AFFERENT CONTROL OF NEUROPEPTIDE SYNTHESIS
AFFERENT CONTROL OF NEUROPEPTIDE SYNTHESIS
批准号:
2891379
负责人:
Alan G Watts
金额:
$7.09万
依托单位国家:
美国
项目类别:
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-09-30 至 2000-07-31
关键词:
amygdala antisense nucleic acid biological fluid transport body fluids corticotropin releasing factor enkephalins gene expression glucocorticoids homeostasis hormone regulation /control mechanism immunocytochemistry in situ hybridization laboratory rat messenger RNA neurochemistry neuropeptide receptor neuropeptides neuropharmacology neurotensin organ culture paraventricular nucleus peptide hormone biosynthesis tissue /cell culture
中文摘要
该项目的具体目标是提供时间和机会,
让PI学习如何使用急性切片和器官型切片
在生理调节的背景下,
神经肽基因表达联合国的长期目标
研究项目是确定传入信号机制,
细胞反应和边缘前脑神经元的地形图
帮助调节大鼠体内稳态的回路。这些电路
对于调节行为、自主神经和内分泌反应至关重要
动物体内平衡紊乱。核心假设是,
稳态紊乱改变了化学编码信息
在神经元内,通过调节编码单-和共-
表达的神经肽。这些细胞和刺激特异性的修饰
促进动物的适当反应,或者通过调节
自主神经系统的活动,神经内分泌功能,
或者也许通过修改中央模式发生器,
调节目标导向的行为。由于相对简单,
潜在的生理和行为,沿着广泛的
文学,整个项目集中在调查
控制流体平衡的回路和机构的组织
老鼠在此背景下,本项目的目标是学习如何
使用体外技术来研究潜在的细胞
调节下丘脑中肽基因表达的机制
室旁核(PVH)和杏仁中央核(CEA)
在大鼠体液平衡改变后。将这些结果与
重要的和有据可查的模型允许解释数据
在一个令人信服的背景框架内,
目前使用的“压力”模型。使用的测定方法-主要用于
原位杂交和免疫细胞化学将允许检测
PVH和CEA中CRH、前脑啡肽原和神经降压素mRNA的变化
在糖皮质激素或递质操纵之后。用这些体外培养的
技术,PI将学习使用传统药理学,
最近引入的反义寡核苷酸阻断
转基因为此另一个目标是看看其他在
体外技术(例如,电生理学,分子技术)可能是
适应PI的研究项目。合作、协商和
与PI机构和其他地方的专家教师互动
在南加州将提供专业知识,
程序.设施将由PI所在机构提供。从长远
术语,调查组织的地形和机制,
体液平衡的稳态方面将提供一个工作模型,
了解相对简单的哺乳动物的神经组织
在细胞、系统和行为层面上的行为。它将
最终使我们能够解决许多临床疾病(例如,
高血压、肥胖症、饮食失调),
对人类健康的影响,
他们的病因。
英文摘要
The specific aim of this project is to provide the time and opportunity
for the PI to learn how to utilize acute slice and organotypic slice
culture preparations within the context of physiological regulation of
neuropeptide gene expression. The long term goal of the associated
research project is to identify the afferent signalling mechanisms,
cellular responses, and topography of the limbic forebrain neural
circuits that help regulate homeostasis in the rat. These circuits are
critical for regulating the behavioral, autonomic and endocrine response
of the animal to homeostatic disturbance. The central hypothesis is that
homeostatic disturbances modify chemically-coded information contained
within neurons by modulating the mRNAs that code for singly- and co-
expressed neuropeptides. These cell- and stimulus-specific modifications
facilitate the appropriate response by tile animal, either by modulating
the activity of the autonomic nervous system, neuroendocrine function,
or perhaps by modifying the central pattern generators that develop and
regulate goal-directed behaviors. Because of the relative simplicity of
the underlying physiology and behavior, along with an extensive
literature, the overall project concentrates on investigating the
organization of the circuits and mechanisms controlling fluid balance in
the rat. Within this context, the goals of this project are to learn how
to use in vitro techniques to investigate the underlying cellular
mechanisms which modulate peptide gene expression in the hypothalamic
paraventricular nucleus (PVH) and central nucleus of the amygdala (CEA)
after alterations in fluid homeostasis in the rat. Relating these results
to important and well documented models allows the interpretation of data
within a compelling and contextual framework not possible with many other
currently used 'stress' models. The assay methods used-principally in
situ hybridization and immunocytochemistry-will allow the detection of
changes in CRH, proenkephalin and neurotensin mRNAs in the PVH and CEA
after glucocorticoid or transmitter manipulation. With these in vitro
techniques, the PI will learn to use conventional pharmacology and
recently introduced methods of antisense oligonucleotide blockade of
receptor translation to this end. A further goal is to see how other in
vitro techniques (eg. electrophysiology, molecular techniques) might be
adapted to the PI's research project. Collaborations, consultations, and
interactions with expert faculty in the PI's institution, and elsewhere
in Southern California will provide the expertise to complete the
program. Facilities will be provided by the PI's institution. In the long
term, investigating the topography and mechanisms that organize the
homeostatic aspects of fluid balance will provide a working model for
understanding the neural organization of a relatively simple mammalian
behavior at the cellular, systems and behavioral level. It will
eventually allow us to address many of the clinical disorders (eg.
hypertension, obesity, eating disorders) currently of central importance
to human health, that have perturbed homeostatic regulation at the core
of their etiology.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
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资助金额:$39.34万
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财政年份:2019
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资助金额:$27.77万
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批准号:6790708
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资助金额:$28.44万
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批准号:8046447
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资助金额:$36.09万
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资助金额:$36.68万
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财政年份:2002
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批准号:6934669
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资助金额:$28.44万
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负责人:Alan G Watts
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批准号:6531706
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项目类别:
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资助金额:$32.5万
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财政年份:2002
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Neural Mechanisms of Anorexia
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批准号:7794966
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资助金额:$36.51万
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负责人:Alan G Watts
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依托单位:
Neural Mechanisms of Anorexia
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批准号:8252226
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项目类别:
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资助金额:$36.09万
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财政年份:2002
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负责人:Alan G Watts
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依托单位:
Neural Mechanisms of Anorexia
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批准号:7626382
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资助金额:$36.68万
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负责人:Alan G Watts
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依托单位:
AFFERENT CONTROL OF NEUROPEPTIDE SYNTHESIS
-
批准号:2260039
-
项目类别:
-
资助金额:$6.88万
-
财政年份:1995
-
负责人:Alan G Watts
-
依托单位:
AFFERENT CONTROL OF NEUROPEPTIDE SYNTHESIS
-
批准号:2750771
-
项目类别:
-
资助金额:$7.09万
-
财政年份:1995
-
负责人:Alan G Watts
-
依托单位:
AFFERENT CONTROL OF NEUROPEPTIDE SYNTHESIS
-
批准号:2260038
-
项目类别:
-
资助金额:$6.71万
-
财政年份:1995
-
负责人:Alan G Watts
-
依托单位:
AFFERENT CONTROL OF NEUROPEPTIDE SYNTHESIS
-
批准号:2460457
-
项目类别:
-
资助金额:$7.05万
-
财政年份:1995
-
负责人:Alan G Watts
-
依托单位:
NEUROPEPTIDES AND THEIR PHYSIOLOGICAL CONTROL
-
批准号:6188106
-
项目类别:
-
资助金额:$19.99万
-
财政年份:1991
-
负责人:Alan G Watts
-
依托单位:
NEUROPEPTIDES AND THEIR PHYSIOLOGICAL CONTROL
-
批准号:6539723
-
项目类别:
-
资助金额:$25.9万
-
财政年份:1991
-
负责人:Alan G Watts
-
依托单位:
NEUROPEPTIDES AND THEIR PHYSIOLOGICAL CONTROL
-
批准号:2267851
-
项目类别:
-
资助金额:$18.73万
-
财政年份:1991
-
负责人:Alan G Watts
-
依托单位:
海外基金