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内皮源性超极化因子在去氧肾上腺素诱导的大鼠小肠系膜动脉振荡性血管运动中的作用。

Role of endothelium-derived hyperpolarizing factor in phenylephrine-induced oscillatory vasomotion in rat small mesenteric artery.

作者信息

Okazaki Kayoko, Seki Sumihiko, Kanaya Noriaki, Hattori Jun-Ichi, Tohse Noritsugu, Namiki Akiyoshi

机构信息

Department of Anesthesiology, Sapporo Medical University School of Medicine, South-1, West-16, Chuo-ku, Sapporo 060-8556, Japan.

出版信息

Anesthesiology. 2003 May;98(5):1164-71. doi: 10.1097/00000542-200305000-00019.

Abstract

BACKGROUND

In small mesenteric arteries, endothelium-derived hyperpolarizing factor (EDHF) in addition to endothelium-derived relaxing factors (EDRFs) including NO plays an important role in acetylcholine-induced vasodilation. It has been reported that EDRFs play an important role in alpha(1)-adrenoceptor agonist-induced oscillatory vasomotion and in limiting vasoconstrictor response to the agonists; however, contribution of EDHF to the alpha(1)-agonist-induced oscillation is unknown.

METHODS

Rat small mesenteric arteries were isolated and cannulated at each end with a glass micropipette. The vessels were immersed in a bath (37 degrees C) containing physiologic saline solution. Changes in vessel diameter were measured using an optical density video detection system.

RESULTS

Denudation of the endothelium and inhibition of NO synthesis caused a leftward shift in the concentration-response relation for phenylephrine in the mesenteric arteries, whereas inhibition of cyclooxygenase by indomethacin had no effect. Blockade of Ca2+-activated K+ (K(Ca)) channels by charybdotoxin and apamin caused a further leftward shift in the concentration-response relation in the vessels pretreated with Nomega-nitro-l-arginine methylester and indomethacin. Phenylephrine at concentrations higher than 10(-6) m caused endothelium-dependent oscillatory vasomotion, which was reduced but not abolished after combined inhibition of the cyclooxygenase and NO synthase pathways. However, the K(Ca) channel blockers completely abolished the remaining component of oscillation.

CONCLUSIONS

Endothelially-derived NO is an important modulator of sustained agonist-induced vasoconstriction. NO, as well as endothelially-derived cyclooxygenase products and EDHF, also contribute significantly to phenylephrine-induced oscillatory vasomotion.

摘要

背景

在小肠系膜动脉中,除了包括一氧化氮(NO)在内的内皮源性舒张因子(EDRFs)外,内皮源性超极化因子(EDHF)在乙酰胆碱诱导的血管舒张中起重要作用。据报道,EDRFs在α1肾上腺素能受体激动剂诱导的振荡性血管运动以及限制对激动剂的血管收缩反应中起重要作用;然而,EDHF对α1激动剂诱导的振荡的作用尚不清楚。

方法

分离大鼠小肠系膜动脉,两端用玻璃微吸管插管。将血管浸入含有生理盐溶液的浴槽(37℃)中。使用光密度视频检测系统测量血管直径的变化。

结果

内皮剥脱和NO合成抑制导致肠系膜动脉中去氧肾上腺素浓度-反应关系向左移位,而吲哚美辛抑制环氧化酶则无作用。用蝎毒素和蜂毒明肽阻断钙激活钾(KCa)通道导致在用Nω-硝基-L-精氨酸甲酯和吲哚美辛预处理的血管中浓度-反应关系进一步向左移位。浓度高于10-6 m的去氧肾上腺素引起内皮依赖性振荡性血管运动,在联合抑制环氧化酶和NO合酶途径后,这种运动减弱但未消除。然而,KCa通道阻滞剂完全消除了振荡的剩余成分。

结论

内皮源性NO是持续激动剂诱导的血管收缩的重要调节因子。NO以及内皮源性环氧化酶产物和EDHF对去氧肾上腺素诱导的振荡性血管运动也有显著贡献。

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