2019
Corticostriatal plasticity in the nucleus accumbens core
Bamford NS, Wang W. Corticostriatal plasticity in the nucleus accumbens core. Journal Of Neuroscience Research 2019, 97: 1559-1578. PMID: 31298422, PMCID: PMC6801067, DOI: 10.1002/jnr.24494.Peer-Reviewed Original ResearchConceptsPrefrontal cortical projectionsCortical projectionsNAc coreDrug reinstatementSaline-treated miceSpiny projection neuronsMotor learningNew therapeutic targetsNucleus accumbens coreUse of amphetaminesStriatal glutamateGlutamate releaseCortical stimulationPresynaptic depressionProjection neuronsStriatal circuitryD1 receptorsDrug challengeLocomotor sensitizationMale miceCorticostriatal plasticityGlutamatergic boutonsDopamine releaseNucleus accumbensParadoxical excitation
2018
GIRK currents in VTA dopamine neurons control the sensitivity of mice to cocaine-induced locomotor sensitization
Rifkin R, Huyghe D, Li X, Parakala M, Aisenberg E, Moss S, Slesinger P. GIRK currents in VTA dopamine neurons control the sensitivity of mice to cocaine-induced locomotor sensitization. Proceedings Of The National Academy Of Sciences Of The United States Of America 2018, 115: e9479-e9488. PMID: 30228121, PMCID: PMC6176583, DOI: 10.1073/pnas.1807788115.Peer-Reviewed Original ResearchConceptsVentral tegmental areaVentral tegmental area dopamine neuronsCocaine-induced locomotor sensitizationDopamine neuronsLocomotor sensitizationVTA dopamine neuronsSubstantia nigra pars compactaGIRK currentsG-protein-gated inwardly rectifying potassium channelsCocaine addictionReward circuitTegmental areaGIRK channelsEndosomal adaptor proteinTreat addictionGIRK3 subunitsNeural circuitsInwardly rectifying potassium channelsRectifying potassium channelsDopamineGABAAddictionSpike firingSource of inhibitionGIRK
2016
A Role for the GIRK3 Subunit in Methamphetamine-Induced Attenuation of GABAB Receptor-Activated GIRK Currents in VTA Dopamine Neurons
Munoz M, Padgett C, Rifkin R, Terunuma M, Wickman K, Contet C, Moss S, Slesinger P. A Role for the GIRK3 Subunit in Methamphetamine-Induced Attenuation of GABAB Receptor-Activated GIRK Currents in VTA Dopamine Neurons. Journal Of Neuroscience 2016, 36: 3106-3114. PMID: 26985023, PMCID: PMC4792929, DOI: 10.1523/jneurosci.1327-15.2016.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsAnimals, NewbornBaclofenDopamine AgentsDopaminergic NeuronsFemaleG Protein-Coupled Inwardly-Rectifying Potassium ChannelsGABA-B Receptor AgonistsHomeodomain ProteinsIn Vitro TechniquesMaleMembrane PotentialsMethamphetamineMiceMice, Inbred C57BLMice, TransgenicReceptors, GABA-BTime FactorsTranscription FactorsTyrosine 3-MonooxygenaseVentral Tegmental AreaConceptsVentral tegmental area DA neuronsVentral tegmental areaExposure to psychostimulantsDA neuronsGIRK3 subunitsVentral tegmental area dopamine neuronsRepeated exposure to psychostimulantsExposure to addictive drugsExcitation of DA neuronsGABAB receptorsReward neural circuitryMesolimbic dopamine systemG-protein-gated inwardly rectifying potassiumGIRK currentsLocomotor sensitizationMesocorticolimbic dopamineMethamphetamine-inducedPsychostimulant exposureReward circuitDopamine systemReward pathwayTegmental areaD1R-likeAddictive drugsAddictive behaviorsNicotine Modifies Corticostriatal Plasticity and Amphetamine Rewarding Behaviors in Mice1,2,3
Storey GP, Gonzalez-Fernandez G, Bamford IJ, Hur M, McKinley JW, Heimbigner L, Minasyan A, Walwyn WM, Bamford NS. Nicotine Modifies Corticostriatal Plasticity and Amphetamine Rewarding Behaviors in Mice1,2,3. ENeuro 2016, 3: eneuro.0095-15.2015. PMID: 26866057, PMCID: PMC4745180, DOI: 10.1523/eneuro.0095-15.2015.Peer-Reviewed Original ResearchMeSH KeywordsAction Potentialsalpha7 Nicotinic Acetylcholine ReceptorAmphetamineAnimalsCentral Nervous System StimulantsCholinergic NeuronsConditioning, OperantCorpus StriatumDrug-Seeking BehaviorFemaleMaleMiceMice, Inbred C57BLMotor ActivityMotor CortexNeural PathwaysNeuronal PlasticityNicotineNicotinic AgonistsReceptors, NicotinicRewardSelf AdministrationConceptsCorticostriatal activityAmphetamine challengeGlutamate releaseLocomotor sensitizationDirect pathway medium spiny neuronsAmphetamine-induced locomotor sensitizationActive cholinergic interneuronsAmphetamine-seeking behaviorSubsequent drug challengeMedium spiny neuronsActivity ex vivoNicotinic acetylcholine receptorsDrug-seeking behaviorPeriod of abstinenceSelf-administer amphetamineDrugs of abuseSelf-administering miceDrug-taking behaviorDwelling catheterAmphetamine withdrawalCholinergic interneuronsGlutamatergic activityPresynaptic depressionPotentiating responseSpiny neurons
2013
Acetylcholine Encodes Long-Lasting Presynaptic Plasticity at Glutamatergic Synapses in the Dorsal Striatum after Repeated Amphetamine Exposure
Wang W, Darvas M, Storey GP, Bamford IJ, Gibbs JT, Palmiter RD, Bamford NS. Acetylcholine Encodes Long-Lasting Presynaptic Plasticity at Glutamatergic Synapses in the Dorsal Striatum after Repeated Amphetamine Exposure. Journal Of Neuroscience 2013, 33: 10405-10426. PMID: 23785153, PMCID: PMC3685836, DOI: 10.1523/jneurosci.0014-13.2013.Peer-Reviewed Original ResearchMeSH KeywordsAcetylcholineAdrenergic Uptake InhibitorsAmphetamineAnimalsCholine O-AcetyltransferaseDependovirusElectrophysiological PhenomenaExcitatory Postsynaptic PotentialsGenetic VectorsGlutamic AcidInterneuronsLocomotionMaleMaze LearningMiceMice, Inbred C57BLMice, KnockoutMotor ActivityNeostriatumNeuronal PlasticityPostural BalanceReceptors, Dopamine D1Receptors, Dopamine D2Receptors, PresynapticSynapsesConceptsGlutamate releaseCorticostriatal activityDirect pathway medium spiny neuronsMedium spiny neuronsCorticostriatal terminalsAcetylcholine releaseAmphetamine treatmentAmphetamine challengePresynaptic depressionAmphetamine exposurePresynaptic potentiationChronic decreaseSpiny neuronsDrug challengeLocomotor sensitizationGlutamatergic synapsesBrain slicesCorticostriatal signalingParkinson's diseaseDorsal striatumLocomotor responseDopamine regulationDrug dependenceStriatal activityActive interneurons
2007
Role of Calcineurin in Nicotine-Mediated Locomotor Sensitization
Addy NA, Fornasiero EF, Stevens TR, Taylor JR, Picciotto MR. Role of Calcineurin in Nicotine-Mediated Locomotor Sensitization. Journal Of Neuroscience 2007, 27: 8571-8580. PMID: 17687035, PMCID: PMC6672935, DOI: 10.1523/jneurosci.2601-07.2007.Peer-Reviewed Original ResearchConceptsVentral tegmental areaEffects of nicotineLocomotor sensitizationCalcineurin inhibitorsRole of calcineurinInfusion of rapamycinCultured cortical neuronsSprague-Dawley ratsNicotine-mediated behaviorsCyclosporine administrationTegmental areaCortical neuronsDawley ratsFK-binding proteinActivation of calcineurinNicotineSensitizationCalcineurin activityInfusionIntracellular signalingAdministrationCalcineurinFK506InhibitorsDirect infusionInhibition of Cdk5 in the nucleus accumbens enhances the locomotor-activating and incentive-motivational effects of cocaine
Taylor JR, Lynch WJ, Sanchez H, Olausson P, Nestler EJ, Bibb JA. Inhibition of Cdk5 in the nucleus accumbens enhances the locomotor-activating and incentive-motivational effects of cocaine. Proceedings Of The National Academy Of Sciences Of The United States Of America 2007, 104: 4147-4152. PMID: 17360491, PMCID: PMC1820723, DOI: 10.1073/pnas.0610288104.Peer-Reviewed Original ResearchConceptsNucleus accumbensInhibition of Cdk5Progressive ratio scheduleStriatal dopamineLocomotor sensitizationCocaine exposureIncentive motivational effectsCocaine-induced locomotor sensitizationChronic cocaine exposureSaline-injected ratsSubsequent cocaine challengeRatio scheduleTranscription factor DeltaFosBCdk5 inhibitor roscovitineCyclin-dependent kinase 5Intra-NAc infusionsLong-term adaptationNAC infusionStriatal neuronsCocaine challengeCocaine injectionStimulant actionCocaine sensitizationLocomotor responseInfusion
2006
Human clock, PER1 and PER2 polymorphisms: lack of association with cocaine dependence susceptibility and cocaine-induced paranoia
Malison RT, Kranzler HR, Yang BZ, Gelernter J. Human clock, PER1 and PER2 polymorphisms: lack of association with cocaine dependence susceptibility and cocaine-induced paranoia. Psychiatric Genetics 2006, 16: 245-249. PMID: 17106427, DOI: 10.1097/01.ypg.0000242198.59020.ca.Peer-Reviewed Original ResearchConceptsSingle nucleotide polymorphismsNucleotide polymorphismsCircadian rhythm genesDrosophila melanogasterHuman orthologGenetic variationCocaine-induced paranoiaGenetic mechanismsRhythm genesGene single nucleotide polymorphismsPopulation comparisonsHuman clockLack of associationPotential involvementAllelic associationClinical featuresAllele frequenciesStimulant exposureBehavioral sensitizationLocomotor sensitizationPsychostimulant addictionDrug useClinical phenotypeCocaine dependencePER2 polymorphismsCocaine self-administration and locomotor sensitization are not altered in CART knockout mice
Steiner RC, Hsiung HM, Picciotto MR. Cocaine self-administration and locomotor sensitization are not altered in CART knockout mice. Behavioural Brain Research 2006, 171: 56-62. PMID: 16621045, DOI: 10.1016/j.bbr.2006.03.022.Peer-Reviewed Original ResearchConceptsKnockout miceLocomotor sensitizationCocaine-induced locomotor sensitizationAmphetamine-regulated transcriptEffects of psychostimulantsRange of dosesAcute cocaineBone resorptionAmphetamine injectionsNucleus accumbensIntravenous cocaineIntact animalsMiceCocaineSchedule of reinforcementInsulin regulationCART geneSensitizationWild-type siblingsPhysiological functionsRegulatory roleStriatumAccumbensPsychostimulantsRats
1999
Enhancement of Locomotor Activity and Conditioned Reward to Cocaine by Brain-Derived Neurotrophic Factor
Horger B, Iyasere C, Berhow M, Messer C, Nestler E, Taylor J. Enhancement of Locomotor Activity and Conditioned Reward to Cocaine by Brain-Derived Neurotrophic Factor. Journal Of Neuroscience 1999, 19: 4110-4122. PMID: 10234039, PMCID: PMC6782687, DOI: 10.1523/jneurosci.19-10-04110.1999.Peer-Reviewed Original ResearchConceptsBrain-derived neurotrophic factorDevelopment of sensitizationLocomotor sensitizationBDNF infusionNeurotrophic factorNucleus accumbensStimulant effectsInitial stimulant effectMesolimbic DA systemCocaine-induced locomotionVentral tegmental areaMesolimbic dopamine systemWild-type littermatesPsychomotor stimulant effectsBDNF administrationDopaminergic neuronsTegmental areaCocaine injectionCocaine dosesControl animalsDopamine systemLocomotor activityDrug rewardCR leverDA systemEnhanced responding for conditioned reward produced by intra-accumbens amphetamine is potentiated after cocaine sensitization
Taylor J, Horger B. Enhanced responding for conditioned reward produced by intra-accumbens amphetamine is potentiated after cocaine sensitization. Psychopharmacology 1999, 142: 31-40. PMID: 10102780, DOI: 10.1007/s002130050859.Peer-Reviewed Original ResearchConceptsIntra-accumbens amphetamineIntra-NAc amphetamineCocaine sensitizationLocomotor sensitizationNucleus accumbensCR leverLong-term neuronal adaptationsSaline-treated groupMesolimbic dopamine systemStimulant drug useSaline infusionSaline injectionDopamine systemPsychomotor stimulantsDrug useNeuronal adaptationConditioned rewardStimulant drugsAmphetaminePrior exposureSensitizationTest daySeparate groupsNCR leverPredictive associations
1997
(S)-(−)-HA-966, a γ-Hydroxybutyrate-Like Agent, Prevents Enhanced Mesocorticolimbic Dopamine Metabolism and Behavioral Correlates of Restraint Stress, Conditioned Fear and Cocaine Sensitization 1
Morrow B, Lee E, Taylor J, Elsworth J, Nye H, Roth R. (S)-(−)-HA-966, a γ-Hydroxybutyrate-Like Agent, Prevents Enhanced Mesocorticolimbic Dopamine Metabolism and Behavioral Correlates of Restraint Stress, Conditioned Fear and Cocaine Sensitization 1. Journal Of Pharmacology And Experimental Therapeutics 1997, 283: 712-721. PMID: 9353390, DOI: 10.1016/s0022-3565(24)37094-6.Peer-Reviewed Original ResearchConceptsHA-966Dopamine metabolismMedial prefrontal cortexCocaine sensitizationNucleus accumbensHigh doseAcute cocaine-induced locomotionPrefrontal cortexGABAB receptor bindingCocaine-induced locomotionGamma-aminobutyric acidStress-induced increaseFear-inducing behaviorDopamine utilizationGABAB receptorsRestraint stressControl ratsLocomotor sensitizationDopaminergic neurotransmissionShell subdivisionBaclofen bindingCortical membranesPositive enantiomerWeight gainReceptor binding
1995
R-(+)-HA-966, an antagonist for the glycine/NMDA receptor, prevents locomotor sensitization to repeated cocaine exposures
Morrow B, Taylor J, Roth R. R-(+)-HA-966, an antagonist for the glycine/NMDA receptor, prevents locomotor sensitization to repeated cocaine exposures. Brain Research 1995, 673: 165-169. PMID: 7757472, DOI: 10.1016/0006-8993(94)01456-r.Peer-Reviewed Original ResearchConceptsGlycine/NMDA receptorHA-966Locomotor sensitizationLocomotor activationNMDA receptorsCocaine administrationSubsequent challenge doseLocomotor stimulant propertiesNMDA receptor complexAcute stimulant effectsChallenge doseReverse toleranceRepeated administrationAcute doseCocaine exposureStimulant effectsGlycine receptorsStimulant propertiesCocaineSensitizationAdministrationReceptorsReceptor complexAntagonistDose
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