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Selective impairment of endothelium‐dependent relaxations by prostaglandin endoperoxide

 

作者: Belay Tesfamariam,  

 

期刊: Journal of Hypertension  (OVID Available online 1994)
卷期: Volume 12, issue 1  

页码: 41-48

 

ISSN:0263-6352

 

年代: 1994

 

出版商: OVID

 

关键词: Endothelium;free radicals;nitric oxide;prostaglandin endoperoxide-thromboxane A2-receptors;rat aorta

 

数据来源: OVID

 

摘要:

ObjectiveStudies of aortas from hypertensive and diabetic rats and rabbits have demonstrated impairment of endothelium-dependent relaxations, which were associated with increased release of endothelium-derived thromboxane A2(TXA2). This implicates enhanced release of TXA2or its precursor prostanoid, prostaglandin endoperoxide (PGH2), or both, as factors mediating the endothelial cell dysfunction.MethodsThe interaction of vasoconstrictor prostanoids (PGH2, PGF2αand U-46619, a stable thromboxane-receptor agonist) and oxygen-derived free radicals with the release of nitric oxide was examined in isolated aortas from Sprague-Dawley rats.ResultsExogenously applied PGH2or U-46619 caused concentration-dependent contractions of aortic rings, these contractions being blocked by the newly developed, potent and selective PGH2- and TXA2-receptor antagonist BMS-180291, but not by inhibition of TXA synthase or cyclo-oxygenase (using dazoxiben and indomethacin, respectively). In aortic rings contracted sub-maximally with phenylephrine, brief exposure to a subthreshold concentration of PGH2caused impairment of acetylcholine- and ADP-induced, but not of nitroprusside-induced, relaxations. The impairment was restored towards normal by BMS-180291 or by superoxide dismutase (SOD), a superoxide anion scavenger, but not by dazoxiben or indomethacin. In contrast, treatment of aortic rings with U-46619 or PGF2αdid not impair the relaxations. Oxygen-derived free radicals generated by xanthine oxidase caused contractions and impaired acetylcholine relaxations which were reversed by SOD but not by BMS-180291.ConclusionsThese findings indicate that activation of PGH2receptors causes contractions and selective impairment of endothelium-dependent relaxations by a mechanism involving generation of oxygen-derived free radicals in the endothelium.

 

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