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Mechanisms and Neural Consequences of Estrogen Action

Mechanisms and Neural Consequences of Estrogen Action
雌激素作用的机制和神经后果
批准号:
6435530
负责人:
Farida Sohrabji
金额:
$21.83万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-02-01 至 2006-01-31

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中文摘要
翻译
描述(由申请人提供):本研究的总体目标是 确定雌激素作用的机制和后果, 前脑,我们将在两个具体的目标。第一个目标是 确定雌激素介导的改变在细胞中的后果, 神经营养因子受体的比率。在成人前脑中,雌激素增加trk 受体和减少p75,导致有利的trk/p75比率,而在 生殖性衰老的前脑,雌激素替代,矛盾的是, 导致不利的Trk/p75比率。神经营养素受体 刺激不同的和重叠的信号通路,trks通常 促进细胞存活,而p75可以刺激细胞存活或细胞凋亡。 死亡在这里,我们的体内模型将用于评估雌激素介导的 Trk/p75比率的变化将影响下游神经营养因子信号传导, 因此,当在体内用神经营养因子攻击时, 刺激或伤害。第二个目的是检验假设, 雌激素受体(ER-α)的α形式的表达/活化是 对细胞健康有害。两种雌激素受体已被鉴定, 尽管每个受体对神经功能的具体贡献并不 明确了最近的观察表明,ER-α的高表达是 与雌激素反应性降低有关, 神经营养因子表达和细胞存活。雌激素受体特异性配体, 结合离体和体外模型,将用于确定 每种雌激素受体对神经营养因子表达的贡献,信号 转导和细胞死亡。这些研究也将使用DNA微阵列 分析,最终目标是开发战略基因阵列, 促进雌激素介导的细胞变化的快速检测, 区分受体特异性配体的作用。 鉴于最近关于雌激素使用的相互矛盾的证据, 老年痴呆症,了解雌激素作用的生物学更多 比以往任何时候都重要。此外,识别出能够刺激神经元的通路, 启动细胞变性事件将越来越重要, 目标和受体特异性雌激素化合物的开发。
英文摘要
DESCRIPTION (provided by the applicant): The overall goal of this research is to define the mechanisms and consequences of estrogens actions on the forebrain, which we will address in two specific aims. The first aim is to determine the cellular consequences of estrogen-mediated alterations in the ratio of neurotrophin receptors. In the adult forebrain, estrogen increases trk receptors and decreases p75, resulting in a favorable trk/p75 ratio, while in the reproductively senescent forebrain, estrogen replacement, paradoxically, results in an unfavorable trk/p75 ratio. While both neurotrophin receptors stimulate distinct and overlapping signaling pathways, the trks typically promote cell survival, while p75 may stimulate either cell survival or cell death. Here, our in vivo models will be used to assess how estrogen mediated changes in trk/p75 ratios will affect down-stream neurotrophin signaling and, consequently, cell fate, when challenged, in vivo, with neurotrophin stimulation or injury. The second aim is to test the hypothesis that expression/activation of the alpha form of the estrogen receptor (ER-alpha) is detrimental to cell health. Two estrogen receptors have been identified, although the specific contribution of each receptor to neural function is not clearly defined. Recent observations indicate that high ER-alpha expression is associated with decreased estrogen responsiveness on measures such as neurotrophin expression and cell survival. Estrogen receptor specific ligands, in conjunction with ex vivo and in vitro models, will be used to determine the contribution of each estrogen receptor to neurotrophin expression, signal transduction and cell death. These studies will also employ DNA microarray analysis, with the eventual goal of developing strategic gene arrays to facilitate rapid detection of estrogen-mediated cellular changes and to discriminate between the actions of receptor specific ligands. In view of the recent conflicting evidence regarding estrogen use and Alzheimer's disease, understanding the biology of estrogens actions are more critical now than ever. Moreover, identifying hormone-stimulated pathways that initiate cell-degenerative events will be increasingly important to the development of target and receptor specific estrogenic compounds.
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国内基金
海外基金
炎性反应中巨噬细胞激活诱导死亡(activation-induced cell death,AICD)的机理研究
  • 批准号:
    30330260
  • 项目类别:
    重点项目
  • 资助金额:
    105.0万元
  • 批准年份:
    2003
  • 负责人:
    顾军
  • 依托单位: