Gut to brain pathways regulating conditioned appetitive behavior
Gut to brain pathways regulating conditioned appetitive behavior
批准号:
9763329
负责人:
Andrea Suarez
金额:
$2.28万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-09-01 至 2020-06-01
关键词:
AblationAddressAnatomyAppetitive BehaviorBehavioralBehavioral ParadigmBrainBrain StemBrain regionCell NucleusCholecystokininChronicCognitionCommunicationComorbidityConsumptionCuesDataDesire for foodDevelopmentEatingElectric StimulationEndocrineEnergy IntakeEnterobacteria phage P1 Cre recombinaseEpisodic memoryFeeding behaviorsFoodGastrointestinal PhysiologyGastrointestinal tract structureGoalsHealthHippocampus (Brain)HumanHungerHypertensionHypothalamic structureImpaired cognitionImpairmentInfusion proceduresInjectionsLateralLearningLesionLinkMeasuresMedialMediatingMemoryMethodologyMicrogliaModernizationMolecularMotorNeural PathwaysNeurobiologyNeuronal PlasticityNeuronsNodose GanglionNon-Insulin-Dependent Diabetes MellitusNutrientObesityObesity EpidemicOperative Surgical ProceduresOutcomePathway interactionsPhysiologicalPrevalenceProcessProsencephalonRattusRewardsRodentRoleSatiationSensorySignal TransductionSiteStimulusStomachStructureSystemUnited StatesUpper digestive tract structureVagotomyVagus nerve structureViralVisuospatialafferent nervebariatric surgerybasebrain pathwaycombatdesignexperimental studyfeedingfood environmentgastrointestinalhindbraininnovationmemory processneurobiological mechanismneurogenesisneurotransmissionnovelnovel strategiesobesity treatmentprotein expressionrelating to nervous systemsensory inputsocialspatial memorytrendvagus nerve stimulation
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英文摘要
7. Project Summary/Abstract
Over the past 35 years obesity rates have more than doubled in the United States, an outcome based largely on
increased caloric consumption. The modern food environment is abundant with stimuli associated with
rewarding food, and through learned associations these stimuli can override physiological satiation and satiety
cues and trigger excessive food seeking and consumption. The hippocampus is a brain region traditionally
linked with memory function and more recently with the higher-order learned control of both normal and
excessive feeding behavior. Hippocampal neurons receive GI-derived satiation- and satiety-related signaling, in
part, from the vagus nerve, as vagally-mediated satiation signals robustly activate hippocampal neurons. The
role of GI-derived vagal signaling in regulating higher-order learned aspects of food intake control, however, is
poorly understood. Furthermore, the structural connectivity mediating interactions between GI physiology and
the hippocampus remains unexplored. Preliminary data in this proposal implicate a role of vagus nerve sensory
signaling in hippocampal-dependent memory processes in rats. The principle goals of this proposal are to
investigate the novel hypotheses that ablation of gastrointestinal (GI)-derived vagal sensory nerve disruption
will negatively impact hippocampal-dependent learned control of appetitive behavior, accompanied by
reductions in markers of neural plasticity and neurogenesis in hippocampal neurons (Aim 1). Additional
experiments will utilize viral-based neuroanatomical methodologies to identify the multisynaptic/indirect
pathways through which GI-derived vagal nerve signaling communicates to the hippocampus (Aim 2). To
address these hypotheses, experiments in Aim 1 will utilize a novel and sophisticated surgical lesion of ~80% of
GI-derived vagal afferent nerves, while leaving 100% of vagal motor signaling intact (CCK-saporin nodose
ganglia injections) in combination with an array of rodent behavioral paradigms that examine hippocampal-
dependent appetitive learning based on [1] interoceptive cues related to energy status, [2] external food
reward-based contextual processing, and [3] social food-related cues. Aim 2 will utilize an innovative
coinjection (COIN) neural tracing and dual viral tracing strategies to determine potential relay brain regions
that connect vagal sensory signaling with hippocampal neurons. Collectively studies will identify behavioral,
anatomical, and molecular mechanisms through which the vagus nerve influences cognition and feeding
behavior.
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会议论文
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批准号:10313953
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项目类别:
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资助金额:$1.16万
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财政年份:2022
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负责人:Andrea Suarez
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依托单位:
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批准号:7409792
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项目类别:
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财政年份:2008
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负责人:Andrea Suarez
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依托单位:
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批准号:7617835
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项目类别:
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资助金额:$0.84万
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财政年份:2008
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负责人:Andrea Suarez
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依托单位:
海外基金