Search results for "Sialic acid"

showing 10 items of 91 documents

Distribution patterns in glycoconjugate expression during the development of the rat palate.

1994

The distribution of complex carbohydrate structures during the embryonic development of the rat palate was analysed by examining lectin-binding patterns in serial paraffin and cryostat sections. With few exceptions, the binding patterns showed a general increase in lectin receptors in the more developed stages of palatogenesis. High mannose oligosaccharides were especially amplified during development. Terminal fucose molecules were not expressed. In contrast, terminal sialic acid molecules were ubiquitously distributed in epithelial and mesenchymal tissues. Non-sialylated terminal N-acetylglucosamine was specifically restricted to evolving bone matrix. Before palatal fusion, quantitative b…

MaleGlycoconjugateMolecular Sequence DataOligosaccharidesFucoseAcetylglucosamineRats Sprague-Dawleychemistry.chemical_compoundPregnancyLectinsmedicineAnimalsTissue DistributionReceptorFucosechemistry.chemical_classificationParaffin EmbeddingbiologyPalateLectinGalactoseCell BiologyImmunohistochemistryEpitheliumCell biologySialic acidExtracellular MatrixRatsmedicine.anatomical_structureGlucosechemistryBiochemistryCarbohydrate Sequencebiology.proteinJacalinBasal laminaFemaleAnatomyGlycoconjugatesMannoseThe Histochemical journal
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Non-granule PSA-NCAM immunoreactive neurons in the rat hippocampus

2002

The polysialylated form of the neural cell adhesion molecule (PSA-NCAM) continues to be expressed in the adult hippocampus, mainly in a subset of neurons located in the innermost portion of the granule cell layer. PSA-NCAM immunoreactive neurons have also been described outside this layer in humans, where they are severely reduced in schizophrenic brains. Given this important clinical implication, we were interested in finding whether similar neurons existed in the adult rat hippocampus and to characterize their distribution, morphology and phenotype. PSA-NCAM immunocytochemistry reveals labeled neurons in the subiculum, fimbria, alveus, hilus, and stratum oriens, lucidum and radiatum of CA…

MaleInterneuronNeural Cell Adhesion Molecule L1Hippocampal formationHippocampusCalbindinImage Processing Computer-AssistedmedicineAnimalsNeuropeptide YFluorescent Antibody Technique IndirectNeural Cell Adhesion MoleculesMolecular Biologygamma-Aminobutyric AcidNeuronsbiologyGeneral NeuroscienceSubiculumGranule cellImmunohistochemistryRatsPhenotypemedicine.anatomical_structurenervous systemSialic Acidsbiology.proteinNeural cell adhesion moleculeNeurology (clinical)CalretininSomatostatinNeuroscienceParvalbuminDevelopmental BiologyBrain Research
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Food Intake Adaptation to Dietary Fat Involves PSA-Dependent Rewiring of the Arcuate Melanocortin System in Mice

2012

International audience; Hormones such as leptin and ghrelin can rapidly rewire hypothalamic feeding circuits when injected into rodent brains. These experimental manipulations suggest that the hypothalamus might reorganize continually in adulthood to integrate the metabolic status of the whole body. In this study, we examined whether hypothalamic plasticity occurs in naive animals according to their nutritional conditions. For this purpose, we fed mice with a short-term high-fat diet (HFD) and assessed brain remodeling through its molecular and functional signature. We found that HFD for 3 d rewired the hypothalamic arcuate nucleus, increasing the anorexigenic tone due to activated pro-opio…

MaleMESH: Signal TransductionPro-Opiomelanocortin[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionSYNAPTIC INPUT ORGANIZATIONMESH: Energy IntakeWeight GainMESH: Mice KnockoutMice0302 clinical medicineMESH : Sialic AcidsNPY/AGRP NEURONSMESH: Pro-OpiomelanocortinMESH: AnimalsMESH : Neuronal PlasticityMESH: Neuronal PlasticityPLASTICITYMESH : Pro-OpiomelanocortinMESH : Adaptation PhysiologicalMice KnockoutFEEDING CIRCUITSMESH : Organ Culture TechniquesINSULIN-RESISTANCE0303 health sciencesNeuronal PlasticityPOLYSIALIC ACIDGeneral NeuroscienceLeptinMESH: Energy Metabolismdigestive oral and skin physiologyINDUCED OBESITYMESH : SialyltransferasesMESH : Weight GainArticlesAdaptation PhysiologicalMESH : Mice TransgenicBODY-WEIGHTMESH: Dietary FatsHypothalamusCELL-ADHESION MOLECULEMESH: Weight GainGhrelinENERGY-BALANCEMelanocortinhormones hormone substitutes and hormone antagonistsSignal Transductionmedicine.medical_specialtyMESH: Mice TransgenicMESH : MaleMESH: SialyltransferasesMESH: Arcuate NucleusMice TransgenicMESH : Mice Inbred C57BLBiologyMESH : Arcuate NucleusMESH: Sialic Acids03 medical and health sciencesOrgan Culture TechniquesInsulin resistanceMESH: Mice Inbred C57BLArcuate nucleusInternal medicineMESH : MicemedicineAnimalsMESH: Mice030304 developmental biologyMESH : Signal TransductionArcuate Nucleus of HypothalamusMESH : Energy Intakemedicine.diseaseDietary FatsMESH: Adaptation PhysiologicalSialyltransferasesMESH: Organ Culture TechniquesMESH: MaleMice Inbred C57BLMESH : Energy MetabolismEndocrinologyMESH: Nerve NetSialic AcidsMESH : Nerve NetMESH : Mice KnockoutMESH : AnimalsNerve NetEnergy IntakeEnergy Metabolism[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Dietary Fats030217 neurology & neurosurgeryHomeostasisHormoneThe Journal of Neuroscience
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The Polysialylated Form of the Neural Cell Adhesion Molecule (PSA-NCAM) Is Expressed in a Subpopulation of Mature Cortical Interneurons Characterized…

2010

Principal neurons in the adult cerebral cortex undergo synaptic, dendritic, and spine remodeling in response to different stimuli, and several reports have demonstrated that the polysialylated form of the neural cell adhesion molecule (PSA-NCAM) participates in these plastic processes. However, there is only limited information on the expression of this molecule on interneurons and on its role in the structural plasticity of these cells. We have found that PSA-NCAM is expressed in mature interneurons widely distributed in all the extension of the cerebral cortex and have excluded the expression of this molecule in most principal cells. Although PSA-NCAM expression is generally considered a …

MaleNeurogenesisCognitive NeuroscienceCellular differentiationNeural InhibitionNeural Cell Adhesion Molecule L1BiologyInhibitory postsynaptic potentialRats Sprague-DawleyCellular and Molecular NeuroscienceInterneuronsNeural PathwaysNeuroplasticitymedicineAnimalsCell ShapeCerebral CortexNeuronal PlasticityEmbryogenesisNeurogenesisCell DifferentiationNeural InhibitionRatsmedicine.anatomical_structurenervous systemCerebral cortexSialic AcidsNeural cell adhesion moleculeNeuroscienceCerebral Cortex
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PSA-NCAM expression in the rat medial prefrontal cortex

2005

The rat medial prefrontal cortex, an area considered homologous to the human prefrontal cortex, is a region in which neuronal structural plasticity has been described during adulthood. Some plastic processes such as neurite outgrowth and synaptogenesis are known to be regulated by the polysialylated form of the neural cell adhesion molecule (PSA-NCAM). Since PSA-NCAM is present in regions of the adult CNS which are undergoing structural remodeling, such as the hypothalamus or the hippocampus, we have analyzed the expression of this molecule in the medial prefrontal cortex of adult rats using immunohistochemistry. PSA-NCAM immunoreactivity was found both in cell bodies and in the neuropil of…

MaleNeuropilNeuriteInterneuronAntimetabolitesCell SurvivalSynaptophysinSynaptogenesisPrefrontal CortexHippocampusNeural Cell Adhesion Molecule L1BiologyRats Sprague-DawleyNeuroplasticityNeuropilmedicineAnimalsFluorescent Antibody Technique IndirectPrefrontal cortexNeuronsNeuronal PlasticityGlutamate DecarboxylasePyramidal CellsGeneral NeuroscienceImmunohistochemistryRatsPhenotypemedicine.anatomical_structureBromodeoxyuridinenervous systemSialic AcidsNeural cell adhesion moleculeNeuroscienceNeuroscience
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Chronic fluoxetine treatment alters the structure, connectivity and plasticity of cortical interneurons

2014

Novel hypotheses suggest that antidepressants, such as the selective serotonin reuptake inhibitor fluoxetine, induce neuronal structural plasticity, resembling that of the juvenile brain, although the underlying mechanisms of this reopening of the critical periods still remain unclear. However, recent studies suggest that inhibitory networks play an important role in this structural plasticity induced by fluoxetine. For this reason we have analysed the effects of a chronic fluoxetine treatment in the hippocampus and medial prefrontal cortex (mPFC) of transgenic mice displaying eGFP labelled interneurons. We have found an increase in the expression of molecules related to critical period pla…

MalePERINEURONAL NET EXPRESSIONTime FactorsDendritic spinePSA-NCAMCritical period plasticityHippocampusCell CountADULT BRAIN PLASTICITYTREATMENT INCREASESHippocampusMice0302 clinical medicinePharmacology (medical)Prefrontal cortexCerebral Cortex0303 health sciencesNeuronal PlasticitybiologyGlutamate DecarboxylaseMEDIAL PREFRONTAL CORTEXPOLYSIALIC ACIDmusculoskeletal neural and ocular physiologyPerineuronal net3. Good healthPsychiatry and Mental healthParvalbuminsmedicine.anatomical_structureCerebral cortexCELL-ADHESION MOLECULEAntidepressive Agents Second-GenerationDendritic SpinesGreen Fluorescent ProteinseducationMice TransgenicNerve Tissue ProteinsNeural Cell Adhesion Molecule L1Inhibitory postsynaptic potentialRAT HIPPOCAMPUS03 medical and health sciencesmedicineAnimalsPSA-NCAM EXPRESSION030304 developmental biologyPharmacologyperineuronal netsinterneuronsCENTRAL-NERVOUS-SYSTEMfluoxetine3112 NeurosciencesGene Expression Regulationnervous systemVesicular Glutamate Transport Protein 1Sialic Acidsbiology.proteinNeural cell adhesion moleculeNerve NetNeuroscience030217 neurology & neurosurgeryParvalbuminThe International Journal of Neuropsychopharmacology
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Chronic restraint stress and chronic corticosterone treatment modulate differentially the expression of molecules related to structural plasticity in…

2004

Stress and stress-related hormones induce structural changes in neurons of the adult CNS. Neurons in the hippocampus, the amygdala and the prefrontal cortex undergo neurite remodeling after chronic stress. In the hippocampus some of these effects can be mimicked with chronic administration of adrenal steroids. These changes in neuronal structure may be mediated by certain molecules related to plastic events such as the polysialylated form of the neural cell adhesion molecule (PSA-NCAM). The expression of PSA-NCAM persists in the adult hippocampus and it is up-regulated after chronic stress. The piriform cortex also displays considerable levels of PSA-NCAM during adulthood and indirect evide…

MaleRestraint Physicalmedicine.medical_specialtyDoublecortin ProteinHippocampusNeural Cell Adhesion Molecule L1AmygdalaRats Sprague-Dawleychemistry.chemical_compoundCorticosteroneStress PhysiologicalInternal medicinePiriform cortexmedicineAnimalsChronic stressOlfactory memoryPrefrontal cortexCerebral CortexNeuronal PlasticitybiologyGeneral NeuroscienceDoublecortinRatsmedicine.anatomical_structureEndocrinologynervous systemchemistryGene Expression RegulationChronic Diseasebiology.proteinSialic AcidsCorticosteroneNeuroscienceNeuroscience
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Depletion of polysialic acid from neural cell adhesion molecule (PSA-NCAM) increases CA3 dendritic arborization and increases vulnerability to excito…

2012

Chronic immobilization stress (CIS) shortens apical dendritic trees of CA3 pyramidal neurons in the hippocampus of the male rat, and dendritic length may be a determinant of vulnerability to stress. Expression of the polysialylated form of neural cell adhesion molecule (PSA-NCAM) in the hippocampal formation is increased by stress, while PSA removal by Endo-neuraminidase-N (endo-N) is known to cause the mossy fibers to defasciculate and synapse ectopically in their CA3 target area. We show here that enzymatic removal of PSA produced a remarkable expansion of dendritic arbors of CA3 pyramidal neurons, with a lesser effect in CA1. This expansion eclipsed the CIS-induced shortening of CA3 dend…

MaleSilver StainingKainic acidExcitotoxicityHippocampusBiologyHippocampal formationmedicine.disease_causeReceptors N-Methyl-D-AspartateArticleBody Mass IndexRats Sprague-DawleySynapsechemistry.chemical_compoundDevelopmental NeuroscienceExcitatory Amino Acid AgonistsmedicineAnimalsOrganic ChemicalsReceptorNeural Cell Adhesion MoleculesAnalysis of VarianceKainic AcidPolysialic acidPyramidal CellsMetalloendopeptidasesDendritesFluoresceinsCA3 Region HippocampalRatsCell biologyDisease Models AnimalGene Expression Regulationnervous systemNeurologychemistryNerve DegenerationSialic AcidsNeural cell adhesion moleculeNeuroscienceStress PsychologicalExperimental Neurology
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Chronic antidepressant treatment induces contrasting patterns of synaptophysin and PSA-NCAM expression in different regions of the adult rat telencep…

2007

Structural modifications occur in the brain of severely depressed patients and they can be reversed by antidepressant treatment. Some of these changes do not occur in the same direction in different regions, such as the medial prefrontal cortex, the hippocampus or the amygdala. Differential structural plasticity also occurs in animal models of depression and it is also prevented by antidepressants. In order to know whether chronic fluoxetine treatment induces differential neuronal structural plasticity in rats, we have analyzed the expression of synaptophysin, a protein considered a marker of synaptic density, and the expression of the polysialylated form of the neural cell adhesion molecul…

MaleTelencephalonNeuropilNeuriteSynaptophysinHippocampusPrefrontal CortexNeural Cell Adhesion Molecule L1AmygdalaHippocampusRats Sprague-DawleyAnimal models of depressionFluoxetinemedicineAnimalsPharmacology (medical)Prefrontal cortexBiological PsychiatryPharmacologyNeuronal PlasticitybiologyCerebrumAmygdalaImmunohistochemistryAntidepressive AgentsRatsPsychiatry and Mental healthmedicine.anatomical_structurePhenotypenervous systemNeurologySynaptophysinbiology.proteinSialic AcidsAntidepressive Agents Second-GenerationNeural cell adhesion moleculeNeurology (clinical)NeuroscienceEuropean neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology
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Mucolipidosis I — A sialidosis

1977

Mucolipidosis I is characterized by Hurler-like features and skeletal dysplasia with a cherry-red macular spot and signs of neurodegeneration involving neuronal cells and myelin. Excessive amounts of sialic acid-containing compounds were found in cultured fibroblasts, leukocytes, and urine of a patient with a clinical phenotype of mucolipidosis I. In cultured fibroblasts, profoundly diminished activity of an alpha-N-acetylneuraminidase (sialidase) was found. Mucolipidosis I thus appears to be a distinct disorder of complex carbohydrate catabolism caused by the genetic deficiency of a neuraminidase.

Malemedicine.medical_specialtyHydrolasesNeuraminidaseSialidaseMyelinMucolipidosesInternal medicinemedicineHumansSialidosisChildCells CulturedGenetics (clinical)SkinbiologyMucolipidosisCatabolismNeurodegenerationmedicine.diseasePhenotypeEndocrinologymedicine.anatomical_structureDysplasiaChild PreschoolImmunologySialic Acidsbiology.proteinLysosomesNeuraminidaseFollow-Up StudiesAmerican Journal of Medical Genetics
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