Suppr超能文献

在血小板灌注心脏中,去纤苷选择性刺激冠状动脉血管前列环素生成,但不刺激血小板血栓素生成。

Selective stimulation of coronary vascular PGI2 but not of platelet thromboxane formation by defibrotide in the platelet perfused heart.

作者信息

Löbel P, Schrör K

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1985 Nov;331(2-3):125-30. doi: 10.1007/BF00634228.

Abstract

Defibrotide is a partially depolymerized DNA fraction, having a molecular weight of about 20,000 and possessing antithrombotic and fibrinolytic activities. The present study was designed to investigate the action of defibrotide on PGI2 and thromboxane formation as well as left ventricular pressure and coronary vascular resistance in the platelet-perfused in vitro heart (Schrör et al. 1981). Defibrotide (0.1 mg/ml) administration resulted in a longlasting and significant elevation, seven-fold above control within 80 min, of PGI2 release from the platelet-perfused heart preparation while thromboxane and PGE2 release remained unaffected. This effect was only seen in presence of platelets but not in platelet-free perfused heart preparations. Urokinase, at an equieffective fibrinolytic concentration (10 IU/ml, euglobulin clot-lysis time) did not influence PGI2 generation. Treatment of the platelets with acetylsalicylic acid prevented the stimulatory action of defibrotide on vascular PGI2 as well as the transient decrease in coronary vascular resistance seen after administration of the agent. The data suggest that defibrotide is a selective stimulus for coronary vascular PGI2 formation. The mechanism of action is unknown, but appears to require platelets as an essential cofactor. The PGI2 stimulation by defibrotide appears not to be associated with its fibrinolytic action.

摘要

去纤苷是一种部分解聚的DNA组分,分子量约为20,000,具有抗血栓形成和纤溶活性。本研究旨在探讨去纤苷对体外血小板灌注心脏中前列环素(PGI2)和血栓素生成以及左心室压力和冠状血管阻力的作用(施勒尔等人,1981年)。给予去纤苷(0.1毫克/毫升)导致血小板灌注心脏制剂中PGI2释放持续且显著升高,在80分钟内比对照组高出7倍,而血栓素和前列腺素E2(PGE2)释放未受影响。这种效应仅在有血小板存在时出现,在无血小板灌注心脏制剂中未观察到。尿激酶在等效纤溶浓度(10国际单位/毫升,优球蛋白凝块溶解时间)下不影响PGI2生成。用乙酰水杨酸处理血小板可阻止去纤苷对血管PGI2的刺激作用以及给药后观察到的冠状血管阻力短暂下降。数据表明,去纤苷是冠状血管PGI2形成的选择性刺激物。作用机制尚不清楚,但似乎需要血小板作为必需的辅助因子。去纤苷对PGI2的刺激作用似乎与其纤溶作用无关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验