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肺动脉和肺静脉对花生四烯酸反应性的差异:动脉舒张机制涉及环鸟苷酸3':5'-单磷酸和环腺苷酸3':5'-单磷酸。

Differences in responsiveness of intrapulmonary artery and vein to arachidonic acid: mechanism of arterial relaxation involves cyclic guanosine 3':5'-monophosphate and cyclic adenosine 3':5'-monophosphate.

作者信息

Ignarro L J, Harbison R G, Wood K S, Wolin M S, McNamara D B, Hyman A L, Kadowitz P J

出版信息

J Pharmacol Exp Ther. 1985 Jun;233(3):560-9.

PMID:2989487
Abstract

The objective of this study was to examine the relationship between responses of bovine intrapulmonary artery and vein to arachidonic acid and cyclic nucleotide levels in order to better understand the mechanism of relaxation elicited by arachidonic acid and acetylcholine. Arachidonic acid relaxed phenylephrine-precontracted arterial rings and elevated both cyclic GMP and cyclic AMP levels in arteries with intact endothelium. In contrast, endothelium-damaged arterial rings contracted to arachidonic acid without demonstrating significant changes in cyclic nucleotide levels. Indomethacin partially inhibited endothelium-dependent relaxation and abolished cyclic AMP accumulation whereas methylene blue, a guanylate cyclase inhibitor, partially inhibited relaxation and abolished cyclic GMP accumulation in response to arachidonic acid. All vessel responses were blocked by a combination of the two inhibitors. Prostaglandin (PG) I2 relaxed arterial rings and elevated cyclic AMP levels whereas PGE2 and PGF2 alpha caused contraction, suggesting that the indomethacin-sensitive component of arachidonic acid-elicited relaxation is due to PGI2 formation and cyclic AMP accumulation. The methylene blue-sensitive component is attributed to an endothelium-dependent but cyclooxygenase-independent generation of a substance causing cyclic GMP accumulation. Intrapulmonary veins contracted to arachidonic acid with no changes in cyclic nucleotide levels and PGI2 was without effect. Homogenates of intrapulmonary artery and vein formed 6-keto-PGF1 alpha, PGF2 alpha and PGE2 from [14C]arachidonic acid, which was inhibited by indomethacin. Thus, bovine intrapulmonary vein may not possess receptors for PGI2. The failure of endothelium-intact vein to relax to acetylcholine may be related to the lack of a relaxant effect by arachidonic acid, perhaps attributed to the absence of generation of an endothelium-derived relaxing factor.

摘要

本研究的目的是研究牛肺内动脉和静脉对花生四烯酸的反应与环核苷酸水平之间的关系,以便更好地理解花生四烯酸和乙酰胆碱引起舒张的机制。花生四烯酸可使苯肾上腺素预收缩的动脉环舒张,并使内皮完整的动脉中环鸟苷酸(cGMP)和环腺苷酸(cAMP)水平升高。相反,内皮受损的动脉环对花生四烯酸收缩,且环核苷酸水平无显著变化。吲哚美辛部分抑制内皮依赖性舒张并消除cAMP积累,而鸟苷酸环化酶抑制剂亚甲蓝部分抑制舒张并消除花生四烯酸刺激引起的cGMP积累。两种抑制剂联合使用可阻断所有血管反应。前列腺素(PG)I2使动脉环舒张并升高cAMP水平,而PGE2和PGF2α引起收缩,提示花生四烯酸引起舒张的吲哚美辛敏感成分是由于PGI2生成和cAMP积累。亚甲蓝敏感成分归因于一种引起cGMP积累的物质的内皮依赖性但不依赖环氧化酶的生成。肺内静脉对花生四烯酸收缩,环核苷酸水平无变化,PGI2无作用。肺内动脉和静脉匀浆可将[14C]花生四烯酸转化为6-酮-PGF1α、PGF2α和PGE2,这一过程被吲哚美辛抑制。因此,牛肺内静脉可能不具有PGI2受体。内皮完整的静脉对乙酰胆碱不舒张可能与花生四烯酸缺乏舒张作用有关,这可能归因于内皮源性舒张因子生成的缺失。

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