Search results for "Serotonergic"

showing 10 items of 70 documents

Central Serotonin2C Receptor: From Physiology to Pathology

2006

Since the 1950s, when serotonin (5-HT) was discovered in the mammalian central nervous system (CNS), an enormous amount of experimental evidence has revealed the pivotal role of this biogenic amine in a number of cognitive and behavioural functions. Although 5-HT is synthesized by a small group of neurons within the raphe nuclei of the brain stem, almost all parts of the CNS receive serotonergic projections. Furthermore, the importance of 5-HT modulation and the fine-tuning of its action is underlined by the large number of 5-HT binding sites found in the CNS. Hitherto, up to 15 different 5-HT receptors subtypes have been identified. This review was undertaken to summarize the work that has…

SerotoninDORSAL RAPHE NUCLEUSPathologymedicine.medical_specialtyProtein ConformationCentral nervous systemPhysiologyRAT NUCLEUS-ACCUMBENSBiologySerotonergicDorsal raphe nucleusPLEXUS EPITHELIAL-CELLSAGONIST-DIRECTED TRAFFICKINGDrug DiscoveryReceptor Serotonin 5-HT2CmedicineAnimalsHumansserotonergic receptorselective 5-HT2C drugs Key Words Plus: VENTRAL TEGMENTAL AREAReceptor5-HT receptorReceptor Serotonin 5-HTCENTRAL-NERVOUS-SYSTEMGeneral MedicineEXTRACELLULAR DOPAMINE LEVELSmedicine.diseaseschizophreniamedicine.anatomical_structureGene Expression RegulationDepression Mentaldrug of abuse5-HT2 ANTAGONIST RITANSERINSchizophreniadepressionSchizophreniaATYPICAL ANTIPSYCHOTIC-DRUGSSerotoninRaphe nucleiPRIMATE CEREBRAL-CORTEXSignal TransductionCurrent Topics in Medicinal Chemistry
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Serotoninergic innervation of nonprincipal cells in the cerebral cortex of the lizard Podarcis hispanica.

2004

The mechanism of serotoninergic transmission in the neo- and archicortex of mammals kis complex, including both synaptic and nonsynaptic components, direct actions on principal cells, and indirect effects mediated by GABAergic interneurons. Here we studied the termination pattern and synaptic organization of the serotoninergic afferents in the cerebral cortex of the lizard, Podarcis hispanica, which is considered to correspond in part to the mammalian hippocampal formation, with the aim of unraveling basic, phylogenetically preserved rules in the connectivity of this pathway. We demonstrate that serotoninergic afferents, visualized by immunostaining for serotonin itself, establish multiple …

SerotoninHippocampal formationInhibitory postsynaptic potentialSerotonergicPodarcis hispanicaNerve FibersmedicineAnimalsNeuropeptide YTissue DistributionOpioid peptidegamma-Aminobutyric AcidCerebral CortexbiologyStaining and LabelingGeneral NeuroscienceLizardsbiology.organism_classificationMicroscopy Electronmedicine.anatomical_structureParvalbuminsCerebral cortexSynapsesbiology.proteinImmunologic TechniquesGABAergicEndorphinsNeuroscienceParvalbuminThe Journal of comparative neurology
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Altered host behaviour and brain serotonergic activity caused by acanthocephalans: evidence for specificity

2006

Manipulative parasites can alter the phenotype of intermediate hosts in various ways. However, it is unclear whether such changes are just by-products of infection or adaptive and enhance transmission to the final host. Here, we show that the alteration of serotonergic activity is functionally linked to the alteration of specific behaviour in the amphipodGammarus pulexinfected with acanthocephalan parasites.Pomphorhynchus laevisand, to a lesser extent,Pomphorhynchus tereticollisaltered phototactism, but not geotactism, inG. pulex, whereas the reverse was true forPolymorphus minutus. Serotonin (5-hydroxytryptamine, 5-HT) injected to uninfectedG. pulexmimicked the altered phototactism, but ha…

Serotonin[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMESH : SerotoninMESH : Host-Parasite InteractionsZoologyintermediate amphipod hostMESH : Behavior AnimalSerotonergicphototactismGeneral Biochemistry Genetics and Molecular BiologyAcanthocephalaHost-Parasite Interactionsgeotactism[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsAmphipodaGeneral Environmental ScienceBehavior AnimalGeneral Immunology and MicrobiologybiologyEcologyHost (biology)MESH : AcanthocephalaBrainGeneral MedicineMESH : Amphipodabiology.organism_classificationPhenotypeGammarus pulexPulexMESH : BrainPomphorhynchus laevisMESH : AnimalsSerotoninGeneral Agricultural and Biological SciencesAcanthocephalaResearch Articlehost manipulations by parasitesProceedings of the Royal Society B: Biological Sciences
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Modulatory effects of the serotonergic and histaminergic systems on reaction to light in the crustacean Gammarus pulex

2013

Serotonin modulates reaction to light in many animals. In the freshwater amphipod Gammarus pulex, exogenous administration of serotonin induces a transient reversal of photic behaviour from strong photophobia to photophily. We have elucidated further the neuromodulation of photic behaviour in G. pulex by using in vivo pharmacology and behavioural testing. Using several mammalian 5-HT receptor antagonists and agonists, we provide evidence for a role of serotonin receptors in the 5-HT-dependent regulation of G. pulex photic behaviour, possibly involving 5-HTR2 subtype. Serotonin-induced photophily was blocked by the 5-HT receptor antagonists, mianserin, cyproheptadine, and ritanserin, but not…

Serotoninmedicine.medical_specialtyKetanserinLightMovementHistamine AntagonistsRitanserinPharmacologySerotonergicCellular and Molecular NeuroscienceHistamine receptorSerotonin AgentsNeuromodulationInternal medicinemedicineAnimalsAmphipoda5-HT receptorPharmacologyBehavior AnimalChemistryHistaminergicDrug Synergismmedicine.anatomical_structureEndocrinologysense organsSerotoninHistaminemedicine.drugNeuropharmacology
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Antidepressants are functional antagonists at the serotonin type 3 (5-HT3) receptor

2003

Antidepressants are commonly supposed to enhance serotonergic and/or noradrenergic neurotransmission by inhibition of neurotransmitter reuptake through binding to the respective neurotransmitter transporters or through inhibition of the monoamine oxidase. Using the concentration-clamp technique and measurements of intracellular Ca2+, we demonstrate that different classes of antidepressants act as functional antagonists at the human 5-HT3A receptor stably expressed in HEK 293 cells and at endogenous 5-HT3 receptors of rat hippocampal neurons and N1E-115 neuroblastoma cells. The tricyclic antidepressants desipramine, imipramine, and trimipramine, the serotonin reuptake inhibitor fluoxetine, t…

Serotoninmedicine.medical_specialtySerotonin reuptake inhibitorMirtazapinePharmacologyKidneySerotonergicHippocampusNoradrenergic and specific serotonergic antidepressantCell LineMembrane PotentialsReuptakeNeuroblastomaCellular and Molecular NeuroscienceNorepinephrine reuptake inhibitorCell Line TumorInternal medicineDesipraminemedicineAnimalsHumansSerotonin 5-HT3 Receptor AntagonistsPharmacology (medical)Molecular BiologyNeuronsChemistryGeneral MedicineTrimipramineAntidepressive AgentsRatsPsychiatry and Mental healthEndocrinology5-HT6 receptorCalciumReceptors Serotonin 5-HT3medicine.drugPharmacopsychiatry
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Effect of family structure and TPH2 G-703T on the stability of dysregulation profile throughout adolescence

2015

Abstract Background Two different polymorphisms (TPH2 G-703T and 5-HTTLPR) involved in the serotonergic pathway have been reported to play a role, both alone and in interaction with the environment, in early and adult emotion regulation. As most of these studies are cross-sectional, we know little about the impact of these polymorphisms over time, particularly during adolescence. Methods Because we were interested in the effects of these polymorphisms and environment (i.e., family structure) at different time-points on the emotional dysregulation profile, we performed a path analysis model in a general adolescent population sample of a five-year follow-up study. Results We found a high stab…

Settore M-PSI/01 - Psicologia GeneraleMaleAdolescentGenotypeEmotional dysregulationTryptophan Hydroxylase5-HTTLPRSerotonergicDevelopmental psychologyDysregulation profileYoung Adult03 medical and health sciences0302 clinical medicinePolymorphism (computer science)TPH2HumansAffective SymptomsAlleleGene–environment interactionYoung adultAllelesTPH2; 5-HTTLPR; Emotional dysregulation; Adolescence; Family structure; Dysregulation profileSerotonin Plasma Membrane Transport ProteinsPolymorphism GeneticTPH2Emotional dysregulationAdolescence030227 psychiatryPsychiatry and Mental healthClinical Psychology5-HTTLPRFemaleGene-Environment InteractionFamily RelationsPsychologyFamily structure030217 neurology & neurosurgeryFollow-Up StudiesClinical psychologyJournal of Affective Disorders
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Role of hydrophobicity on the monoamine receptor binding affinities of central nervous system drugs: a quantitative retention-activity relationships …

2004

Abstract Biological action and activity reflect an aspect of the fundamental physicochemical properties of the bioactive compounds. As an alternative to classical QSAR studies, in this work different quantitative retention–activity relationships (QRAR) models are proposed, which are able to describe the role of hydrophobicity on the binding affinity to different brain monoamine receptors (H 1 -histamine, α 1 -noradrenergic and 5-HT 2 -serotonergic) of different families of psychotherapeutic drugs. The retention of compounds is measured in a biopartitioning micellar chromatography (BMC) system using Brij-35 mobile phases. The adequacy of the QRAR models developed is due to the fact that both…

Steric effectsQuantitative structure–activity relationshipStereochemistryClinical BiochemistryQuantitative Structure-Activity RelationshipSerotonergicBiochemistryAnalytical ChemistryReceptors Biogenic AmineReceptors Adrenergic alpha-1AnimalsReceptors Histamine H1ReceptorMicellesChromatographyChromatographyMolecular StructureChemistryCell MembraneBrainCell BiologyGeneral MedicineAffinitiesMonoamine neurotransmitterSerotonin 5-HT2 Receptor AntagonistsPharmacophoreReceptors Serotonin 5-HT2Quantitative analysis (chemistry)Central Nervous System AgentsJournal of chromatography. B, Analytical technologies in the biomedical and life sciences
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Neuronal and neuroendocrine mechanisms of social rank and stress coping in teleost fish

2015

Fights for social dominance are stressful and results in an activation of the brain serotonergic system. Subordinate animals in an established dominance hierarchy are characterized by a chronic elevation of brain serotonergic activity, an effect that seems to mediate the behavioural inhibition observed in these animals. By contrast, social dominance has been associated with elevated dopaminergic activity, and dopamine (DA) has behavioural effects to some extent opposing those of serotonin (5HT). In addition to effects of the social environment, brain monoaminergic functions are controlled by genetic factors. For instance, zebrafish (Danio rerio) classified as bold, showing a propensity for …

animal structuresanimal diseasesfungiDopaminergicDanioPhysiologyBiologySerotonergicbiology.organism_classificationBiochemistryDominance hierarchyDominance (ethology)DopamineMonoaminergicGeneticsmedicineSerotoninMolecular BiologyNeuroscienceBiotechnologymedicine.drugThe FASEB Journal
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Serotonin–dopamine interaction: an overview

2008

Central serotonergic and dopaminergic systems play a critical role in the regulation of normal and abnormal behaviours. Moreover, recent evidence suggests that the dysfunction of dopamine (DA) and serotonin (5-hydroxytriptamine, 5-HT) neurotransmission might underlie the pathophysiology of neuropsychiatric disorders, including depression, schizophrenia, attention deficit hyperactivity disorders, drug abuse, Gilles de la Tourette's syndrome and Parkinson's disease.

business.industryDopaminergicSubstantia nigramedicine.diseaseSerotonergicVentral tegmental areamedicine.anatomical_structureDopamineSchizophreniaMedicineSerotoninbusinessNeuroscience5-HT receptormedicine.drug
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Study of the evolution of terminal differentiation programs using C. elegans serotonergic neurons as a model

2019

Tesis, 407 páginas, figuras y tablas.

evodevoSerotoninc. elegansneurobiologyEvolution of cell typesC. angariaEvodevoc. angariacaenorhabditis:CIENCIAS DE LA VIDA [UNESCO]serotonincell differentiationserotonergic neuronsNeurobiologySerotonergic neuronsevolution of cell typesUNESCO::CIENCIAS DE LA VIDAC. elegansCell differentiationCaenorhabditisVC4 VC5 motorneurons
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