. Diseases of the nervous systemInflammationMice KnockoutNeuronsmedicine.diagnostic_testEthanolChemistryGeneral NeuroscienceResearchExtracellular vesiclesCell biologyMice Inbred C57BLToll-Like Receptor 4030104 developmental biologymedicine.anatomical_structureNeurologyAstrocytesTLR4medicine.symptom030217 neurology & neurosurgeryIntracellularAstrocyteJournal of Neuroinflammation
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The Impact of Small Extracellular Vesicles on Lymphoblast Trafficking across the Blood-Cerebrospinal Fluid Barrier In Vitro.

2020

Central nervous System (CNS) disease in pediatric acute lymphoblastic leukemia (ALL) is a major concern, but still, cellular mechanisms of CNS infiltration are elusive. The choroid plexus (CP) is a potential entry site, and, to some extent, invasion resembles CNS homing of lymphocytes during healthy state. Given exosomes may precondition target tissue, the present work aims to investigate if leukemia-derived exosomes contribute to a permissive phenotype of the blood-cerebrospinal fluid barrier (BCSFB). Leukemia-derived exosomes were isolated by ultracentrifugation from the cell lines SD-1, Nalm-6, and P12-Ichikawa (P12). Adhesion and uptake to CP epithelial cells and the significance on sub…

0301 basic medicineIntegrinexosomesEndocytosisExosomecentral nervous system infiltrationCatalysisArticlepediatric acute lymphoblastic leukemiaInorganic Chemistrylcsh:Chemistry03 medical and health sciencesExtracellular Vesicles0302 clinical medicineCell MovementCentral Nervous System DiseasesCell Line TumorCell AdhesionAnimalsHumansNeoplasm InvasivenessLymphocytesPhysical and Theoretical ChemistryMolecular Biologylcsh:QH301-705.5Spectroscopychoroid plexusbiologyChemistryLymphoblastOrganic ChemistryEpithelial CellsGeneral MedicinePrecursor Cell Lymphoblastic Leukemia-LymphomaHematopoietic Stem CellsMicrovesiclesEndocytosisComputer Science ApplicationsCell biologyProtein Transport030104 developmental biologylcsh:Biology (General)lcsh:QD1-999Cell cultureBlood-Brain Barrier030220 oncology & carcinogenesisbiology.proteinChoroid plexusHoming (hematopoietic)International journal of molecular sciences
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Chronic Stress Modulates Interneuronal Plasticity: Effects on PSA-NCAM and Perineuronal Nets in Cortical and Extracortical Regions.

2018

Chronic stress has an important impact on the adult brain. However, most of the knowledge on its effects is focused on principal neurons and less on inhibitory neurons. Consequently, recent reports have begun to describe stress-induced alterations in the structure, connectivity and neurochemistry of interneurons. Some of these changes appear to be mediated by certain molecules particularly associated to interneurons, such as the polysialylated form of the neural cell adhesion molecule (PSA-NCAM) and components of the perineuronal nets (PNN), specialized regions of the extracellular matrix. These plasticity-related molecules modulate interneuronal structure and connectivity, particularly of …

0301 basic medicineInterneuronPSA-NCAMhippocampusHippocampuslcsh:RC321-57103 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinemedicineChronic stresslcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal Researchchronic stressreticular thalamic nucleusThalamic reticular nucleusbiologyhabenulaPerineuronal netmusculoskeletal neural and ocular physiology030104 developmental biologymedicine.anatomical_structureHabenulanervous systembiology.proteinperineuronal netNeuroscience030217 neurology & neurosurgeryParvalbuminmedial prefrontal cortexbasolateral amygdalaBasolateral amygdalaNeuroscienceFrontiers in cellular neuroscience
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