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内皮细胞在缓激肽引起的离体动脉舒张中的作用。

Role of endothelial cells in relaxation of isolated arteries by bradykinin.

作者信息

Cherry P D, Furchgott R F, Zawadzki J V, Jothianandan D

出版信息

Proc Natl Acad Sci U S A. 1982 Mar;79(6):2106-10. doi: 10.1073/pnas.79.6.2106.

Abstract

Bradykinin elicits relaxation of isolated transverse rings of canine coronary, celiac, superior mesenteric, renal, splenic, pulmonary, gastric, and femoral arteries. After endothelial cells of the vessel wall are removed by rubbing of the intimal surface, canine arteries fail to relax upon addition of bradykinin. The endothelium-dependent relaxation of canine arteries remains intact after treatment with cyclooxygenase inhibitors (indomethacin and flurbiprofen), and this argues against mediation by prostaglandins. When they are stimulated with bradykinin, endothelial cells of canine arteries appear to release a substance mediating vascular smooth muscle relaxation. In contrast, preparations of arteries of cats (superior mesenteric) and rabbits (superior mesenteric and celiac) may be rubbed on the intimal surface without a consistent loss of sensitivity to the relaxing effects of bradykinin. In addition, relaxation of the cat and rabbit arteries is completely blocked by cyclooxygenase inhibitors. Preliminary studies indicate that bradykinin relaxes human arteries in an endothelium-dependent manner and that this effect is not mediated by prostaglandins. We have previously reported that arteries of all species tested require the presence of endothelial cells for relaxation in response to acetylcholine and we have also demonstrated, using the rabbit aorta, that this effect is mediated by the release of an uncharacterized substance from these cells that relaxes vascular smooth muscle. We conclude that bradykinin relaxes canine and human arteries via a similar mechanism but that it relaxes cat and rabbit arteries by stimulating release of prostaglandins from as yet undefined cell types.

摘要

缓激肽可使犬冠状动脉、腹腔动脉、肠系膜上动脉、肾动脉、脾动脉、肺动脉、胃动脉和股动脉的离体横向环松弛。在用内膜表面摩擦法去除血管壁内皮细胞后,犬动脉在加入缓激肽时不再松弛。用环氧化酶抑制剂(吲哚美辛和氟比洛芬)处理后,犬动脉的内皮依赖性松弛仍然存在,这表明其并非由前列腺素介导。当用缓激肽刺激时,犬动脉的内皮细胞似乎会释放一种介导血管平滑肌松弛的物质。相比之下,猫(肠系膜上动脉)和兔(肠系膜上动脉和腹腔动脉)的动脉制剂在内膜表面摩擦后,对缓激肽舒张作用的敏感性并未持续丧失。此外,猫和兔动脉的舒张完全被环氧化酶抑制剂阻断。初步研究表明,缓激肽以内皮依赖性方式使人类动脉松弛,且这种作用并非由前列腺素介导。我们之前报道过,所有受试物种的动脉对乙酰胆碱的舒张反应都需要内皮细胞的存在,并且我们还用兔主动脉证明了这种作用是由这些细胞释放一种未明确的物质介导的,该物质可使血管平滑肌松弛。我们得出结论,缓激肽通过类似机制使犬和人类动脉松弛,但通过刺激尚未明确的细胞类型释放前列腺素来使猫和兔动脉松弛。

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