Department of Pharmacology and Toxicology, Medical College of Wisconsin, Milwaukee, 53226, USA.
Curr Med Chem. 2010;17(12):1181-90. doi: 10.2174/092986710790827843.
Arachidonic acid metabolites, eicosanoids, are key contributors to vascular function and improper eicosanoid regulation contributes to the progression of cardiovascular diseases. Epoxyeicosatrienoic acids (EETs) are synthesized from arachidonic acid by epoxygenase enzymes to four regioisomers, 5,6-EET, 8,9-EET, 11,12-EET, and 14,15-EET. These EETs have interesting beneficial effects like vasodilation, anti-inflammation, and anti-platelet aggregation that could combat cardiovascular diseases. There is mounting evidence that each regioisomeric EET may have unique vascular effects and that the contribution of individual EETs to vascular function differs from organ to organ. Over the past decade EET analogs and antagonists have been synthesized to determine EET structure function relationships and define the contribution of each regioisomeric EET. A number of studies have demonstrated that EET analogs induce vasodilation, lower blood pressure and decrease inflammation. EET antagonists have also been used to demonstrate that endogenous EETs contribute importantly to cardiovascular function. This review will discuss EET synthesis, regulation and physiological roles in the cardiovascular system. Next we will focus on the development of EET analogs and what has been learned about their contribution to vascular function. Finally, the development of EET antagonists and how these have been utilized to determine the cardiovascular actions of endogenous epoxides will be discussed. Overall, this review will highlight the important knowledge garnered by the development of EET analogs and their possible value in the treatment of cardiovascular diseases.
花生四烯酸代谢物,类二十烷酸,是血管功能的关键贡献者,而类二十烷酸的调节不当会导致心血管疾病的进展。环氧化二十碳三烯酸(EETs)是由环氧合酶从花生四烯酸合成的四种区域异构体,即 5,6-EET、8,9-EET、11,12-EET 和 14,15-EET。这些 EETs 具有有趣的有益作用,如血管舒张、抗炎和抗血小板聚集,可对抗心血管疾病。越来越多的证据表明,每种区域异构体 EET 可能具有独特的血管作用,并且单个 EET 对血管功能的贡献因器官而异。在过去的十年中,已经合成了 EET 类似物和拮抗剂,以确定 EET 的结构-功能关系,并定义每个区域异构体 EET 的贡献。许多研究表明,EET 类似物可诱导血管舒张、降低血压和减少炎症。EET 拮抗剂也被用于证明内源性 EETs 对心血管功能有重要贡献。本综述将讨论 EET 在心血管系统中的合成、调节和生理作用。接下来,我们将重点讨论 EET 类似物的开发以及它们对血管功能的贡献方面的研究进展。最后,将讨论 EET 拮抗剂的开发以及如何利用这些拮抗剂来确定内源性环氧化物的心血管作用。总的来说,本综述将重点介绍通过开发 EET 类似物获得的重要知识及其在治疗心血管疾病方面的可能价值。