GABAA RECEPTORS: DEVELOPMENTAL INFLUENCE ON BEHAVIOR
GABAA RECEPTORS: DEVELOPMENTAL INFLUENCE ON BEHAVIOR
批准号:
6954242
负责人:
Timothy M DeLorey
金额:
$21.87万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-01 至 2007-06-30
关键词:
GABA receptorattentionautismbehavior testbrain morphologycerebellumcongenital disordersdevelopmental neurobiologydisease /disorder modelembryo /fetus toxicologyexploratory behaviorhappy puppet syndromehippocampuslaboratory mouselindanemature animalmolecular pathologyneuroanatomyneuropharmacologyprotein structure functionpsychobiologyradiotracersocial behavior
中文摘要
描述(由申请人提供):许多最近的研究强调了GABA能系统密切参与对生物体行为成功至关重要的复杂神经元回路的发育和维持。阐明GABAA受体在创建和维持这些复杂行为网络中的参与作用对于理解与发育障碍相关的病理生理学至关重要。此外,越来越多的证据表明,GABA能系统可能在两种发育障碍中发挥作用:自闭症和Angelman综合征。我们建议研究发育受损的GABAA受体系统对成熟海马和小脑及其调节行为的影响。我们的工作假设是,在发育过程中破坏含有β 3亚基的GABAA受体,将对神经组织产生深远的影响,导致以后的生活中出现异常行为。为了验证我们的假设,我们建议研究GABAA受体发育中断引起的成熟小鼠的行为后果。将被评估的行为是那些在自闭症和安格尔曼综合征中常见的受损行为。这些包括注意力处理,社会互动,探索和刻板行为。此外,我们还将研究这种发育中断对海马和小脑的形态学和神经药理学的影响。这两个区域在自闭症和安格尔曼综合征中表现出异常,并且对上述行为至关重要。拟议的研究将涉及两个单独的小鼠模型:1)从受孕到整个生命周期对gabrb 3基因(编码GABAA受体的β 3亚基)进行遗传破坏; 2)从胚胎第15天到出生后第7天对含有β 3亚基的GABAA受体进行选择性药理学阻断。这些研究的结果将为包括自闭症和安格尔曼综合征在内的各种发育障碍提供相关的见解。这项建议解决了几个关于神经发育对行为影响的根本重要性问题。
英文摘要
DESCRIPTION (provided by applicant): Numerous recent studies have highlighted the GABAergic system's intimate involvement in the development and maintenance of the complex neuronal circuits vital to the behavioral success of an organism. Clarifying the participatory role that GABAA receptors have in creating and maintaining these complex behavioral networks is fundamental to understanding the pathophysiologies associated with developmental disorders. Furthermore, there is mounting evidence that the GABAergic system may play a role in two developmental disorders; autism and Angelman syndrome. We propose to study the resulting impact that a developmentally impaired GABAA receptor system has on the mature hippocampus and cerebellum and the behaviors they modulate. Our working hypothesis is that disrupting GABAA receptors, which contain the beta 3 subunit, during development will exert a profound effect on neural organization resulting in aberrant behaviors later in life. To test our hypothesis, we propose to study the behavioral ramifications in mature mice that arise from the developmental disruption of the GABAA receptor. Behaviors that will be assessed are those that are commonly impaired in both autism and Angelman syndrome. These include attentional processing, social interactions, exploration and stereotyped behavior. Additionally, we will also examine the consequences of this developmental disruption on the morphology and neuropharmacology of the hippocampus and cerebellum. Both regions exhibit abnormalities in autism and Angelman syndrome and are essential to the above behaviors. The proposed studies will involve two separate mouse models: 1) a genetic disruption of the gabrb3 gene (encoding the beta3 subunit of the GABAA receptor) from conception throughout life; 2) a selective pharmacological block of GABAA receptors that contain the beta3 subunit from embryonic day 15 through postnatal day 7. Results of these studies will provide pertinent insight into a variety of developmental disorders including autism and Angelman syndrome. This proposal addresses several issues of fundamental importance regarding the influence of neural development on behavior.
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会议论文
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