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缝隙连接和环氧二十碳三烯酸在猪冠状动脉内皮依赖性超极化中的作用。

Role of gap junctions and EETs in endothelium-dependent hyperpolarization of porcine coronary artery.

作者信息

Edwards G, Thollon C, Gardener M J, Félétou M, Vilaine J, Vanhoutte P M, Weston A H

机构信息

School of Biological Sciences, University of Manchester, Manchester M13 9PT, UK.

出版信息

Br J Pharmacol. 2000 Mar;129(6):1145-54. doi: 10.1038/sj.bjp.0703188.

Abstract
  1. The effects of endothelium-derived hyperpolarizing factor (EDHF: elicited using substance P or bradykinin) were compared with those of 11,12-EET in pig coronary artery. Smooth muscle cells were usually impaled with microelectrodes through the adventitial surface. 2. Substance P (100 nM) and 11,12-EET (11,12-epoxyeicosatrienoic acid; 3 microM) hyperpolarized endothelial cells in intact arteries. These actions were unaffected by 100 nM iberiotoxin but were abolished by charybdotoxin plus apamin (each 100 nM). 3. Substance P (100 nM) and bradykinin (30 nM) hyperpolarized intact artery smooth muscle; Substance P had no effect after endothelium removal. 11,12-EET hyperpolarized de-endothelialized vessels by 12.6+/-0.3 mV, an effect abolished by 100 nM iberiotoxin. 4. 11,12-EET hyperpolarized intact arteries by 18.6+/-0.8 mV, an action reduced by iberiotoxin, which was ineffective against substance P. Hyperpolarizations to 11, 12-EET and substance P were partially inhibited by 100 nM charybdotoxin and abolished by further addition of 100 nM apamin. 5. 30 microM barium plus 500 nM ouabain depolarized intact artery smooth muscle but responses to substance P and bradykinin were unchanged. 500 microM gap 27 markedly reduced hyperpolarizations to substance P and bradykinin which were abolished in the additional presence of barium plus ouabain. 6. Substance P-induced hyperpolarizations of smooth muscle cells immediately below the internal elastic lamina were unaffected by gap 27, even in the presence of barium plus ouabain. 7. In pig coronary artery, 11,12-EET is not EDHF. Smooth muscle hyperpolarizations attributed to 'EDHF' are initiated by endothelial cell hyperpolarization involving charybdotoxin- (but not iberiotoxin) and apamin-sensitive K(+) channels. This may spread electrotonically via myoendothelial gap junctions but the involvement of an unknown endothelial factor cannot be excluded.
摘要
  1. 将内皮源性超极化因子(EDHF:使用P物质或缓激肽诱导产生)的作用与11,12-环氧二十碳三烯酸(11,12-EET)在猪冠状动脉中的作用进行比较。平滑肌细胞通常通过外膜表面用微电极刺入。2. P物质(100 nM)和11,12-EET(11,12-环氧二十碳三烯酸;3 microM)使完整动脉中的内皮细胞超极化。这些作用不受100 nM埃博毒素的影响,但被蝎毒素加蜂毒明肽(各100 nM)消除。3. P物质(100 nM)和缓激肽(30 nM)使完整动脉平滑肌超极化;去除内皮后P物质无作用。11,12-EET使去内皮血管超极化12.6±0.3 mV,该作用被100 nM埃博毒素消除。4. 11,12-EET使完整动脉超极化18.6±0.8 mV,该作用被埃博毒素减弱,埃博毒素对P物质无效。对11,12-EET和P物质的超极化作用被100 nM蝎毒素部分抑制,并被进一步加入100 nM蜂毒明肽消除。5. 30 microM钡加500 nM哇巴因使完整动脉平滑肌去极化,但对P物质和缓激肽的反应未改变。500 microM间隙27显著降低对P物质和缓激肽的超极化作用,在加入钡加哇巴因后该作用被消除。6. P物质诱导的内弹性膜下方平滑肌细胞的超极化不受间隙27的影响,即使在存在钡加哇巴因的情况下也是如此。7. 在猪冠状动脉中,11,12-EET不是EDHF。归因于“EDHF”的平滑肌超极化是由内皮细胞超极化引发的,涉及蝎毒素(而非埃博毒素)和对蜂毒明肽敏感的钾通道。这可能通过肌内皮间隙连接以电紧张方式传播,但不能排除未知内皮因子的参与。

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