课题基金 / 基金详情

EICOSANOIDS, VASCULAR TONE AND BLOOD PRESSURE

EICOSANOIDS, VASCULAR TONE AND BLOOD PRESSURE
类花生酸、血管张力和血压
批准号:
2028285
负责人:
WILLIAM BRYSON CAMPBELL
金额:
$19.72万
依托单位国家:
美国
项目类别:
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-01-01 至 2000-12-31

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中文摘要
翻译
描述:(改编自应用程序) 血管内皮细胞衬里在血管调节中的作用 基调显然已经确立。激素,如乙酰胆碱,P物质, 和缓激肽在内皮存在的情况下松弛血管,但 不是在它不存在的情况下。这种松弛归因于EDRF的释放。 有证据表明存在多个EDRF。一种是一氧化氮(NO-EDRF)。在……里面 此外,还有一种由花生四烯酸释放的EDRF(AA-EDRF),即 不是PGI2,而是脂氧合酶的代谢物。调查人员已经确定 该AA-EDRF作为15-脂氧合酶的代谢物 11,14,15-三羟基二十碳三烯酸(11,14,15-Theta)的生物测定, 高效液相色谱、气相色谱/质谱法。11-H-14,15-EETA被认为 作为11,14,15-西塔的前体。11-H-14,15-EETA和11,14,15-Theta 松弛兔主动脉,一个或两个代表AA-EDRF。建议数 研究将检验花生四烯酸是由 血管扩张剂二十烷基类化合物11-H,14,15-EETA和11,14,15-Theta的内皮 它们参与调节血管张力,并有助于 血管活性激素的作用。研究将在分离的血液中进行 血管、平滑肌细胞和内皮细胞。使用化学,分析, 生化和药理学方法拟议的实验将: 1)确定11,14,15-EETA是否由主动脉和内皮细胞产生,并确定 11,14,15-西塔的立体化学。实验将比较 Theta和HEETA及其立体异构体的血管扩张活性;2) 建立11,14,15-Theta和11-H-14-15-EETA的检测方法,并 研究血管活性物质对其释放的调节作用。这个 花生四烯酸代谢抑制剂对释放的影响将是 下定决心。这一定量信息将与 生理和药理学研究,以确定其作用 代谢产物对血管张力和血管活性激素活性的影响; 11,14,15-EETA和11,14,15-Theta生物合成途径的研究 使用纯化的酶、转基因细胞、抗体和 4)研究11,14,15-EETA和 11,14,15-Theta扩张血管。
英文摘要
DESCRIPTION: (Adapted from the application) The importance of the endothelial cell lining of the blood vessel in the regulation of vascular tone is clearly established. Hormones such as acetylcholine, substance P, and bradykinin relax blood vessels in the presence of the endothelium but not in its absence. The relaxation is attributed to the release of EDRF. There is evidence for multiple EDRFs. One is nitric oxide, (NO-EDRF). In addition, there is an EDRF released by arachidonic acid (AA-EDRF) that is not PGI2, but a lipoxygenase metabolite. The investigators have identified this AA-EDRF as a metabolite of 15-lipoxygenase 11,14,15-trihydroxyeicosatrienoic acid (11,14,15-THETA) using bioassay, HPLC, and gas chromatography/mass spectrometry. 11-H-14,15-EETA is thought to be a precursor of 11,14,15-THETA. 11-H-14,15-EETA and 11,14,15-THETA relax the rabbit aorta and one or both represent AA-EDRF. The proposed studies will test the hypothesis that arachidonic acid is metabolized by the endothelium to vasodilator eicosanoids 11-H,14,15-EETA and 11,14,15-THETA that are involved in the regulation of vascular tone and contribute to the action of vasoactive hormones. Studies will be conducted in isolated blood vessels, smooth muscle cells and ECs. Using chemical, analytical, biochemical and pharmacological approaches the proposed experiments will: 1) determine if 11,14,15-EETA is produced by the aorta and ECs and determine the stereochemistry of 11,14,15-THETA. Experiments will compare the vasodilator activity of the THETA and HEETA, their stereo isomers; 2) develop an assay for 11,14,15-THETA and possibly 11-H-14-15-EETA and investigate the regulation of their release by vasoactive agents. The effect of inhibitors of arachidonic acid metabolism on release will be determined. This quantitative information will be combined with physiological and pharmacological studies to determine the contribution of the metabolites to vascular tone and the activity of vasoactive hormones; 3) study the biosynthetic pathway for 11,14,15-EETA and 11,14,15-THETA formation using purified enzymes, transfected cells, antibodies and inhibitors; and 4) investigate the mechanism by which 11,14,15-EETA and 11,14,15-THETA dilate smooth muscle.
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海外基金