Cre recombinase mediated deletion of BDNF in dopamine neurons
Cre recombinase mediated deletion of BDNF in dopamine neurons
批准号:
8336504
负责人:
Cristina Backman
金额:
$85.45万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
AblationAdultAffectAreaBehavioralBrainBrain regionBrain-Derived Neurotrophic FactorCell NucleusDevelopmentDopamineEnvironmentExcitatory SynapseKnockout MiceLearningMedialMediatingMemoryMidbrain structureMotivationMusNeuronsNeurotrophic Tyrosine Kinase Receptor Type 2Nucleus AccumbensOrganismOutcomeOutputPathway interactionsPopulationPrefrontal CortexProteinsRewardsShapesStimulusSubstantia nigra structureSynaptic plasticitySystemTransgenic MiceVentral Tegmental Areaanterograde transportcocaine exposuredopamine transporterdopaminergic neurondrug seeking behaviormature animalmouse modelneurotransmissionneurotrophic factorparacrinerecombinaseresponseretrograde transportsynaptogenesistool
中文摘要
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英文摘要
We have developed a mouse model in which dopamine neurons lack the ability to synthesize BDNF (BDNF knockout mice), by expressing Cre recombinase through the dopamine transporter locus in a BDNF loxP transgenic mouse. This mouse model provides a tool to determine how BDNF synthesized exclusively in DA neurons contributes to the shaping and function of the dopaminergic system. BDNF is highly expressed in midbrain DA neurons, and as a secreted molecule it could act on DA neurons, as a paracrine factor, or have an effect on surrounding neurons and in target areas by anterograde transport. We intend to utilize the BDNF knockout mouse model to determine how the ablation of BDNF in DA neurons affects the state of midbrain dopaminergic neurotransmission during development and in adult animals. In addition, as expression of BDNF in DA neurons has been shown to shape the neuro-plasticity observed during learning and reward, we intend to define how the lack of BDNF exclusively in DA neurons may affect behavioral outputs related to the reward system, and to define what cellular mechanisms and pathways intrinsic to DA neurons may be directly affected by BDNF expression.
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财政年份:--
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依托单位:
海外基金