Search results for "quinpirole"

showing 8 items of 8 documents

Anti-anhedonic actions of the novel serotonergic agent flibanserin, a potential rapidly-acting antidepressant

1998

Chronic exposure to mild unpredictable stress has previously been found to depress the consumption of palatable sweet solutions and to block the formation of conditioned place preferences; these effects are reversed by chronic treatment with tricyclic or atypical antidepressant drugs. The present study was designed to evaluate the antidepressant-like activity in this model of flibaserin (BIMT-17), a novel serotonergic agent with 5-HT1A receptor agonist and 5-HT2 receptor antagonist properties. Two experiments were conducted, using rats (experiment 1) and mice (experiment 2). In experiment 1, decreases in sucrose intake were seen in rats exposed to chronic mild stress, but the effect was unr…

MaleAgonistSucrosemedicine.medical_specialtyQuinpirolemedicine.drug_classMotor ActivityMiceSerotonin AgentsQuinpiroleDopamine receptor D3Dopamine receptor D2Internal medicineSalicylamidesmedicineAnimalsRats WistarPharmacologyRacloprideFluoxetinebusiness.industryBody WeightFeeding BehaviorConditioned place preferenceRatsEndocrinologyRacloprideAntidepressive Agents Second-GenerationConditioning OperantDopamine AntagonistsFlibanserinBenzimidazolesbusinessStress Psychologicalmedicine.drugEuropean Journal of Pharmacology
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Effects of Intraaccumbens Microinjections of Quinpirole on Head Turning and Circling Movement in the Rat

1998

This study was designed to evaluate whether nucleus accumbens dopamine D2 receptors are involved in the initiation of the movement, as distinguished from its execution. For this purpose, the effects of the quinpirole-induced increase of nucleus accumbens dopamine D2 receptor activity were observed on specific parameters of the circling behavior and of its first stage, the head-turning (HT) movement. The experiments were performed on rats with unilateral 6-hydroxydopamine (6-OHDA) lesion of the pars compacta of the substantia nigra and d-amphetamine i.p. (3 mg/kg). Bilateral intraaccumbens microinjections of quinpirole (1, 5, and 10 microg/0.5 microl), an agonist of the D2 receptor family, w…

Malemedicine.medical_specialtyDextroamphetamineQuinpiroleMicroinjectionsClinical BiochemistrySubstantia nigraNucleus accumbensToxicologyBiochemistryNucleus AccumbensBehavioral NeuroscienceQuinpiroleDopamine Uptake InhibitorsDopamine receptor D2Internal medicineBasal gangliamedicineAnimalsRats WistarOxidopamineBiological PsychiatryPharmacologyDose-Response Relationship DrugPars compactaChemistrySympathectomy ChemicalDextroamphetamineBody movementRatsEndocrinologyDopamine AgonistsSympatholyticsStereotyped BehaviorNeurosciencemedicine.drugPharmacology Biochemistry and Behavior
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Addictive-like behaviour for Acetaldehyde: involvement of D2 receptors

2013

Acetaldehyde (ACD), ethanol's first metabolite, is centrally active and shows rewarding and motivational properties. It is able to activate mesolimbic dopamine system, since it enhances neuronal firing of dopamine cells in ventral tegmental area and exerts dopamine release in the nucleus accumbens (Foddai et al., 2004; Melis et al., 2007; Deehan et al., 2013). ACD motivational properties are demonstrated by self-administration studies in rodents (Rodd et al., 2005), particularly behavioural evidence suggests that ACD could produce positive reinforcing effects in operant-conflict paradigms (Cacace et al., 2012). In order to shed light on neurobiological substrate underpinning ACD-related beh…

Acetaldehyde Dopamine system Quinpirole Ropinirole D2 D2-autoreceptors modulation
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Dopaminergic modulation of low-Mg2+-induced epileptiform activity in the intact hippocampus of the newborn mouse in vitro

2012

To investigate whether epileptiform activity in the immature brain is modulated by dopamine, we examined the effects of dopaminergic agonists and antagonists in an intact in vitro preparation of the isolated corticohippocampal formation of immature (postnatal days 3 and 4) C57/Bl6 mice using field potential recordings from CA3. Epileptiform discharges were induced by a reduction of the extracellular Mg(2+) concentration to 0.2 mM. These experiments revealed that low concentrations of dopamine ( 3 μM dopamine enhanced epileptiform activity. The D1-agonist SKF38393 (10 μM) had a strong proconvulsive effect, and the D2-like agonist quinpirole (10 μM) mediated a weak anticonvulsive effect. The …

AgonistChemistrymedicine.drug_classAntagonistPharmacologyReceptor antagonistCellular and Molecular NeuroscienceQuinpiroleDopamine receptorDopamine receptor D3DopaminemedicineSulpiridemedicine.drugJournal of Neuroscience Research
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A subset of ventral tegmental area dopamine neurons responds to acute ethanol

2015

The mechanisms by which alcohol drinking promotes addiction in humans and self-administration in rodents remain obscure, but it is well known that alcohol can enhance dopamine (DA) neurotransmission from neurons of the ventral tegmental area (VTA) and increase DA levels within the nucleus accumbens and prefrontal cortex. We recorded from identified DA neuronal cell bodies within ventral midbrain slices prepared from a transgenic mouse line (TH-GFP) using long-term stable extracellular recordings in a variety of locations and carefully mapped the responses to applied ethanol (EtOH). We identified a subset of DA neurons in the medial VTA located within the rostral linear and interfascicular n…

Patch-Clamp TechniquesGreen Fluorescent ProteinsAction PotentialsMice TransgenicNucleus accumbensNeurotransmissionArticleTissue Culture TechniquesMidbrainQuinpiroleDopamineDopamine receptor D2mental disordersmedicineAnimalsDose-Response Relationship DrugEthanolChemistryDopaminergic NeuronsGeneral NeuroscienceVentral Tegmental AreaCentral Nervous System DepressantsMice Inbred C57BLVentral tegmental areamedicine.anatomical_structurenervous systemNeuronNeurosciencemedicine.drugNeuroscience
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Response to dopamine agonists of the rat isolated uterus.

1993

1. Quinpirole did not produce any effect in isolated uterus from oestrogenized rats even when it is contracted by KCl (37 mM). 2. Fenoldopam produced a relaxant effect on rat isolated uterus contracted by KCl which was not significantly modified by SCH 23390. 3. Reserpine decreased the effect of the lowest doses of fenoldopam. In reserpinized rats, propranolol (10(-9), 10(-8), 10(-7) M) antagonized the effect of the lowest doses of fenoldopam and neither SCH 23390, sulpiride nor ranitidine modified the effect of fenoldopam. 4. The results confirm our previous finding that DA1-receptors are not functional in our preparation. The effect of fenoldopam was partially due to a catecholamine-relea…

medicine.medical_specialtySerotoninQuinpiroleReserpineFenoldopamDopamine AgentsUterusPropranololPharmacologyFenoldopamIn Vitro TechniquesDopamine agonistchemistry.chemical_compoundUterine ContractionQuinpiroleCatecholaminesInternal medicineReceptors Adrenergic betamedicineAnimalsErgolinesRats WistarPharmacologySCH-23390ChemistryReserpineAcetylcholineRatsEndocrinologymedicine.anatomical_structureFemale2345-Tetrahydro-78-dihydroxy-1-phenyl-1H-3-benzazepineSulpiridemedicine.drugGeneral pharmacology
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Involvement of Dopamine D2 Receptors in Addictive-Like Behaviour for Acetaldehyde

2014

Acetaldehyde, the first metabolite of ethanol, is active in the central nervous system, where it exerts motivational properties. Acetaldehyde is able to induce drinking behaviour in operant-conflict paradigms that resemble the core features of the addictive phenotype: drug-intake acquisition and maintenance, drug-seeking, relapse and drug use despite negative consequences. Since acetaldehyde directly stimulates dopamine neuronal firing in the mesolimbic system, the aim of this study was the investigation of dopamine D2-receptors' role in the onset of the operant drinking behaviour for acetaldehyde in different functional stages, by the administration of two different D2-receptor agonists, q…

MaleIndoleslcsh:MedicinePharmacologyBehavioral Neurosciencechemistry.chemical_compoundquinpiroleMedicine and Health Scienceslcsh:ScienceNeuropharmacologyDrug DependenceMultidisciplinaryDopaminergicD2 dopamine receptorsAcetaldehyde; Operant self-administration; D2 dopamine receptors; quinpiroleNeurologyBehavioral PharmacologyDopamine AgonistsSignal TransductionResearch Articlemedicine.drugAlcohol DrinkingDrug-Seeking BehaviorAcetaldehydeAddictive-Like BehaviourNeuropharmacologyQuinpiroleDopamineDopamine receptor D2medicineAnimalsRats WistarAcetaldehyde; Addictive-Like Behaviour; Dopamine D2 ReceptorsPharmacologyOperant self-administrationEthanolReceptors Dopamine D2Neurotransmissionlcsh:RAcetaldehydeBiology and Life SciencesDopamine D2 ReceptorsRatsRopinirolePharmacodynamicschemistrySettore BIO/14 - FarmacologiaConditioning Operantlcsh:QNeurosciencePLoS ONE
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Modulation of high impulsivity and attentional performance in rats by selective direct and indirect dopaminergic and noradrenergic receptor agonists

2011

Rationale Impulsivity is associated with a number of psychiatric disorders, most notably attention deficit/hyperactivity disorder (ADHD). Drugs that augment catecholamine function (e.g. methylphenidate and the selective noradrenaline reuptake inhibitor atomoxetine) have clinical efficacy in ADHD, but their precise mechanism of action is unclear. Objective The objective of this study is to investigate the relative contribution of dopamine (DA) and noradrenaline (NA) to the therapeutic effects of clinically effective drugs in ADHD using rats selected for high impulsivity on the five-choice serial reaction time task (5CSRTT). Methods We examined the effects of direct and indirect DA and NA rec…

MaleImpulsivityQuinpiroleDopamineSerial LearningAtomoxetine HydrochlorideImpulsivityChoice BehaviorPiperazines03 medical and health sciences0302 clinical medicineQuinpiroleDopaminemental disordersAnimals Outbred StrainsReaction TimemedicineAnimalsAttentionOriginal InvestigationPharmacologyPropylaminesMethylphenidateDopaminergicAtomoxetineGBR-12909Adrenergic AgonistsGuanfacineRats030227 psychiatry3. Good healthGuanfacineSumaniroleFive-choice serial reaction time taskAtomoxetine; Dopamine; Five-choice serial reaction time task; GBR-12909; Guanfacine; Impulsivity; Methylphenidate; Noradrenaline; Quinpirole; Sumanirole; Adrenergic Agonists; Animals; Animals Outbred Strains; Atomoxetine Hydrochloride; Attention; Benzimidazoles; Choice Behavior; Dopamine Agonists; Guanfacine; Impulsive Behavior; Male; Methylphenidate; Piperazines; Propylamines; Quinpirole; Rats; Reaction Time; Serial Learning; PharmacologyAnesthesiaDopamine AgonistsImpulsive BehaviorNoradrenalineAtomoxetineMethylphenidateBenzimidazolesmedicine.symptomPsychologyNeuroscience030217 neurology & neurosurgerymedicine.drugAtomoxetine hydrochloride
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