0000000000188442

AUTHOR

María José Sánchez-catalán

0000-0002-3114-7940

showing 7 related works from this author

Opposite motor responses elicited by ethanol in the posterior VTA: The role of acetaldehyde and the non-metabolized fraction of ethanol

2013

Recent electrophysiological evidence suggests that ethanol simultaneously exerts opposite effects on the activity of dopamine (DA) neurons in the ventral tegmental area (VTA) through two parallel mechanisms, one promoting and the other reducing the GABA release onto VTA DA neurons. Here we explore the possible behavioural implications of these findings by investigating the role displayed by acetaldehyde (the main metabolite of ethanol) and the non-metabolized fraction of ethanol in motor activity of rats. We analyse the appearance of motor activation or depression after intra-VTA administration of ethanol in rats subjected to different pharmacological pre-treatments designed to preferential…

MaleMicroinjectionsMetaboliteGABA(A) receptorsAcetaldehydePharmacologyMotor ActivityNon-metabolized fraction of ethanolBicucullineCellular and Molecular Neurosciencechemistry.chemical_compoundDopaminemedicineAnimalsGABA-A Receptor AntagonistsEnzyme InhibitorsRats WistarPharmacologyEthanolDose-Response Relationship DrugEthanolChemistryGABAA receptorVentral Tegmental AreaAcetaldehydeCentral Nervous System DepressantsBicucullineRatsVentral tegmental areaElectrophysiologymedicine.anatomical_structureBiochemistrynervous systemCyanamideVTAmedicine.drug
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Local salsolinol modulates dopamine extracellular levels from rat nucleus accumbens: shell/core differences.

2008

Salsolinol (SAL), a condensation product of dopamine and acetaldehyde that appears in the rat and human brain after ethanol ingestion, has been largely implicated in the aetiology of alcoholism. Although the behavioural consequences of systemic or intracerebral SAL administrations have been described, the neurochemical effects of pharmacologically relevant doses of SAL and other tetrahydroisoquinolines (THIQs) in the brain areas involved in alcohol addiction are practically unknown. To gain an insight into this topic, male Wistar rats were stereotaxically implanted with one concentric microdialysis probe in either the shell or the core of the nucleus accumbens (NAc). Treatments involved loc…

MaleMicrodialysisDopamineMicrodialysisDown-RegulationAcetaldehydePharmacologyNucleus accumbensSynaptic TransmissionNucleus AccumbensCellular and Molecular Neurosciencechemistry.chemical_compoundNeurochemicalAlcohol-Induced Disorders Nervous SystemRewardDopamineparasitic diseasesBasal gangliamedicineAnimalsEthanol metabolismRats WistarNeurotransmitterChromatography High Pressure LiquidDose-Response Relationship DrugEthanolChemistryExtracellular FluidCell BiologyIsoquinolinesRatsUp-RegulationAlcoholismCatecholamineNeurosciencemedicine.drugNeurochemistry international
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Revisiting the controversial role of salsolinol in the neurobiological effects of ethanol: old and new vistas.

2011

The possible involvement of salsolinol (Sal), an endogenous condensation product of ACD (the first metabolite of ethanol) and dopamine, in the neurochemical basis underlying ethanol action has been repeatedly suggested although it has not been unequivocally established, still being a controversial matter of debate. The main goal of this review is to evaluate the presumed contribution of Sal to ethanol effects summarizing the reported data since the discovery in the 1970s of Sal formation in vitro during ethanol metabolism until the more recent studies characterizing its behavioral and neurochemical effects. Towards this end, we first analyze the production and detection of Sal, in different…

Injury controlAlcohol DrinkingAccident preventionCognitive NeurosciencePoison controlMotor ActivityBehavioral Neurosciencechemistry.chemical_compoundNeurochemicalNeurobiologyDopamineparasitic diseasesmedicineAnimalsHumansEthanol metabolismEthanolEthanolBrainStereoisomerismIsoquinolinesNeuropsychology and Physiological PsychologychemistryAnesthesiaConditioning OperantPsychologyNeuroscienceAlcohol consumptionmedicine.drugNeuroscience and biobehavioral reviews
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Systemic administration of D-penicillamine prevents the locomotor activation after intra-VTA ethanol administration in rats.

2010

Although recently published studies seem to confirm the important role displayed by acetaldehyde (ACH), the main metabolite of ethanol, in the behavioral effects of ethanol, the origin of ACH is still a matter of debate. While some authors confer more importance to the central (brain metabolism) origin of ACH, others indicate that the hepatic origin could be more relevant. In this study we have addressed this topic using an experimental approach that combines local microinjections of ethanol into the ventral tegmental area (VTA) (which guarantees the brain origin of the ACH) to induce motor activation in rats together with systemic administration (i.p.) of several doses (0, 12.5, 25 and 50 …

AgonistLocomotor activityMalemedicine.drug_classMetaboliteCentral nervous systemAcetaldehydePharmacologyMotor Activitychemistry.chemical_compoundAlcohol-Induced Disorders Nervous SystemmedicineAnimalsRats WistarReceptorEthanolGeneral NeurosciencePenicillamineD-PenicillaminePenicillamineVentral Tegmental AreaCentral Nervous System DepressantsRatsVentral tegmental areaDAMGOBrain metabolism of ethanolDisease Models Animalmedicine.anatomical_structurechemistryBiochemistrySystemic administrationVTAmedicine.drugNeuroscience letters
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Shell/core differences in mu- and delta-opioid receptor modulation of dopamine efflux in nucleus accumbens

2008

The mu- and delta-opioid receptors located at the terminal level in nucleus accumbens are involved in the opiate modulation of dopamine release in this brain area. However, recent studies suggest that the effects of opioid drugs on the core subregion of nucleus accumbens may completely differ from those observed in the shell. We used in vivo microdialysis to simultaneously apply selective mu- and delta-opioid receptor agonists and to measure extracellular levels of dopamine in three subregions of the accumbens, namely shell, core, and the transition zone between them. The regional analysis of these subregions of the accumbens demonstrated that basal levels of dopamine and its metabolites we…

MaleAgonistTime FactorsEnkephalinmedicine.drug_classDopamineMicrodialysisReceptors Opioid muPharmacologyNucleus accumbensNucleus Accumbensδ-opioid receptorCellular and Molecular Neurosciencechemistry.chemical_compoundDopamine receptor D1DopamineReceptors Opioid deltamedicineAnimalsRats WistarPharmacologyDopaminergicHomovanillic AcidEnkephalin Ala(2)-MePhe(4)-Gly(5)-RatsAnalgesics OpioidDAMGOchemistry34-Dihydroxyphenylacetic AcidEnkephalin D-Penicillamine (25)-medicine.drugNeuropharmacology
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Induction of conditioned place preference and dopamine release by salsolinol in posterior VTA of rats: involvement of μ-opioid receptors.

2011

Salsolinol (Sal), locally administered into the posterior VTA (pVTA) of rats, produces psychomotor responses and reinforcing effects, probably, through the activation of μ-opioid receptors (MORs). The neurochemical correlates of these phenomena are, however, practically unknown. In this paper, we explore the neurochemical events and the mechanisms involved in these behaviors. To do that, we test the ability of Sal, directly microinjected into the pVTA, to induce conditioned place preference (CPP) and to increase dopamine levels in the nucleus accumbens shell. Bilateral injections of 30 pmol of Sal induced a strong CPP (rats spent around 70% of the total test time), a result that could be ex…

MaleMicrodialysismedicine.medical_specialtyMicroinjectionsDopamineMicrodialysisNarcotic AntagonistsReceptors Opioid muNucleus accumbensNucleus AccumbensCellular and Molecular NeuroscienceNeurochemicalDopamineInternal medicineparasitic diseasesmedicineLimbic SystemAnimalsRats WistarChemistryVentral Tegmental AreaAntagonistCell BiologyIsoquinolinesConditioned place preferenceNaltrexoneRatsVentral tegmental areamedicine.anatomical_structureEndocrinologynervous systemOpioidConditioning OperantNeurosciencemedicine.drugNeurochemistry international
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Induction of brain CYP2E1 changes the effects of ethanol on dopamine release in nucleus accumbens shell.

2009

CYP2E1 is an important enzyme involved in the brain metabolism of ethanol that can be induced by chronic consumption of alcohol. Recent works have highlighted the importance of this system in the context of the behavioural effects of ethanol. Unfortunately, the underlying neurochemical events for these behavioural changes, has not been yet explored. In this work, we have started this exploration by analyzing the possible changes in the neurochemical response of the mesolimbic system to ethanol after pharmacological induction of brain CYP2E1. We have used the dopamine extracellular levels in nucleus accumbens (NAc) core and shell, measured by means of microdialysis in vivo, as an index of th…

MaleMicrodialysisDopamineContext (language use)Nucleus accumbensPharmacologyToxicologyNucleus Accumbenschemistry.chemical_compoundNeurochemicalDopaminemedicineAnimalsPharmacology (medical)Rats WistarNeurotransmitterInfusions IntravenousPharmacologyEthanolEthanolBrainCytochrome P-450 CYP2E1RatsPsychiatry and Mental healthchemistryEnzyme InductionCatecholamineNeurosciencemedicine.drugDrug and alcohol dependence
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