Neurophysiological Basis of Susceptibility and Resilience to Social Defeat Stress
Neurophysiological Basis of Susceptibility and Resilience to Social Defeat Stress
批准号:
8268370
负责人:
Ming-Hu Han
金额:
$42.29万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-06-01 至 2016-03-31
关键词:
Adverse effectsAnimal ModelAnimalsAntidepressive AgentsBackBehaviorBehavioralBrainChronicChronic stressDataDepressed moodDevelopmentDisease remissionDrug Delivery SystemsExposure toFunctional disorderGenesGoalsIn VitroIndividualIon ChannelKnowledgeLifeLightLinkMajor Depressive DisorderMediatingMediator of activation proteinMental DepressionMissionModelingMolecularMusNational Institute of Mental HealthNeurobiologyNeuronsPatientsPatternPharmaceutical PreparationsPhenotypePhysiologicalPlayPotassium ChannelPredispositionPropertyRegulationResearch PersonnelRewardsRoleSignal TransductionSocial InteractionStressStressful EventSubgroupSucroseTechniquesTestingUnited States National Institutes of HealthUp-RegulationVentral Tegmental AreaWorkbasecopingcoping mechanismdopamine systemdopaminergic neuroneffective therapyexperiencehyperpolarization-activated cation channelimprovedin vivoinhibitor/antagonistneural circuitneurophysiologynoveloptogeneticspositive emotional statepreferencepsychologicpsychosocialreceptorresilienceresponseskillssocial
中文摘要
描述(由申请人提供):目前迫切需要更有效的药物治疗重度抑郁症(MDD),因为只有不到50%的抑郁症患者达到完全缓解,许多患者对目前可用的抗抑郁药没有反应。众所周知,长时间的应激事件是MDD的重要原因。然而,个体对压力的反应有一个有趣的差异:大多数经历压力事件的人保持正常的心理功能(对压力的恢复力),而其他人则发展为抑郁症(对压力的敏感性)。许多心理社会技能已成功地用于我们的日常生活中,以促进压力弹性。最近的研究已经开始揭示这些心理社会弹性因素的神经生物学基础,并表明积极的情绪和相互合作与中脑边缘奖励神经回路的功能有关。与这个想法一致,我们以前发现,在同一个奖励回路中,腹侧被盖区(VTA)多巴胺(DA)神经元的活动是对社会失败压力的敏感性与弹性的关键决定因素。这些神经元的放电率显着增加了慢性失败在易感但没有弹性的小鼠。此外,实验诱导的放电减少促进恢复力,而放电增加促进易感性。令人惊讶的是,在分子水平上,慢性失败在弹性小鼠中比在易感亚组中调节了更多的基因,并且仅在弹性小鼠中诱导了几个K+通道的显著上调,这可能会将更高的放电恢复到正常水平。这些发现强烈支持了这样的观点:韧性表型不仅仅是压力诱导的病理生理学的被动缺失,而是一种可促进和主动的大脑功能,动物通过激活更多基因成功科普压力条件。在本项目中,我们提出以下问题:(1)腹侧被盖区DA神经元的生理学上重要的放电模式是否编码应激脆弱性信号,并在主动应对或有害行为中发挥作用;(2)我们是否可以通过了解易感性和主动复原力的分子(离子通道和受体)机制来寻找潜在的药物靶点。因此,我们建议使用先进的光遗传学技术将特定的放电模式与自由移动动物的压力易感性和弹性直接联系起来。我们还将深入探索失败引起的腹侧被盖区DA神经元放电特性变化的通道和受体基础,特别是研究主动弹性的离子机制。此外,这些新的离子和受体机制介导的标准抗抑郁作用的作用将被系统地研究。这些拟议的分子和细胞研究将提供非常有用和高度新颖的信息,既可以提高我们对抑郁症的认识,也可以确定新的药物靶点,以开发更有效的抑郁症治疗方法。这种治疗方法将基于模仿自然产生的弹性的积极应对机制,因此可能更有效,更不容易产生副作用。
英文摘要
DESCRIPTION (provided by applicant): There is an urgent need for more effective medications for major depressive disorder (MDD) treatment, as less than 50% of depressed patients achieve full remission and many are not responsive, with currently available antidepressants. It is known that prolonged stressful events are an important cause of MDD. However, there is an intriguing difference in individual responses to stress: most people experiencing stressful events maintain normal psychological functioning (resilience to stress), whereas others develop depression (susceptibility to stress). Many psychosocial skills have been successfully used in our daily life to promote stress resiliency. Recent studies have begun to reveal the neurobiological basis for these psychosocial resilient factors, and show that positive emotions and mutual cooperation are linked to the function of the mesolimbic reward neural circuit. Consistent with this idea, we previously found that the activity of ventral tegmental area (VTA) dopamine (DA) neurons in the same reward circuit is a key determinant of susceptibility vs. resilience to social defeat stress. The firing rate of these neurons was significantly increased by chronic defeat in susceptible but not resilient mice. Furthermore, experimentally induced decreased firing promoted resilience, while increased firing promoted susceptibility. Surprisingly, at the molecular level, chronic defeat regulated more genes in resilient mice than in the susceptible subgroup, and induced dramatic upregulation of several K+ channels only in resilient mice, which may drive the higher firing back to normal levels. These findings strongly support the notion that a resilience phenotype is not simply a passive absence of stress-induced pathophysiology, but a promotable and active brain function by which animals successfully cope with stressful conditions via activation of more genes. In the current project, we ask: (1) whether the physiologically important firing patterns of VTA DA neurons encode the signal of stress vulnerability and play a role in active coping or deleterious behaviors; (2) whether we can find potential drug targets by understanding the molecular (ion channel and receptor) mechanisms of susceptibility and active resilience. Accordingly, we propose to use advanced optogenetic techniques to directly link specific firing patterns to stress susceptibility and resilience in freely-moving animals. We will also intensively explore the channel and receptor basis of defeat-induced changes in the firing properties of VTA DA neurons and particularly investigate the ionic mechanisms of active resiliency. Moreover, the roles of these new ionic and receptor mechanisms in mediating standard antidepressant action will be systematically investigated. These proposed molecular and cellular studies will provide very useful and highly novel information, both for improving our knowledge of depression and for identifying new drug targets to develop more effective treatments for depression. Such treatments would be based on imitating active coping mechanisms of naturally occurring resilience and therefore might be likely to be more effective and less prone to side effects.
期刊论文(0)
专著(0)
科研奖励(0)
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Neurophysiological Basis of Susceptibility and Resilience to Social Defeat Stress
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批准号:8826809
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资助金额:$42.29万
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财政年份:2011
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负责人:Ming-Hu Han
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依托单位:
Neurophysiological Basis of Susceptibility and Resilience to Social Defeat Stress
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批准号:8185599
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项目类别:
-
资助金额:$42.29万
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财政年份:2011
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负责人:Ming-Hu Han
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依托单位:
Neurophysiological Basis of Susceptibility and Resilience to Social Defeat Stress
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批准号:8437220
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项目类别:
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资助金额:$40.6万
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财政年份:2011
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负责人:Ming-Hu Han
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依托单位:
Neurophysiological Basis of Susceptibility and Resilience to Social Defeat Stress
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批准号:8645750
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项目类别:
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资助金额:$42.29万
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财政年份:2011
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负责人:Ming-Hu Han
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依托单位:
海外基金