Daskalou Telemachos, Karamouzis Michalis, Liaros Georgios
Biochemistry Laboratory, AHEPA University Hospital, 546 36 Thessaloniki, Macedonia, Greece.
Hell J Nucl Med. 2006 Jan-Apr;9(1):49-52.
This article reviews our current knowledge of the role of oxygen free radicals (OFR) in the process of arachidonic acid metabolism and platelet activation. During this activation several platelet enzymatic products are formed, which are measured by radioimmunoassays (RIA) and radioimmunometric assays (IRMA). Many studies have indicated that platelets are able to produce OFR, which are likely to play a significant role in the mechanisms of platelets activation and aggregation. These findings are important because they show that OFR may have a significant role in the mechanism of atherosclerosis and thrombosis. The role of several antioxidant factors in platelets' activation and aggregation is also presented in this review. It was found that antioxidant substances which act like OFR "scavengers" cause inhibition of arachidonic acid derivatives production and also inhibition of platelets activation. These studies suggest the possible therapeutic intervention with antioxidants acting as antiplatelet agents, to improve the pharmacological effects of various antiplatelet drugs. Finally we present our studies related to the arachidonic acid metabolites. The determination of arachidonic metabolic derivatives as thromboxane A(2), prostaglandin E(2), prostacyclin I(2) and isoprostane 8-iso-PG F(2alpha) by RIA and IRMA tests is important for the actual study of the above metabolic mechanisms because these tests are more accurate and less expensive, as compared to routine ELISA and other similar tests used for the same purpose.
本文综述了我们目前对氧自由基(OFR)在花生四烯酸代谢和血小板激活过程中作用的认识。在这种激活过程中会形成几种血小板酶产物,可通过放射免疫分析(RIA)和放射免疫测定法(IRMA)进行检测。许多研究表明血小板能够产生OFR,其可能在血小板激活和聚集机制中发挥重要作用。这些发现很重要,因为它们表明OFR可能在动脉粥样硬化和血栓形成机制中起重要作用。本综述还介绍了几种抗氧化因子在血小板激活和聚集中的作用。研究发现,起到OFR“清除剂”作用的抗氧化物质会抑制花生四烯酸衍生物的产生,并抑制血小板激活。这些研究表明,使用抗氧化剂作为抗血小板药物进行治疗干预可能会改善各种抗血小板药物的药理作用。最后,我们介绍了与花生四烯酸代谢产物相关的研究。通过RIA和IRMA检测来测定花生四烯酸代谢衍生物,如血栓素A(2)、前列腺素E(2)、前列环素I(2)和异前列腺素8-异-PG F(2α),对于上述代谢机制的实际研究很重要,因为与用于相同目的的常规ELISA和其他类似检测相比,这些检测更准确且成本更低。