Transcellular metabolism of eicosanoids.

A J Marcus
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Abstract

In this chapter, current concepts of eicosanoid biochemistry and function have been summarized. Emphasis has been placed on the importance of ascertaining a complete profile of eicosanoids synthesized by a given tissue under varying conditions of stimulation. The concept of transient intermediates, which are involved in each of the known pathways, was reviewed. Such intermediates can also represent substrate for cell-cell interactions, which have been classified and discussed. Knowledge of the synthetic mechanisms, metabolism, and catabolism of eicosanoids has surpassed our comprehension of their biologic actions. It can be speculated that eicosanoids reinforce or synergize normal homeostatic mechanisms that might proceed less effectively in their absence but occur more efficiently when they are produced. Incomplete comprehension of the functional role of eicosanoids has retarded the development of definitive pharmaceutical approaches toward inhibition or stimulation of eicosanoid production in pathophysiologic situations. With regard to thrombosis, the inflammatory response and host-defense mechanisms, leukotrienes, which have been shown to act on vascular endothelium and smooth muscle, may play an important role in occlusive vascular disease. Since leukotrienes and other hydroxy acids such as 12-HETE are not inhibited by aspirin or nonsteroidal anti-inflammatory agents, development of a unifying concept is difficult. It appears that we are approaching a point in time for reevaluation and reassessment of the role of the eicosanoid pathway in hemostasis and thrombosis. Most importantly, recent eicosanoid research has provided answers to biologic phenomena that were not explicable in the past and also explains why therapeutic trials in occlusive vascular disease were not as successful as predicted on theoretical grounds.

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二十烷类化合物的跨细胞代谢。
本章综述了类二十烷酸生物化学和功能方面的研究进展。重点放在确定在不同刺激条件下由给定组织合成的二十烷类化合物的完整轮廓的重要性上。暂态中间体的概念,其中涉及到每一个已知的途径,进行了审查。这些中间体也可以代表细胞-细胞相互作用的底物,这已经被分类和讨论过。关于类二十烷酸的合成机制、代谢和分解代谢的知识已经超出了我们对其生物作用的理解。可以推测,类二十烷酸可以加强或协同正常的体内平衡机制,这些机制在缺乏类二十烷酸的情况下可能效率较低,但在产生类二十烷酸时效率更高。对类二十烷酸功能作用的不完全理解阻碍了在病理生理情况下抑制或刺激类二十烷酸产生的明确药物方法的发展。在血栓形成、炎症反应和宿主防御机制方面,白三烯已被证明对血管内皮和平滑肌起作用,可能在闭塞性血管疾病中发挥重要作用。由于白三烯和其他羟基酸如12-HETE不受阿司匹林或非甾体抗炎药的抑制,因此很难形成统一的概念。似乎我们正在接近一个时间点,重新评估和重新评估的作用,在止血和血栓形成的类二十烷途径。最重要的是,最近的类二十烷酸研究为过去无法解释的生物现象提供了答案,也解释了为什么闭塞性血管疾病的治疗试验不像理论上预测的那样成功。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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