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INTERACTIONS OF CRF AND NE IN NUCLEUS ACCUMBENS SHELL

INTERACTIONS OF CRF AND NE IN NUCLEUS ACCUMBENS SHELL
伏核壳中 CRF 和 NE 的相互作用
批准号:
2863014
负责人:
VAISHALI P BAKSHI
金额:
$3.17万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
未结题
起止时间:
1999-05-01 至

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中文摘要
翻译
描述(申请人摘要):该系统的失调与精神疾病如抑郁症有关。CRF被认为是对应激的自主神经、神经内分泌和行为反应的中枢调节者。CRF的行为效应通常类似于轻度应激或觉醒的条件;已提出去甲肾上腺素(NE)通过增强对神经元的感觉输入的显著性来调节觉醒和警觉。因此,CRF和NE可以相互作用以调节生物体响应其变化的环境条件而表现出的基本行为特征。壳亚区的核神经元(AcbSh)含有密集浓度的CRF和NE,并被认为是整合信息处理的皮质,边缘,自主神经和运动区; AcbSh因此非常好地定位于调节生物体的基本行为概况,以响应其动态的外部环境。因此,AcbSh可能是CRF和NE系统作用的重要位点,并且可能在生物体的基本行为库的调节中相互作用。本建议旨在研究CRF和NE在AcbSh中的行为作用,以及该区域内这些系统之间可能相互作用的神经化学和解剖学底物。这项工作可能提供了一个重要的第一步,通过生物体保持行为稳态的基本机制的特征;这些底物的理解可能最终揭示了一些过程,成为失调的疾病,如抑郁症和焦虑症,其特征是表达不适当的行为反应的环境突发事件。
英文摘要
DESCRIPTION (applicant's abstract): Dysregulation of the system has been associated with psychiatric disorders such as depression. CRF is thought to function as a central mediator of integrated autonomic, neuroendocrine, and behavioral responses to stress. The behavioral effects of CRF often resemble conditions of mild stress or arousal; norepinephrine (NE) has been proposed to regulate arousal and vigilance by enhancing the salience of sensory inputs to neurons. Thus, CRF and NE could interact to modulate the fundamental behavioral profile that an organism exhibits in response to its changing environmental conditions. The shell subregion of the nucleus accumbens (AcbSh) contains dense concentrations of CRF and NE, and is thought to integrate information processed in cortical, limbic, autonomic, and motor areas; AcbSh is thereby very well positioned to regulate the basic behavioral profile of an organism in response to its dynamic external milieu. AcbSh could thus be an important site in which CRF and NE systems act and possibly interact in the regulation of an organism's fundamental behavioral repertoire. The present proposal seeks to examine the behavioral roles of CRF and NE in the AcbSh, and the neurochemical and anatomical substrates of possible interactions between these systems within this region. This work may provide an important first step in characterizing the basic mechanisms through which an organism maintains behavioral homeostasis; understanding of these substrates might ultimately shed insight into some of the processes that become dysregulated in illnesses such as depression and anxiety disorders that are characterized by the expression of inappropriate behavioral responses to environmental contingencies.
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