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水杨酸钠、阿司匹林和吲哚美辛对人血小板中花生四烯酸代谢的联合作用。

The combined effects of sodium salicylate, aspirin and indomethacin on the metabolism of arachidonic acid in human platelets.

作者信息

Dahl M L, Uotila P

出版信息

Prostaglandins Leukot Med. 1984 Oct;16(1):95-107. doi: 10.1016/0262-1746(84)90090-8.

Abstract

The effects of acetylsalicylic acid (ASA, aspirin), indomethacin and sodium salicylate on the metabolism of exogenous 14C-arachidonic acid (AA) were studied in intact human platelets in vitro. ASA (100 microM) and indomethacin (1 and 10 microM) suppressed the metabolism of AA via the cyclo-oxygenase but had no effect on the lipoxygenase pathway. Sodium salicylate at 1 mM was ineffective whereas 2 mM salicylate significantly decreased the formation of TXB2 and HHT and increased that of other cyclo-oxygenase products without clearly affecting total cyclo-oxygenase activity. The formation of 12-HETE, the main metabolite of AA in human platelets, was decreased by 2 mM sodium salicylate as well as by the combination of 1 mM salicylate plus ASA or indomethacin. Pretreatment of platelets with sodium salicylate (1 or 2 mM) effectively prevented the inhibition of the cyclo-oxygenase by ASA (100 microM) but had no effect on the inhibition produced by indomethacin (1 or 10 microM). When sodium salicylate was added to the platelet-containing buffer after ASA or indomethacin it did not reverse the effects of these drugs on the cyclo-oxygenase. The present study suggests that sodium salicylate effectively prevents the inhibitory effect of ASA but not that of indomethacin on human platelet cyclo-oxygenase at the concentrations used. In addition, a high concentration of sodium salicylate (2 mM) may selectively inhibit the formation of TXB2 without clearly affecting total cyclo-oxygenase activity.

摘要

在体外完整的人血小板中研究了乙酰水杨酸(ASA,阿司匹林)、吲哚美辛和水杨酸钠对外源性14C-花生四烯酸(AA)代谢的影响。ASA(100微摩尔)和吲哚美辛(1和10微摩尔)通过环氧化酶抑制AA的代谢,但对脂氧合酶途径无影响。1毫摩尔的水杨酸钠无效,而2毫摩尔的水杨酸钠显著降低TXB2和HHT的形成,并增加其他环氧化酶产物的形成,而未明显影响总环氧化酶活性。人血小板中AA的主要代谢产物12-HETE的形成,被2毫摩尔的水杨酸钠以及1毫摩尔的水杨酸钠加ASA或吲哚美辛的组合所降低。用1或2毫摩尔的水杨酸钠预处理血小板可有效防止ASA(100微摩尔)对环氧化酶的抑制,但对吲哚美辛(1或10微摩尔)产生的抑制无影响。当在ASA或吲哚美辛之后将水杨酸钠加入含血小板的缓冲液中时,它不会逆转这些药物对环氧化酶的作用。本研究表明,在所使用的浓度下,水杨酸钠可有效防止ASA对人血小板环氧化酶的抑制作用,但不能防止吲哚美辛的抑制作用。此外,高浓度的水杨酸钠(2毫摩尔)可能选择性抑制TXB2的形成,而未明显影响总环氧化酶活性。

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