Stress effects on circuitry regulating nigrostriatal dopamine during goal-directed action
Stress effects on circuitry regulating nigrostriatal dopamine during goal-directed action
批准号:
10680669
负责人:
Nick Garber Hollon
金额:
$24.9万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-09-15 至 2025-06-30
关键词:
AddressAffectAnatomyAnhedoniaAnimal ModelAnimalsAwardBehaviorCharacteristicsChronicChronic stressComplexCorpus striatum structureCosts and BenefitsCuesDataDecision MakingDopamineEducational process of instructingElectrophysiology (science)FoundationsFutureGoalsImpairmentIndividualInvestigationLeadLearningMajor Depressive DisorderMental DepressionMental HealthMental disordersMentorsMidbrain structureModernizationMotivationMovementMusNeuromodulatorNeuronsNeurosciencesOutcomePathway interactionsPerformancePeriodicityPhasePhysiologicalPlayPopulationPropertyReproducibilityResearchResponse to stimulus physiologyRewardsRodent ModelRoleScanningSchizophreniaSignal TransductionSourceStimulusStressSubstantia nigra structureSymptomsSystemTechnical ExpertiseTechniquesTestingTrainingUpdateVentral StriatumVentral Tegmental AreaViralWithdrawalWorkbasecareer developmentdepression modeldopaminergic neuronexperimental studyextracellularin vivoinsightmotivated behaviorneuropsychiatric disordernoveloptogeneticsoutcome predictionpars compactaprogramsresponsestress related disorderstressortooltransmission process
中文摘要
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英文摘要
Project Summary / Abstract
Chronic uncontrollable stress can precipitate or exacerbate many highly prevalent and debilitating
neuropsychiatric disorders such as major depression and schizophrenia. Such stress-related disorders often
share common motivational symptoms that result in reduced engagement in activities in pursuit of once-
desired outcomes. Dopamine plays critical roles in voluntary movement, motivation, and reward-based
learning, but its precise contribution to self-initiated goal-directed behavior remains poorly understood. The
dorsomedial striatum (DMS) is well established in supporting goal-directed behavior and receives prominent
dopaminergic input from the substantia nigra pars compacta (SNc). Anatomical inputs to these nigrostriatal
dopamine neurons have been identified, but little is known about how this circuitry regulates nigrostriatal
dopamine dynamics during goal-directed action. Furthermore, chronic stress manipulations in rodent models
have revealed complex effects of stress on the adjacent mesolimbic dopamine projections to the ventral
striatum, as well as structural and physiological alterations of corticostriatal inputs to the DMS. However, the
effects of stress on nigrostriatal dopamine and the circuitry regulating it during goal-directed behavior has not
been well characterized.
The proposed experiments therefore will address these critical gaps by examining nigrostriatal dopamine
transmission (Aim 1) and the striatonigral circuitry regulating these dopamine dynamics (Aim 2) in mice
performing goal-directed behavior. These K99 mentored phase experiments will entail the integration of
modern optogenetic techniques with the candidate's expertise in recording dopamine using fast-scan cyclic
voltammetry, and they will provide opportunities for acquiring advanced technical training with in vivo
electrophysiology and cutting-edge viral circuit-manipulation techniques under the guidance of Dr. Xin Jin
(mentor) and Dr. Ed Callaway (co-mentor). Training in this suite of systems neuroscience tools will permit
subsequent R00 independent phase investigations of how chronic stress alters the functional circuitry
regulating nigrostriatal dopamine during goal-directed actions and more complex cost-benefit decision making
(Aim 3). These experiments will entail distinct stress manipulations implemented following further guidance
from Dr. Byungkook Lim (consultant) and a novel decision-making task adapted from the candidate's doctoral
work examining decisions involving tradeoffs between reward and effort. Collectively, the research proposed in
this Pathway to Independence award will yield unprecedented insight into how chronic stress affects the
circuitry regulating an under-examined dopamine pathway in goal-directed behavior and action selection; it will
provide the technical training and career development to launch the candidate's independent research
program; and it will reveal important additional questions for future investigations of mechanisms supporting
motivated behavior and mental health.
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Stress effects on circuitry regulating nigrostriatal dopamine during goal-directed action
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批准号:10704758
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项目类别:
-
资助金额:$24.76万
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财政年份:2022
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负责人:Nick Garber Hollon
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依托单位:
Stress effects on circuitry regulating nigrostriatal dopamine during goal-directed action
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批准号:9908153
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项目类别:
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资助金额:$9.15万
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财政年份:2019
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负责人:Nick Garber Hollon
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依托单位:
Stress effects on circuitry regulating nigrostriatal dopamine during goal-directed action
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批准号:10405664
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项目类别:
-
资助金额:$2.93万
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财政年份:2019
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负责人:Nick Garber Hollon
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依托单位:
Influence of orbitofrontal cortex on mesolimbic dopamine and value-based choice.
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批准号:8715260
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项目类别:
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资助金额:$3.33万
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财政年份:2014
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负责人:Nick Garber Hollon
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依托单位:
海外基金