Novel Mechanisms of NSAID Action in Alzheimer's Disease
Novel Mechanisms of NSAID Action in Alzheimer's Disease
批准号:
6606278
负责人:
EDWARD H. KOO
金额:
$13.32万
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:
2002-04-01 至 2007-02-28
中文摘要
描述(由申请人提供):我们最近发现一些非甾体抗炎药(NSAIDs)选择性地降低A?42产生的机制是独立的环加氧酶(COX)抑制。此外,一项独立研究表明,长期服用布洛芬可降低A?在转基因阿尔茨海默病(AD)小鼠模型中的沉积这些数据表明某些非甾体抗炎药选择性地降低A?42,并且这种作用而不是这些化合物的COX介导的抗炎特性可能解释了它们在降低AD风险方面的明显功效。为了探索这一假设,合成缺乏COX活性但仍保持降低A?42是必要的。
英文摘要
DESCRIPTION (provided by applicant): We have recently found that some non-steroidal anti-inflammatory drugs (NSAIDs) selectively decrease A?42 production by a mechanism that is independent of cyclooxygenase (COX) inhibition. Moreover, an independent study showed that chronic treatment with ibuprofen reduced A? deposition in a transgenic Alzheimer's disease (AD) mouse model. These data suggest that certain NSAIDs selectively reduce A?42, and that this effect rather than the COX mediated anti-inflammatory properties of these compounds might account for their apparent efficacy in reducing risk for AD. In order to explore this hypothesis the synthesis of novel compounds lacking COX activity yet maintaining the ability to lower A?42 is necessary.
We have already identified several compounds that lack COX activity, lower A?42, and do so more
potently than any of the FDA-approved NSAIDs. Moreover, we have identified a number of NSAID
derivatives that unexpectedly raise A?42 and lower shorter A? derivatives including A?38. In
addition, we have evidence that NSAIDs directly modulate gamma-secretase cleavage; therefore, we have begun to develop affinity reagents to identify the target responsible for the A?42 altering properties of these compounds. Finally, through systematic modification of several NSAIDs we have begun to identify important structure activity relationships (SAR) that are likely to result in the development of more potent and more selective A?42 lower agents. Based on these findings the aims of the chemical synthesis core are: 1) To produce large quantities of A?42 altering agents that are needed to conduct in vitro and in vivo studies outlined in Projects 1 and 2. 2) To synthesize affinity reagents derived from the A?42 altering agents that we have identified that can be used to identify the target responsible for the A?42 lowering effect of these compounds (Project 1). 3) To synthesize a series of molecules that will provide important information regarding the SAR of the A?42 altering agents. 4) Develop methods to enable detection and quantification of the level of these novel compounds in biological fluids and tissues.
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