IDENTIFYING CELLULAR AND MOLECULAR SUBSTRATES OF TREATMENT-RESISTANT DEPRESSION.
IDENTIFYING CELLULAR AND MOLECULAR SUBSTRATES OF TREATMENT-RESISTANT DEPRESSION.
批准号:
9815489
负责人:
Christoph Anacker
金额:
$24.9万
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:
2018-12-22 至 2021-11-30
关键词:
AgonistAntidepressive AgentsAnxietyAutopsyBehaviorBioinformaticsBrainBrain imagingBrain regionCalciumCharacteristicsChronicClinicalCognitionComplementComplexComputer SimulationCoupledCytoplasmic GranulesDataDevelopmentDevelopment PlansDiseaseDisease remissionEconomic BurdenFluoxetineFoundationsFutureGenesGenetic TranscriptionGoalsHeadHippocampus (Brain)HumanImageImage AnalysisIncidenceIndividualIndividual DifferencesInvestigationKnowledgeLeadLearningMediatingMediator of activation proteinMental DepressionMental HealthMental disordersMethodsMicroscopeMicroscopyMolecularMolecular AnalysisMoodsMusNeurobiologyNeuronsNeurosciencesNeurotransmittersPathogenesisPatientsPatternPharmaceutical PreparationsPharmacologyPharmacotherapyPhasePredispositionProcessPsychiatric therapeutic procedurePublic HealthResearchResearch PersonnelResearch Project GrantsResistanceRodent ModelRoleSamplingSelective Serotonin Reuptake InhibitorSerotoninSerotonin Receptor 5-HT1AShapesSignal PathwaySignal TransductionSignaling ProteinStressTechniquesTestingTrainingTransgenic MiceTranslatingTranslational ResearchWorkbasebehavior influencebehavioral responsebrain tissuecareercareer developmentcell typeclinically relevantdentate gyrusdesigner receptors exclusively activated by designer drugsdisabilityexperiencefluorescence imaginggranule cellhuman modelimprovedin vivoin vivo imaginginnovationinsightneural circuitneural networkneurobiological mechanismneuropsychopharmacologynovelnovel therapeuticsoverexpressionpublic health relevanceresponders and non-respondersresponsesensorskillsstress resiliencesuccesstherapy resistanttooltranscriptome sequencingtreatment responsetreatment-resistant depression
中文摘要
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英文摘要
Modified Project Summary/Abstract
My career goal is to lead a translational research team that uses cutting-edge neuroscience techniques to investigate conceptually novel leads into how mental illness develops and how it can be successfully treated. Specifically, I, and my future lab, will investigate how molecular signaling regulates dentate gyrus function to mediate stress resilience and antidepressant responses. My research strategy will integrate innovative molecular techniques and in vivo imaging in mice, with translational work in human brain samples to increase the clinical value of our findings. My primary expertise is in neuropsychopharmacology and my career development plan expands on these methods by providing essential new training in bioinformatics, in vivo brain imaging, and analysis of human postmortem brain tissue. My career goal is to integrate these techniques to generate unique insight into the exact neural circuits and neurobiological processes that lead to disease and that could be harnessed by novel treatments. My success as an independent researcher therefore depends on developing the skills that I propose to learn in this proposal.
Research Project
Identifying the neurobiological mechanisms that determine response and resistance to psychiatric treatment is of paramount importance for developing improved drugs and therapies. While substantial evidence from humans and rodent models has demonstrated a crucial role for the neurotransmitter, serotonin (5HT), in antidepressant action, it is unknown why some individuals respond to treatment with selective serotonin reuptake inhibitors (SSRIs) while others do not. This lack of knowledge limits the development of effective drugs that could specifically target neurobiological substrates that confer treatment response. Our work has revealed the serotonin 1A receptor (5HT1AR) in dentate gyrus granule neurons of the hippocampus as a crucial mediator for neuronal inhibition and behavioral responses to SSRIs. However, how 5HT1ARs regulate neuronal function to elicit an antidepressant response remains elusive. Leading on from these findings, we hypothesize that antidepressant responses are mediated by inhibition of dentate gyrus activity. To test this, we will first examine the complex molecular networks by which 5HT1AR signaling inhibits dentate gyrus activity in mice and in human postmortem brain tissue. Then, we will use chemogenetic techniques to counteract or stimulate neuronal inhibition in the dentate gyrus of transgenic mice that do or do not respond to antidepressants, respectively. Finally, we will use innovative in vivo microscopy to image neuronal activity in the dentate gyrus of freely behaving responders and non-responders during stress and anxiety-related tasks. This project will provide a comprehensive investigation into how we can develop advanced antidepressant treatments based on inhibition of dentate gyrus activity.
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会议论文
INVESTIGATING THE ROLE OF HIPPOCAMPUS - ORBITOFRONTAL CIRCUITS FOR COGNITIVE FLEXIBILITY
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批准号:10818808
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项目类别:
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资助金额:$16.55万
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财政年份:2023
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依托单位:
INVESTIGATING THE ROLE OF HIPPOCAMPUS - ORBITOFRONTAL CIRCUITS FOR COGNITIVE FLEXIBILITY
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批准号:10367493
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项目类别:
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资助金额:$64.83万
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财政年份:2022
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依托单位:
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批准号:10589862
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项目类别:
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财政年份:2022
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负责人:Christoph Anacker
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依托单位:
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批准号:9905429
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项目类别:
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资助金额:$2.24万
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依托单位:
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依托单位:
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项目类别:
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财政年份:2016
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依托单位:
Identifying cellular and molecular substrates of treatment-resistant depression.
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项目类别:
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资助金额:$12.63万
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负责人:Christoph Anacker
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依托单位: