Search results for "Microdialysi"

showing 10 items of 73 documents

Episodic Social Stress-Escalated Cocaine Self-Administration: Role of Phasic and Tonic Corticotropin Releasing Factor in the Anterior and Posterior V…

2016

Intermittent social defeat stress escalates later cocaine self-administration. Reward and stress both activate ventral tegmental area (VTA) dopamine neurons, increasing downstream extracellular dopamine concentration in the medial prefrontal cortex and nucleus accumbens. The stress neuropeptide corticotropin releasing factor (CRF) and its receptors (CRF-R1, CRF-R2) are located in the VTA and influence dopaminergic activity. These experiments explore how CRF release and the activation of its receptors within the VTA both during and after stress influence later cocaine self-administration in rats.In vivomicrodialysis of CRF in the VTA demonstrated that CRF is phasically released in the poster…

Malemedicine.medical_specialtyendocrine systemCorticotropin-Releasing HormoneMicrodialysisDrug-Seeking BehaviorNeuropeptideSelf AdministrationNucleus accumbensSocial EnvironmentReceptors Corticotropin-Releasing HormoneSocial defeat03 medical and health sciencesCorticotropin-releasing hormoneCocaine-Related Disorders0302 clinical medicineDopamineInternal medicinemental disordersmedicineAnimalsRats Long-EvansSocial stressGeneral Neurosciencemusculoskeletal neural and ocular physiologyDopaminergicVentral Tegmental AreaArticles030227 psychiatryRatsSubstance Withdrawal SyndromeVentral tegmental areamedicine.anatomical_structureEndocrinologynervous systemPsychologyNeuroscience030217 neurology & neurosurgeryhormones hormone substitutes and hormone antagonistsStress Psychologicalmedicine.drug
researchProduct

Role of serotonin in central dopamine dysfunction

2010

The interaction between serotonin (5-HT) and dopamine (DA)-containing neurons in the brain is a research topic that has raised the interest of many scientists working in the field of neuroscience since the first demonstration of the presence of monoamine-containing neurons in the mid 1960. The bulk of neuroanatomical data available clearly indicate that DA-containing neurons in the brain receive a prominent innervation from serotonin (5-hydroxytryptamine, 5-HT) originating in the raphe nuclei of the brainstem. Compelling electrophysiological and neurochemical data show that 5-HT can exert complex effects on the activity of midbrain DA neurons mediated by its various receptor subtypes. The m…

Mesocorticolimbic DA systemNigrostriatal DA systemReceptor Serotonin 5-HTParkinson's diseaseBrain microdialysisAntidepressantDopaminergic functionAntidepressantsSettore BIO/09 - Fisiologia5-HT receptorAntipsychoticParkinson diseaseMicrodialysinervous systemSingle cell recordingDrug addictionAntidepressants;Antipsychotics;Dopaminergic function;Drug addiction;5-HT receptors;Mesocorticolimbic DA system;Microdialysis;Nigrostriatal DA system;Parkinson disease;Single cell recordingAntipsychotic drugs
researchProduct

KA-672 inhibits rat brain acetylcholinesterase in vitro but not in vivo.

1999

Abstract KA-672, a lipophilic benzopyranone derivative which is currently under development as a cognitive enhancer and antidementia drug, has previously been shown to have facilitatory effects on learning and memory in rats at doses of 0.1–1 mg/kg. We now report that KA-672 inhibited the activity of acetylcholinesterase (AChE), measured in vitro in rat brain cortical homogenate, with an IC 50 value of 0.36 μ M indicating that KA-672 may improve cognitive functions as a consequence of AChE inhibition. However, when we employed the microdialysis procedure to monitor acetylcholine (ACh) release from rat hippocampus, no effect of KA-672 (0.1–10 mg/kg) was found, indicating a lack of inhibition…

MicrodialysisMicrodialysisPharmacologyHippocampal formationBiologyHippocampusPiperazineschemistry.chemical_compoundCerebrospinal fluidIn vivoExtracellular fluidmedicineAnimalsBenzopyransCerebral CortexGeneral NeuroscienceBrainAcetylcholinesteraseAcetylcholineRatsKineticsBiochemistrychemistryEnzyme inhibitorbiology.proteinAcetylcholinesteraseCholinesterase InhibitorsAcetylcholinemedicine.drugNeuroscience letters
researchProduct

Serotonin control of central dopaminergic function: focus on in vivo microdialysis studies

2008

In this review, the functional interactions between serotonin (5-HT) and dopamine (DA) neuronal systems are discussed with the focus on microdialysis studies in the rodent brain (mainly rats). 5-HT by itself is involved both directly and indirectly via actions on complex neuronal circuitry, in the regulation of DA release through multiple 5-HT receptors, playing a critical role in the development of normal and abnormal behaviours. Recent evidence suggests that dysfunction of dopaminergic and serotoninergic neurotransmitter systems contributes to various disorders including depression, schizophrenia, Parkinson's disease and drug abuse. Here we summarize recent neurochemical works that have e…

MicrodialysisNeurochemicalDopamineDopaminergicmedicineSerotoninPharmacologySerotonergicReceptorPsychologyNeuroscience5-HT receptormedicine.drug
researchProduct

In Vivo Microdialysis in Parkinson’s Research

2009

Parkinson’s disease (PD) is a progressive neurodegenerative disorder that is primarily characterized by the degeneration of dopamine (DA) neurons in the nigrostriatal system, which in turn produces profound neurochemical changes within the basal ganglia, representing the neural substrate for parkinsonian motor symptoms. The pathogenesis of the disease is still not completely understood, but environmental and genetic factors are thought to play important roles. Research into the pathogenesis and the development of new therapeutic intervention strategies that will slow or stop the progression of the disease in human has rapidly advanced by the use of neurotoxins that specifically target DA ne…

MicrodialysisParkinson's diseaseMPTPNigrostriatal pathwayBiologymedicine.diseasechemistry.chemical_compoundmedicine.anatomical_structureNeurochemicalchemistryIn vivoDopamineBasal gangliamedicineNeurosciencemedicine.drug
researchProduct

Acute Subdural Hematoma in Pigs: Role of Volume on Multiparametric Neuromonitoring and Histology

2008

Traumatic brain injury (TBI) is often complicated by acute subdural hemorrhage (ASDH) with a high mortality rate. The pathophysiological mechanisms behind such an injury type and the contribution of blood to the extent of an injury remain poorly understood. Therefore, the goals of this study were to establish a porcine ASDH model in order to investigate pathomechanisms of ASDH and to compare effects induced by blood or sheer volume. Thus, we infused 2, 5, and 9 mL of blood (up to 15% of intracranial volume), and we compared a 5-mL blood and paraffin oil volume to separate out effects of extravasated blood on brain tissue. An extended neuromonitoring was applied that lasted up to 12 h after …

MicrodialysisPathologymedicine.medical_specialtyIntracranial PressureSwineTraumatic brain injuryGlutamic AcidBrain EdemaLesionOxygen ConsumptionEvoked Potentials SomatosensorymedicineAnimalsHematoma Subdural AcuteLactic AcidCerebral perfusion pressureIntracranial pressurebusiness.industryBrainSubdural hemorrhagemedicine.diseasePathophysiologyOxygenDisease Models AnimalSomatosensory evoked potentialBrain InjuriesAnesthesiaNeurology (clinical)medicine.symptombusinessJournal of Neurotrauma
researchProduct

Quantitative In Vivo Microdialysis in Pharmacokinetic Studies

2012

MicrodialysisPharmacokineticsIn vivoChemistryPharmacology
researchProduct

Dual modulation of striatal acetylcholine release by hyperforin, a constituent of St. John's wort.

2002

Extracts of the medicinal plant St. John's wort (Hypericum perforatum) are widely used for the treatment of mild to moderate depression. Hyperforin, a constituent of St. John's wort, is known to inhibit the sodium-dependent uptake of catecholamines and amino acids into synaptic nerve endings, probably by interference with mechanisms controlling the synaptic sodium concentration. Because de novo synthesis of acetylcholine (ACh) is dependent on sodium-dependent high-affinity choline uptake, we studied the effect of hyperforin on choline (Ch) uptake in vitro and on striatal ACh release in vivo using microdialysis. In rat brain synaptosomes, hyperforin inhibited high-affinity choline uptake wit…

MicrodialysisPharmacologyMotor ActivityPhloroglucinolCholineRats Sprague-Dawleychemistry.chemical_compoundBridged Bicyclo CompoundsIn vivomedicineCholineAnimalsReceptors CholinergicIC50PharmacologyChemistryTerpenesHypericum perforatumBiological TransportAcetylcholineCorpus StriatumAnti-Bacterial AgentsRatsHyperforinSystemic administrationMolecular MedicineAcetylcholineHypericummedicine.drugThe Journal of pharmacology and experimental therapeutics
researchProduct

Effect Of Inflammatory Pain On Alcohol-Induced Dopamine Release In The Nucleus Accumbens: Behavioural Implications In Rat Models

2019

AbstractRecent studies have drawn the attention to the link between Alcohol Use Disorder (AUD) and the presence of pain. Indeed, the correct management of pain in patients with a previous history of AUD has been reported to decrease the risk of relapse in alcohol drinking, suggesting that in this prone population, pain may increase the vulnerability to relapse. Previous data in male rats revealed that inflammatory pain desensitizes mu opioid receptors (MORs) in the ventral tegmental area (VTA) and increases intake of high doses of heroine. Due to the relevant role of MORs in alcohol effects, we hypothesize that pain may also alter alcohol reinforcing properties and therefore affect alcohol …

Microdialysiseducation.field_of_studymedicine.medical_specialtybusiness.industryPopulationAlcohol use disorderNucleus accumbensmedicine.diseaseVentral tegmental areamedicine.anatomical_structureEndocrinologyNeurochemicalDopamineInternal medicineMedicineμ-opioid receptorbusinesseducationmedicine.drug
researchProduct

Stimulation of hippocampal acetylcholine release by hyperforin, a constituent of St. John’s Wort

2004

Abstract Extracts of the medicinal plant St. John’s Wort ( Hypericum perforatum ) are widely used in the therapy of affective disorders and have been reported to exert antidepressant, anxiolytic, and cognitive effects in experimental and clinical studies. We here report that hyperforin, the major active constituent of the extract, increases the release of acetylcholine from rat hippocampus in vivo as determined by microdialysis. Hippocampal acetylcholine levels were increased by 50–100% following the systemic administration of pure hyperforin at doses of 1 and 10 mg/kg. The effect was almost completely suppressed by local perfusion with calcium-free buffer or with tetrodotoxin (1 μM). We co…

Microdialysismedicine.drug_classMicrodialysisTetrodotoxinPhloroglucinolPharmacologyHippocampusAnxiolyticRats Sprague-DawleyBridged Bicyclo Compoundschemistry.chemical_compoundmedicineAnimalsAnesthetics LocalNeurotransmitterPlant ExtractsTerpenesGeneral NeuroscienceHypericum perforatumAcetylcholineAnti-Bacterial AgentsRatsHyperforinchemistryAntidepressantCholinergicHypericumAcetylcholinemedicine.drugNeuroscience Letters
researchProduct