Search results for "NEUROPLASTIC"

showing 10 items of 139 documents

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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Semaphorins in Adult Nervous System Plasticity and Disease

2021

Semaphorins, originally discovered as guidance cues for developing axons, are involved in many processes that shape the nervous system during development, from neuronal proliferation and migration to neuritogenesis and synapse formation. Interestingly, the expression of many Semaphorins persists after development. For instance, Semaphorin 3A is a component of perineuronal nets, the extracellular matrix structures enwrapping certain types of neurons in the adult CNS, which contribute to the closure of the critical period for plasticity. Semaphorin 3G and 4C play a crucial role in the control of adult hippocampal connectivity and memory processes, and Semaphorin 5A and 7A regulate adult neuro…

0301 basic medicineNervous systemsemaphorinsanimal structuresautismNeurosciences. Biological psychiatry. NeuropsychiatryReviewHippocampal formationBiologymultiple sclerosisExtracellular matrix03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineSemaphorinNeuroplasticitymedicineMultiple sclerosisPerineuronal netNeurogenesisCell Biologymedicine.diseaseschizophrenia030104 developmental biologymedicine.anatomical_structurenervous systemplasticityembryonic structuresAlzheimer’s disease; autism; epilepsy; multiple sclerosis; perineuronal net; plasticity; schizophrenia; semaphorinsepilepsysense organsperineuronal netbiological phenomena cell phenomena and immunityNeuroscienceAlzheimer’s disease030217 neurology & neurosurgeryNeuroscienceRC321-571
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Intrinsic volatility of synaptic connections — a challenge to the synaptic trace theory of memory

2017

According to the synaptic trace theory of memory, activity-induced changes in the pattern of synaptic connections underlie the storage of information for long periods. In this framework, the stability of memory critically depends on the stability of the underlying synaptic connections. Surprisingly however, synaptic connections in the living brain are highly volatile, which poses a fundamental challenge to the synaptic trace theory. Here we review recent experimental evidence that link the initial formation of a memory with changes in the pattern of connectivity, but also evidence that synaptic connections are considerably volatile even in the absence of learning. Then we consider different…

0301 basic medicineNeuronal PlasticityGeneral Neuroscience[SCCO.NEUR]Cognitive science/NeuroscienceModels NeurologicalTheoretical modelsBrain03 medical and health sciences030104 developmental biology0302 clinical medicineAnti-Hebbian learningMemoryNeuroplasticityMetaplasticityNeural PathwaysSynapsesAnimalsHumansLearningPsychologyNeuroscience030217 neurology & neurosurgeryComputingMilieux_MISCELLANEOUSTrace theory
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Pain-Induced Negative Affect Is Mediated via Recruitment of The Nucleus Accumbens Kappa Opioid System.

2019

Negative affective states affect quality of life for patients suffering from pain. These maladaptive emotional states can lead to involuntary opioid overdose and many neuropsychiatric comorbidities. Uncovering the mechanisms responsible for pain-induced negative affect is critical in addressing these comorbid outcomes. The nucleus accumbens (NAc) shell, which integrates the aversive and rewarding valence of stimuli, exhibits plastic adaptations in the presence of pain. In discrete regions of the NAc, activation of the kappa opioid receptor (KOR) decreases the reinforcing properties of rewards and induces aversive behaviors. Using complementary techniques, we report that in vivo recruitment …

0301 basic medicinePainDynorphinNucleus accumbensAffect (psychology)κ-opioid receptorDynorphinsNucleus AccumbensArticle03 medical and health sciencesMice0302 clinical medicineNeuroplasticitymedicineAnimalsValence (psychology)InflammationNeuronsNeuronal Plasticitybusiness.industryMood DisordersGeneral NeuroscienceReceptors Opioid kappaOpioid overdoseNeural Inhibitionmedicine.diseaseRatsAffect030104 developmental biologyOpioidbusinessNeuroscience030217 neurology & neurosurgerymedicine.drugNeuron
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Acute Cortical Transhemispheric Diaschisis after Unilateral Traumatic Brain Injury

2017

Focal neocortical brain injuries lead to functional alterations, which can spread beyond lesion-neighboring brain areas. The undamaged hemisphere and its associated disturbances after a unilateral lesion, so-called transhemispheric diaschisis, have been progressively disclosed over the last decades; they are strongly involved in the pathophysiology and, potentially, recovery of brain injuries. Understanding the temporal dynamics of these transhemispheric functional changes is crucial to decipher the role of the undamaged cortex in the processes of functional reorganization at different stages post-lesion. In this regard, little is known about the acute-subacute processes after 24-48 h in th…

0301 basic medicinePatch-Clamp TechniquesTraumatic brain injurySomatosensory system03 medical and health sciences0302 clinical medicineCortex (anatomy)Unilateral lesionBrain Injuries TraumaticNeuroplasticitymedicineAnimalsDiaschisisNeuronal PlasticityMotor CortexElectroencephalographySomatosensory Cortexmedicine.diseaseMice Inbred C57BLDisease Models AnimalElectrophysiology030104 developmental biologymedicine.anatomical_structureBrain HemisphereNeurology (clinical)PsychologyNeuroscience030217 neurology & neurosurgeryJournal of Neurotrauma
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A historic perspective on the current progress in elucidation of the biologic significance of non-neuronal acetylcholine

2020

The "5th International Symposium on Non-neuronal Acetylcholine: from bench to bedside" was held on September 27-29, 2019 in Hyatt Regency, Long Beach, CA, USA. Approximately 50 scientists from 11 countries over 6 continents participated in this meeting. The major topics included an overall biologic significance of non-neuronal acetylcholine (ACh) and the roles of the non-neuronal cholinergic systems in mucocutaneous, respiratory, digestive, immunologic, endocrine, cardiovascular, musculoskeletal and kidney diseases, and cancer. This meeting facilitated continued work to advance the fundamental science and translational aspects of the interdisciplinary studies on non-neuronal ACh. The progre…

0301 basic medicinePharmacologyImmunologyBiologyNon neuronal acetylcholine03 medical and health sciencesParacrine signalling030104 developmental biology0302 clinical medicine030220 oncology & carcinogenesisNeuroplasticitymedicineImmunology and AllergyCholinergicAutocrine signallingNeuroscienceHomeostasisAcetylcholineAcetylcholine receptormedicine.drugInternational Immunopharmacology
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Alterations of perineuronal nets in the dorsolateral prefrontal cortex of neuropsychiatric patients

2019

Abstract Background Alterations in the structure and physiology of interneurons in the prefrontal cortex (PFC) are important factors in the etiopathology of different psychiatric disorders. Among the interneuronal subpopulations, parvalbumin (PV) expressing cells appear to be specially affected. Interestingly, during development and adulthood the connectivity of these interneurons is regulated by the presence of perineuronal nets (PNNs), specialized regions of the extracellular matrix, which are frequently surrounding PV expressing neurons. Previous reports have found anomalies in the density of PNNs in the PFC of schizophrenic patients. However, although some studies have described alterat…

0301 basic medicinePsychosisBipolar disorderPerineuronal netsPrefrontal cortexlcsh:RC321-57103 medical and health sciences0302 clinical medicinemental disordersNeuroplasticitymedicineMajor depressionPsiquiatriaBipolar disorderPrefrontal cortexlcsh:Neurosciences. Biological psychiatry. NeuropsychiatrySalut mentalBiological PsychiatryParvalbuminbiologyResearchPerineuronal netlcsh:QP351-495medicine.diseaseDorsolateral prefrontal cortexPsychiatry and Mental healthlcsh:Neurophysiology and neuropsychology030104 developmental biologymedicine.anatomical_structurenervous systemSchizophreniaSchizophreniabiology.proteinEsquizofrèniaNeuroscience030217 neurology & neurosurgeryParvalbuminInternational Journal of Bipolar Disorders
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Neuroprotective effects of physical activity via the adaptation of astrocytes

2021

The multifold benefits of regular physical exercise have been largely demonstrated in human and animal models. Several studies have reported the beneficial effects of physical activity, both in peripheral tissues and in the central nervous system (CNS). Regular exercise improves cognition, brain plasticity, neurogenesis and reduces the symptoms of neurodegenerative diseases, making timeless the principle of “mens sana in corpore sano” (i.e., a healthy mind in a healthy body). Physical exercise promotes morphological and functional changes in the brain, acting not only in neurons but also in astrocytes, which represent the most numerous glial cells in the brain. The multiple effects of exerc…

0301 basic medicineQH301-705.5NeurogenesisCentral nervous systemPhysical exerciseReviewNeuroprotection03 medical and health sciences0302 clinical medicinePhysical Conditioning AnimalNeuroplasticityMedicineAnimalsHumansBiology (General)ExerciseNeuronsNeuronal Plasticitybusiness.industryNeurogenesisBrainGeneral MedicineNeuronAdaptation PhysiologicalBrain functions030104 developmental biologymedicine.anatomical_structureAstrocytesCatecholamineNeuronbusinessNeuroscience030217 neurology & neurosurgeryAstrocytemedicine.drug
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Contrasting coping styles meet the wall: A dopamine driven dichotomy in behavior and cognition

2017

Individual variation in the ability to modify previously learned behaviour is an important dimension of trait correlations referred to as coping styles, behavioral syndromes or personality. These trait clusters have been shaped by natural selection, and underlying control mechanisms are often conserved throughout vertebrate evolution. In teleost fishes, behavioral flexibility and coping style have been studied in the high (HR) and low-responsive (LR) rainbow trout lines. Generally, proactive LR trout show a behaviour guided by previously learned routines, while HR trout show a more flexible behaviour relying on environmental cues. In mammals, routine dependent vs flexible behavior has been …

0301 basic medicineSTRESSNEUROSCIENCESTELEOST FISHESFLEXIBILITYRAINBOW-TROUTINDIVIDUAL VARIATIONteleostsAmygdalacognitive flexibilitylcsh:RC321-571Developmental psychology03 medical and health sciencesBehavioral syndrome0302 clinical medicineLimbic systemmonoamineslimbic systembiology.animalNeuroplasticitymedicine14. Life underwaterlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal ResearchbiologyDANIO-RERIOGeneral NeuroscienceCognitive flexibilityVertebrateNEURAL PLASTICITYbiology.organism_classificationRECEPTORSAMYGDALATrout030104 developmental biologymedicine.anatomical_structurepersonalityANIMAL PERSONALITIESRainbow troutNeuroscience030217 neurology & neurosurgeryNeuroscience
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Homer2 and alcohol: A mutual interaction

2017

The past two decades of data derived from addicted individuals and preclinical animal models of addiction implicate a role for the excitatory glutamatergic transmission within the mesolimbic structures in alcoholism. The cellular localization of the glutamatergic receptor subtypes, as well as their signaling efficiency and function, are highly dependent upon discrete functional constituents of the postsynaptic density, including the Homer family of scaffolding proteins. The consequences of repeated alcohol administration on the expression of the Homer family proteins demonstrate a crucial and active role, particularly for the expression of Homer2 isoform, in regulating alcohol-induced behav…

0301 basic medicineScaffold proteinlcsh:RC435-571media_common.quotation_subjectMini ReviewAddiction; Alcohol; Glutamate; Homer proteins; Homer2; Psychiatry and Mental HealthglutamateBiologyNucleus accumbensHomer203 medical and health sciencesGlutamatergic0302 clinical medicineExtended amygdalalcsh:PsychiatryNeuroplasticityCellular localizationmedia_commonPsychiatryHomer proteinalcoholAddictionHomer proteins030104 developmental biologyPsychiatry and Mental HealthaddictionNeurosciencePostsynaptic density030217 neurology & neurosurgery
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