The Role of Posterior Striatum Projecting Dopamine Neurons in Associative Fear Learning
The Role of Posterior Striatum Projecting Dopamine Neurons in Associative Fear Learning
批准号:
470520017
负责人:
Dr. Sevil Duvarci
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
联想学习使动物能够从经验中学习,因此对于在不断变化的环境中做出适应性反应至关重要。特别是,学习哪些刺激预测危险的能力对于生存至关重要。 在实验室中,这种联想学习是使用经典的恐惧条件反射来模拟的,其中最初的中性刺激(条件刺激,CS)在与令人厌恶的结果(无条件刺激,US)配对后引起恐惧反应。值得注意的是,它的临床意义使恐惧条件反射成为一个深入研究的范式,因为许多证据表明焦虑症,如创伤后应激障碍(PTSD),是由介导联想恐惧学习的脑回路失调引起的。因此,了解恐惧学习背后的神经机制对于更好地理解焦虑症的病理生理学至关重要,并有助于开发新的治疗策略。联想学习,如恐惧条件反射,是由预测错误(PE)驱动的,它作为教学信号来指导新的学习。多巴胺(DA)神经元编码PE信号来驱动联想奖励学习是公认的。重要的是,最近的证据表明,DA神经元编码的预测错误不仅是奖励,也是令人厌恶的结果。纹状体是DA神经元的主要投射靶区;然而,投射到纹状体的DA神经元,特别是纹状体的特定亚区,是否参与联想恐惧学习仍然是难以捉摸的。最近的研究已经确定了一个独特的亚群DA神经元的基础上,他们的输入输出组织。这些DA神经元选择性地投射到纹状体的一个不同的细分,纹状体的后尾(pTS),并被新的和高强度的刺激强烈激活。此外,它们被证明可以加强对威胁的回避。然而,这些DA神经元是否是联想恐惧学习所必需的,目前尚不清楚。我们假设pTS投射DA神经元编码一个厌恶的PE信号,这是必要的收购联想恐惧学习。解决这一假设将是本提案的主要目标。为此,我们将使用DA生物传感器进行投影特异性活性依赖性钙记录,时间精确的光遗传学操作以及DA释放的测量。这些数据将首次揭示pTS投射DA神经元在联想恐惧学习中的关键作用。此外,我们将进一步研究DA输入的pTS神经元在联想恐惧学习的活动中的作用,以阐明DA如何调节纹状体活动,从而使学习。综上所述,我们希望我们的研究结果将确定一个新的作用的pTS投射DA神经元,并进一步表明,一个独特的中纹状体电路是至关重要的联想恐惧学习。
英文摘要
Associative learning enables animals to learn from experience, and thus is essential for adaptive responding in an ever-changing environment. In particular, the ability to learn which stimuli predict danger is crucial for survival. In the laboratory, this kind of associative learning is modelled using classical fear conditioning where an initially neutral stimulus (conditioned stimulus, CS) comes to elicit fear responses after being paired in time with an aversive outcome (unconditioned stimulus, US). Notably, its clinical significance has made fear conditioning an intensively studied paradigm since much evidence indicates that anxiety disorders, such as the post-traumatic stress disorder (PTSD), result from dysregulation of brain circuits that mediate associative fear learning. Understanding neural mechanisms underlying fear learning is therefore crucial for a better understanding of the pathophysiology of anxiety disorders and can help develop new treatment strategies. Associative learning, such as fear conditioning, is driven by prediction errors (PE) which act as teaching signals to instruct new learning. It is well-established that dopamine (DA) neurons encode PE signals to drive associative reward learning. Importantly, recent evidence suggests that DA neurons encode prediction errors not only for rewards but also for aversive outcomes. Striatum constitutes the major projection target of DA neurons; however, whether DA neurons that project to the striatum, in particular a specific subregion of the striatum, are involved in associative fear learning has remained elusive. Recent studies have identified a unique subpopulation of DA neurons based on their input-output organization. These DA neurons project selectively to a distinct subdivision of the striatum, the posterior tail of the striatum (pTS), and are activated strongly by novel and high-intensity stimuli. Furthermore, they have been shown to reinforce threat avoidance. However, whether these DA neurons are required for associative fear learning is currently unknown. We hypothesize that pTS-projecting DA neurons encode an aversive PE signal which is necessary for acquisition of associative fear learning. Addressing this hypothesis will be the major goal of this proposal. To this end, we will perform projection-specific activity-dependent calcium recordings, temporally-precise optogenetic manipulations as well as measurement of DA release using a DA biosensor. These data will reveal for the first time the crucial role pTS-projecting DA neurons play in associative fear learning. In addition, we will further investigate the role of DA input on the activity of pTS neurons during associative fear learning to shed light on how DA modulates striatal activity and thus enables learning. Taken together, we expect that our results will identify a novel role for the pTS-projecting DA neurons and furthermore will suggest that a unique mesostriatal circuit is crucial for associative fear learning.
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会议论文
Dopamine function in working memory networks and its dysfunction in a mouse model of schizophrenia
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批准号:322169167
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项目类别:Priority Programmes
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资助金额:$0.0万
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财政年份:2016
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负责人:Dr. Sevil Duvarci
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依托单位:
Dopamine function in working memory networks and its dysfunction in a mouse model of schizophrenia
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批准号:239110432
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项目类别:Priority Programmes
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资助金额:$0.0万
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财政年份:2013
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负责人:Dr. Sevil Duvarci
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依托单位:
Dopaminergic circuitry underlying fear extinction learning
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批准号:456771156
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Dr. Sevil Duvarci
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依托单位:
海外基金