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阿司匹林与急性炎症消退内源性调控的新视角。

New perspectives on aspirin and the endogenous control of acute inflammatory resolution.

作者信息

Morris Thea, Stables Melanie, Gilroy Derek W

机构信息

Centre for Clinical Pharmacology and Therapeutics, Division of Medicine, 5 University Street, University College London, London WC1E 6JJ, UK.

出版信息

ScientificWorldJournal. 2006 Aug 31;6:1048-65. doi: 10.1100/tsw.2006.192.

Abstract

Aspirin is unique among the nonsteroidal anti-inflammatory drugs in that it has both anti-inflammatory as well as cardio-protective properties. The cardio-protective properties arise form its judicious inhibition of platelet-derived thromboxane A2 over prostacyclin, while its anti-inflammatory effects of aspirin stem from its well-established inhibition of prostaglandin (PG) synthesis within inflamed tissues. Thus aspirin and the other NSAIDs have popularised the notion of inhibiting PG biosynthesis as a common anti-inflammatory strategy based on the erroneous premise that all eicosanoids are generally detrimental to inflammation. However, our fascination with aspirin has shown a more affable side to lipid mediators based on our increasing interest in the endogenous control of acute inflammation and in factors that mediate its resolution. Epi-lipoxins (epi-LXs), for instance, are produced from aspirin's acetylation of inducible cyclooxygenase 2 (COX-2) and together with Resolvins represent an increasingly important family of immuno-regulatory and potentially cardio-protective lipid mediators. Aspirin is beginning to teach us what nature knew all along--that not all lipid mediators are bad. It seems that while some eicosanoids are pathogenic in a variety of diseases, others are unarguable protective. In this review we will re-count aspirin's colorful history, discuss its traditional mode of action and the controversies associated therewith, as well as highlight some of the new pathways in inflammation and the cardiovascular systems that aspirin has recently revealed.

摘要

阿司匹林在非甾体抗炎药中独具特色,因为它兼具抗炎和心脏保护特性。其心脏保护特性源于对血小板衍生的血栓素A2的适度抑制超过前列环素,而阿司匹林的抗炎作用则源于其对炎症组织中前列腺素(PG)合成的既定抑制。因此,阿司匹林和其他非甾体抗炎药基于所有类花生酸通常对炎症有害这一错误前提,将抑制PG生物合成作为一种常见的抗炎策略推广开来。然而,基于我们对急性炎症的内源性控制以及介导其消退的因素的兴趣日益增加,我们对阿司匹林的喜爱显示出脂质介质更友好的一面。例如,表型脂氧素(epi-LXs)由阿司匹林对诱导型环氧化酶2(COX-2)的乙酰化产生,与消退素一起代表了一个越来越重要的免疫调节和潜在心脏保护脂质介质家族。阿司匹林开始让我们了解大自然一直都知道的事情——并非所有脂质介质都是有害的。似乎虽然一些类花生酸在多种疾病中具有致病性,但其他一些则无疑具有保护作用。在这篇综述中,我们将讲述阿司匹林丰富多彩的历史,讨论其传统作用方式以及与之相关的争议,并强调阿司匹林最近揭示的炎症和心血管系统中的一些新途径。

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