Search results for "post"

showing 10 items of 6213 documents

Polysialic Acid Acute Depletion Induces Structural Plasticity in Interneurons and Impairs the Excitation/Inhibition Balance in Medial Prefrontal Cort…

2016

The structure and function of the medial prefrontal cortex (mPFC) is affected in several neuropsychiatric disorders, including schizophrenia and major depression. Recent studies suggest that imbalances between excitatory and inhibitory activity (E/I) may be responsible for this cortical dysfunction and, therefore, may underlie the core symptoms of these diseases. This E/I imbalance seems to be correlated with alterations in the plasticity of interneurons but there is still scarce information on the mechanisms that may link these phenomena. The polysialylated form of the neural cell adhesion molecule (PSA-NCAM) is a good candidate, because it modulates the neuronal plasticity of interneurons…

0301 basic medicineGenetically modified mousePSA-NCAMneuronal structural plasticityInhibitory postsynaptic potential03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineE/I balanceNeuroplasticitymedicinePrefrontal cortexOriginal ResearchPolysialic acidmusculoskeletal neural and ocular physiologymedicine.diseaseschizophreniamPFC cultures030104 developmental biologynervous systemSchizophreniaExcitatory postsynaptic potentialNeural cell adhesion moleculemajor depressionPsychologyNeuroscience030217 neurology & neurosurgeryNeuroscienceFrontiers in Cellular Neuroscience
researchProduct

Excessive daytime sleepiness is associated with an increased frequency of falls and sarcopenia.

2021

Background:\ud \ud This cross-sectional study aimed to examine associations between excessive daytime sleepiness (EDS) with falls and falls related conditions in older adults.\ud \ud Methods:\ud \ud To assess EDS, the Epworth Sleepiness Scale was used, with a score of ≥11/24 points indicating EDS. Number of falls and fall history (at least one) in the last year were recorded. Timed Up and Go test (TUG) was used to assess fall risk. Sarcopenia was defined by SARC-F tool. A grip strength score of the dominant hand, measured with a hand-grip dynamometer, less than 16 kg in females and 27 kg in males was accepted as dynapenia. Frailty status was defined by five dimensions including shrinking, e…

0301 basic medicineGerontologyMaleAgingSarcopeniaExcessive daytime sleepinessTimed Up and Go testDisorders of Excessive SomnolenceBiochemistry03 medical and health sciencesGrip strength0302 clinical medicineEndocrinologyGeneticsmedicineHumansMolecular BiologyGeriatric AssessmentPostural BalanceDepression (differential diagnoses)AgedPolypharmacyAged 80 and overbusiness.industryEpworth Sleepiness ScaleCell Biologymedicine.disease030104 developmental biologyCross-Sectional StudiesSarcopeniaDynapenia Excessive daytime sleepiness FallsFrailty SarcopeniaTime and Motion StudiesSoysal P. Smith L. Tan S. G. Capar E. Veronese N. Yang L. -Excessive daytime sleepiness is associated with an increased frequency of falls and sarcopenia.- Experimental gerontology ss.111364 2021Soysal P. Smith L. Tan S. G. Capar E. Veronese N. Yang L. -Excessive daytime sleepiness is associated with an increased frequency of falls and sarcopenia- 17 th EuGMS Athens Yunanistan 11 - 13 Ekim 2021 ss.3-4Marital statusAccidental FallsFemalemedicine.symptombusinesshuman activities030217 neurology & neurosurgeryExperimental gerontology
researchProduct

Piriform cortex alterations in the Ts65Dn model for down syndrome

2020

The piriform cortex is involved in olfactory information processing, that is altered in Down Syndrome. Moreover, piriform cortex has a crucial involvement in epilepsy generation and is one of the first regions affected in Alzheimer's Disease, both maladies being prevalent among Down Syndrome individuals. In this work, we studied the alterations in neuronal morphology, synaptology and structural plasticity in the piriform cortex of the Ts65Dn mouse model, which is the most used model for the study of this syndrome and mimics some of their alterations. We have observed that Ts65Dn piriform cortex displays: a reduction in dendritic arborisation, a higher density of inhibitory synapses (GAD67),…

0301 basic medicineGlutamate decarboxylasePresynaptic TerminalsMice TransgenicPiriform CortexInhibitory postsynaptic potentialMice03 medical and health sciences0302 clinical medicineAtrophyPostsynaptic potentialPiriform cortexmedicineNeuropilAnimalsMolecular BiologyNeuronsGephyrinbiologyGlutamate DecarboxylaseGeneral NeuroscienceMembrane Proteinsmedicine.disease030104 developmental biologymedicine.anatomical_structurenervous systemVesicular Glutamate Transport Protein 1biology.proteinExcitatory postsynaptic potentialNeurology (clinical)Down SyndromeNeuroscience030217 neurology & neurosurgeryDevelopmental BiologyBrain Research
researchProduct

Chaperonin of Group I: Oligomeric spectrum and biochemical and biological implications

2018

Chaperonins play various physiological roles and can also be pathogenic. Elucidation of their structure, e.g., oligomeric status and post-translational modifications (PTM), is necessary to understand their functions and mechanisms of action in health and disease. Group I chaperonins form tetradecamers with two stacked heptameric rings. The tetradecamer is considered the typical functional complex for folding of client polypeptides. However, other forms such as the monomer and oligomers with smaller number of subunits than the classical tetradecamer, also occur in cells. The properties and functions of the monomer and oligomers, and their roles in chaperonin-associated diseases are still inc…

0301 basic medicineHeptamerReviewOligomerBiochemistryBiochemistry Genetics and Molecular Biology (miscellaneous)GroELChaperonin03 medical and health scienceschemistry.chemical_compound0302 clinical medicinePost-translation modificationGroup I ChaperoninsMolecular BiosciencesChaperonopathies; GroEL; Heptamer; Hsp60; Monomer; Non-canonical locales; Post-translation modification; Tetradecamer; Biochemistry; Molecular Biology; Biochemistry Genetics and Molecular Biology (miscellaneous)lcsh:QH301-705.5Molecular BiologyTetradecamerChaperonopathiesNon-canonical localesHsp60GroELMicrovesicles3. Good healthMonomer030104 developmental biologychemistrylcsh:Biology (General)030220 oncology & carcinogenesisBiophysicsChaperonopathieProtein foldingHSP60Non-canonical localeFunction (biology)
researchProduct

Fast Regulation of GABAAR Diffusion Dynamics by Nogo-A Signaling.

2019

Summary: Precisely controlling the excitatory and inhibitory balance is crucial for the stability and information-processing ability of neuronal networks. However, the molecular mechanisms maintaining this balance during ongoing sensory experiences are largely unclear. We show that Nogo-A signaling reciprocally regulates excitatory and inhibitory transmission. Loss of function for Nogo-A signaling through S1PR2 rapidly increases GABAAR diffusion, thereby decreasing their number at synaptic sites and the amplitude of GABAergic mIPSCs at CA3 hippocampal neurons. This increase in GABAAR diffusion rate is correlated with an increase in Ca2+ influx and requires the calcineurin-mediated dephospho…

0301 basic medicineHippocampal formationInhibitory postsynaptic potentialGeneral Biochemistry Genetics and Molecular BiologyArticleSynaptic plasticityDephosphorylation03 medical and health sciences0302 clinical medicineSingle Particle Trackingmental disordersEi BalanceVeröffentlichung der TU Braunschweiglcsh:QH301-705.5Loss functionExcitationS1pr2S1PR2ddc:5InhibitionChemistryQuantum dotsCalcineurinGabaarsNogo-A; S1PR2 ; EI balance ; calcineurin ; inhibition ; excitation ; quantum dots ; GABAARs ; synaptic plasticity ; single particle trackingddc:57030104 developmental biologylcsh:Biology (General)Synaptic plasticityExcitatory postsynaptic potentialGABAergicNogo-ANeurosciencepsychological phenomena and processes030217 neurology & neurosurgery
researchProduct

Shank3 Mice Carrying the Human Q321R Mutation Display Enhanced Self-Grooming, Abnormal Electroencephalogram Patterns, and Suppressed Neuronal Excitab…

2019

Shank3, a postsynaptic scaffolding protein involved in regulating excitatory synapse assembly and function, has been implicated in several brain disorders, including autism spectrum disorders (ASD), Phelan-McDermid syndrome, schizophrenia, intellectual disability, and mania. Here we generated and characterized a Shank3 knock-in mouse line carrying the Q321R mutation (Shank3Q321R mice) identified in a human individual with ASD that affects the ankyrin repeat region (ARR) domain of the Shank3 protein. Homozygous Shank3Q321R/Q321R mice show a selective decrease in the level of Shank3a, an ARR-containing protein variant, but not other variants. CA1 pyramidal neurons in the Shank3Q321R/Q321R hip…

0301 basic medicineHippocampusautism spectrum disorderBiologyNeurotransmissionElectroencephalographyInhibitory postsynaptic potentiallcsh:RC321-57103 medical and health sciencesCellular and Molecular NeuroscienceExcitatory synapse assembly0302 clinical medicinePostsynaptic potentialexcitabilitymedicineself-groomingEEGMolecular Biologylcsh:Neurosciences. Biological psychiatry. Neuropsychiatrypatient mutationsOriginal Researchmedicine.diagnostic_testanxiety-like behaviorseizure susceptibilitymedicine.disease030104 developmental biologyShank3SchizophreniaExcitatory postsynaptic potentialNeuroscience030217 neurology & neurosurgeryNeuroscienceFrontiers in Molecular Neuroscience
researchProduct

Histones, Their Variants and Post-translational Modifications in Zebrafish Development.

2020

Complex multi-cellular organisms are shaped starting from a single-celled zygote, owing to elaborate developmental programs. These programs involve several layers of regulation to orchestrate the establishment of progressively diverging cell type-specific gene expression patterns. In this scenario, epigenetic modifications of chromatin are central in influencing spatiotemporal patterns of gene transcription. In fact, it is generally recognized that epigenetic changes of chromatin states impact on the accessibility of genomic DNA to regulatory proteins. Several lines of evidence highlighted that zebrafish is an excellent vertebrate model for research purposes in the field of developmental ep…

0301 basic medicineHistone-modifying enzymeshistone posttranslational modificationsMini ReviewMorphogenesisSettore BIO/11 - Biologia Molecolarematernal-to-zygotic transitionComparative biologyComputational biologyhistone03 medical and health sciencesCell and Developmental Biology0302 clinical medicineEpigeneticshistone variantsZebrafishlcsh:QH301-705.5developmentzygotic genome activationbiologyepigeneticsCell Biologybiology.organism_classificationzebrafishChromatinhistone histone posttranslational modifications histone variants epigenetics development maternal-to-zygotic transition zygotic genome activation zebrafish030104 developmental biologyHistonelcsh:Biology (General)030220 oncology & carcinogenesisbiology.proteinMaternal to zygotic transitionDevelopmental BiologyFrontiers in cell and developmental biology
researchProduct

Echinodermata: The complex immune system in echinoderms

2018

View references (418) The Echinodermata are an ancient phylum of benthic marine invertebrates with a dispersal-stage planktonic larva. These animals have innate immune systems characterized initially by clearance of foreign particles, including microbes, from the body cavity of both larvae and adults, and allograft tissue rejection in adults. Immune responsiveness is mediated by a variety of adult coelomocytes and larval mesenchyme cells. Echinoderm diseases from a range of pathogens can lead to mass die-offs and impact aquaculture, but some individuals can recover. Genome sequences of several echinoderms have identified genes with immune function, including expanded families of Toll-like r…

0301 basic medicineImmunoglobulin geneProteomicsSea CucumbersAntimicrobial peptidesDiseasesImmune responsesBiologySenescenceImmune development03 medical and health sciences0302 clinical medicineImmune systemAsteroideaAsteroidea Brittle stars Coelomocytes Crinoidea Diseases Echinoidea Genomics Holothuroidea Immune development Immune responses Immuno-toxicology Larval immune cells Ophiuroidea Proteomics Sea cucumbers Sea lilies Sea stars Sea urchins SenescenceApostichopus JaponicusSea cucumbersAsteroidea; Brittle stars; Coelomocytes; Crinoidea; Diseases; Echinoidea; Genomics; Holothuroidea; Immune development; Immune responses; Immuno-toxicology; Larval immune cells; Ophiuroidea; Proteomics; Sea cucumbers; Sea lilies; Sea stars; Sea urchins; SenescenceCrinoideaSea starsHolothuroideaOphiuroideaSea urchinsInnate immune systemCoelomocytesfungiLarval immune cellsSea liliesChemotaxisEchinoideaMarine invertebratesGenomicsbiology.organism_classificationComplement systemCell biology030104 developmental biologyEchinodermBrittle starsCoelomocytes Apostichopus Japonicus Sea CucumbersImmuno-toxicology030217 neurology & neurosurgery
researchProduct

Phenotypic characterization of MCP-1 expressing neurons in the rat cerebral cortex.

2020

Chemokines are small, secreted molecules that mediate inflammatory reactions. Neurons and astrocytes constitutively express chemokines implicated in the process of neuroinflammation associated with neurodegenerative diseases. The monocyte chemoattractant protein-1 (MCP-1) has been widely related to this process. However, the constitutive expression of this molecule by neurons has not been elucidated so far. In this study, we set out to characterize the neurochemical phenotype of MCP-1-expressing neurons in the rat neocortex to infer its role in basal conditions. We observed the presence of two populations of neurons expressing MCP-1: One population of cells with weak expression of MCP-1 cor…

0301 basic medicineInterneuronPopulationBiologyInhibitory postsynaptic potential03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineNeurochemicalInterneuronsmedicineAnimalseducationNeuroinflammationChemokine CCL2Cerebral CortexNeuronseducation.field_of_studyNeocortexPyramidal CellsChemotaxisCell biologyRats030104 developmental biologymedicine.anatomical_structurePhenotypenervous systemCerebral cortex030217 neurology & neurosurgeryJournal of chemical neuroanatomy
researchProduct

Spontaneous brain processing of the mammary pheromone in rabbit neonates prior to milk intake.

2016

International audience; Chemical signals play a critical role in interindividual communication, including mother-young relationships. Detecting odor cues released by the mammary area is vital to the newborn's survival. European rabbit females secret a mammary pheromone (MP) in their milk, which releases sucking related orocephalic movements in newborns. Pups spontaneously display these typical movements at birth, independently of any perinatal learning. Our previous Fos mapping study (Charra et al., 2012) performed in 4-day-old rabbits showed that the MP activated a network of brain regions involved in osmoregulation, odor processing and arousal in comparison with a control odor. However, a…

0301 basic medicineLateral hypothalamuspupMammary pheromoneLateral hypothalamusc-FosPheromonesBehavioral Neurosciencepiriform cortexEating0302 clinical medicinePiriform cortexPosterior piriform cortexhypothalamusNeuronsnewborn rabbitbiologyBrainOlfactory PathwaysMilkHypothalamuscircadian-rhythmsRabbitsPsychologyc-fosmedicine.medical_specialtyodor03 medical and health sciencesInternal medicinemedicine[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAnimalsLearning[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyMedian preoptic nucleusOrexinsgene-expressionmedian preoptic nucleusOlfactory bulbOrexin030104 developmental biologyEndocrinologyOdorAnimals Newbornolfactory-bulbOdorantsbiology.proteinOrexin030217 neurology & neurosurgeryBehavioural brain research
researchProduct