Astrocyte branchlet dysfunction as an early step in brain disorders
Astrocyte branchlet dysfunction as an early step in brain disorders
批准号:
8563667
负责人:
Baljit Khakh
金额:
$77.0万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-26 至 2018-08-31
关键词:
AstrocytesAwardBrainBrain DiseasesBrain InjuriesBudgetsCorpus striatum structureDataDiseaseExcisionFunctional disorderGluesGoalsLeadMaintenanceMental disordersNeurobiologyNeurodevelopmental DisorderNeuronsNeurosciencesNeurotransmittersOutcomePhysiologyProcessRecommendationRegulationReview CommitteeRoleSignal TransductionSynapsesSynaptic TransmissionTestingTimeVertebratesWithdrawalWorkexcitotoxicitynervous system disordernovelnovel therapeuticsoperationpublic health relevance
中文摘要
描述(申请人提供):神经生物学的一个中心目标是了解大脑如何形成、存储、检索和编码信息,以及这些操作在疾病中是如何出错的。这一应用的重点是星形胶质细胞,它与整个大脑中的神经元进行亲密接触。长期以来,星形胶质细胞被简单地认为是大脑的粘合剂,现在正在成为神经元功能的重要调节器。破译星形胶质细胞在大脑中的作用被认为是神经科学中的主要悬而未决的问题之一。这项先锋奖的申请旨在测试这一新的假设,即大脑紊乱的早期步骤涉及被称为小枝的星形胶质细胞非常精细的末端功能障碍,该小枝是已知的毗邻突触的。在这种背景下,我们将功能障碍定义为小枝退出突触或改变小枝信号,包括营养支持,到突触。这些功能障碍将改变星形胶质细胞既定的功能,包括神经递质清除、突触调节和维持。这反过来会改变突触传递的时间,导致兴奋性毒性,并可能触发突触移除。通过专注于纹状体微电路,我们将测试这一假说,即小枝代表了神经和精神疾病中迄今被忽视的机制,可以用于新的治疗方法。
英文摘要
DESCRIPTION (provided by applicant): A central goal of neurobiology is to understand how the brain forms, stores, retrieves and encodes information and how these operations go awry in disease. The focus of this application is astrocytes, which make intimate contacts with neurons throughout the brain. Long considered simply the brain's glue, astrocytes are emerging as important regulators of neuronal function. Deciphering the roles of astrocytes in the brain is considered one of the major open questions in neuroscience. This Pioneer Award application seeks to test the novel hypothesis that an early step in brain disorders involves dysfunction of the very fine termini of astrocytes called branchlets that are known to abut synapses. In this context, we define dysfunction as branchlet withdrawal from synapses or altered branchlet signaling, including trophic support, to synapses. These dysfunctions would alter established astrocyte functions including neurotransmitter clearance, synapse regulation and maintenance. This in turn would alter the timing of synaptic transmission, contribute to excitotoxicity and perhaps trigger synapse removal. By focusing on the striatal microcircuitry, we will test the hypothesis that branchlets represents a hitherto overlooked mechanism in neurological and psychiatric disorders that could be exploited for novel therapeutics.
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会议论文
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海外基金