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MODULATION OF GLUTAMATE SYNAPSES IN NEONATAL CORTEX

MODULATION OF GLUTAMATE SYNAPSES IN NEONATAL CORTEX
新生儿皮层谷氨酸突触的调节
批准号:
6637928
负责人:
MICHAEL J FRIEDLANDER
金额:
$63.57万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-06-14 至 2005-05-31

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项目成果

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中文摘要
翻译
皮质突触结构完整性的改变在各种形式的智力低下中都被证明,包括那些可归因于染色体异常(例如,唐氏综合征、脆性X、安杰曼综合征、普莱德-威利综合征、威廉综合征)、产前暴露于致畸物质(如酒精)和严重的新生儿癫痫发作。这些结构缺陷大多发生在树突棘上的突触上,这些突触是谷氨酸能输入的部位,它们可以发生在人类和动物模型中。在正常发育过程中,这些谷氨酸能皮质突触的效率、分布和结构受到经验、神经活动和其他神经递质(如5-羟色胺)的实质性调节。(干扰正常的谷氨酸能突触传递可导致癫痫发作、神经毒性和皮质结构异常的发展)。这个项目是一个多方面的研究:(1)皮质谷氨酸突触的初始分子组装(项目I);(2)它在发育过程中传递行为相关信号的能力(项目II);以及(3)它在出生后发育过程中通过(I)两种相邻的细胞类型-皮质下白质神经元和星形胶质细胞,(Ii)调节剂,5-羟色胺(5-羟色胺)和一氧化氮,以及(Iii)5-羟色胺和谷氨酸神经递质转运体(项目III,IV和V)的调节。发展神经生物学成像核心(核心B)和行政/项目开发核心(核心A)、神经生物学成像核心(核心B)和行政/项目开发核心(核心A)将提供关键服务,并将促进项目之间的协同作用。通过了解这些突触的分子组成,它们在生理环境中的功能特性,以及它们在正常新生儿中通过内在门控途径进行修改的机制,本项目将为理解发育中的谷氨酸突触对损害突触结构和功能的会聚过程的敏感性提供实质性的新基础。
英文摘要
Altered structural integrity of cortical synapses has been demonstrated in a variety of forms of mental retardation, including those attributable to chromosomal abnormalities (e.g., Down Syndrome, Fragile X, Angelman Syndrome, Praeder-Willi Syndrome, William's Syndrome), prenatal exposure to teratogens (e.g., ethanol) and severe neonatal seizures. Most of these structural defects are at synapses located on dendritic spines, sites of glutamatergic input, and they can occur in humans and animal models. The efficiency, distribution, and structure of these glutamatergic cortical synapses undergo substantial modulation by experience, neural activity, and other neurotransmitters such as serotonin during normal development. (Interference with normal glutamatergic synaptic transmission can lead to seizures, neurotoxicity, and development of abnormal cortical architecture). This program project is a multi-faceted inquiry into (1) the initial molecular assembly of the cortical glutamate synapse (Project I); (2) its capacity for transferring behaviorally relevant signals during development (Project II); and (3) its modulating during postnatal development by (i) two neighboring cell types-subcortical white matter neurons and astrocytes, (ii) the modulators, serotonin (5-HT) and nitric oxide, and (iii) the 5-HT and glutamate neurotransmitter transporters (Projects III, IV, and V). A Developmental Neurobiology Imaging Core (Core B) and an Administration/Project Development Core (Core A) Neurobiology Imaging Core (Core B) and an Administration/Project Development Core (Core A) will provide critical services and will promote synergy among projects. By learning the molecular components of these synapses, their functional properties in a physiological context, and the mechanisms of their modification by intrinsic gating pathway in the normal neonate, this project will provide a substantial new basis for understanding the sensitivity of developing glutamate synapses to the convergent processes that compromise synaptic structure and function in MR.
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