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钾通道在大鼠肝动脉中对硝基精氨酸耐药的内皮依赖性舒张中的作用

Role of potassium channels in endothelium-dependent relaxation resistant to nitroarginine in the rat hepatic artery.

作者信息

Zygmunt P M, Högestätt E D

机构信息

Department of Clinical Pharmacology, Institute of Laboratory Medicine, Lund University Hospital, Sweden.

出版信息

Br J Pharmacol. 1996 Apr;117(7):1600-6. doi: 10.1111/j.1476-5381.1996.tb15327.x.

Abstract
  1. In the presence of indomethacin (IM, 10 microM) and N omega-nitro-L- arginine (L-NOARG, 0.3 mM), acetylcholine (ACh) induces an endothelium-dependent smooth muscle hyperpolarization and relaxation in the rat isolated hepatic artery. The potassium (K) channel inhibitors, tetrabutylammonium (TBA, 1 mM) and to a lesser extent 4-aminopyridine (4-AP, 1 mM) inhibited the L-NOARG/IM-resistant relaxation induced by ACh, whereas apamin (0.1-0.3 microM), charybdotoxin (0.1-0.3 microM), iberiotoxin (0.1 microM) and dendrotoxin (0.1 microM) each had no effect. TBA also inhibited the relaxation induced by the receptor-independent endothelial cell activator, A23187. 2. When combined, apamin (0.1 microM) + charybdotoxin (0.1 microM), but not apamin (0.1 microM) + iberiotoxin (0.1 microM) or a triple combination of 4-AP (1 mM) + apamin (0.1 microM) + iberiotoxin (0.1 microM), inhibited the L-NOARG/IM-resistant relaxation induced by ACh. At a concentration of 0.3 microM, apamin + charybdotoxin completely inhibited the relaxation. This toxin combination also abolished the L-NOARG/ IM-resistant relaxation induced by A23187. 3. In the absence of L-NOARG, TBA (1 mM) inhibited the ACh-induced relaxation, whereas charybdotoxin (0.3 microM) + apamin (0.3 microM) had no effect, indicating that the toxin combination did not interfere with the L-arginine/NO pathway. 4. The gap junction inhibitors halothane (2 mM) and 1-heptanol (2 mM), or replacement of NaCl with sodium propionate did not affect the L-NOARG/IM-resistant relaxation induced by ACh. 5. Inhibition of Na+/K(+)-ATPase by ouabain (1 mM) had no effect on the L-NOARG/IM-resistant relaxation induced by ACh. Exposure to a K(+)-free Krebs solution, however, reduced the maximal relaxation by 13% without affecting the sensitivity to ACh. 6. The results suggest that the L-NOARG/IM-resistant relaxation induced by ACh in the rat hepatic artery is mediated by activation of K-channels sensitive to TBA and a combination of apamin + charybdotoxin. Chloride channels, Na+/K(+)-ATPase and gap junctions are probably not involved in the response. It is proposed that endothelial cell activation induces secretion of an endothelium-derived hyperpolarizing factor(s) (EDHF), distinct from NO and cyclo-oxygenase products, which activates more than one type of K-channel on the smooth muscle cells. Alternatively, a single type of K-channel, to which both apamin and charybdotoxin must bind for inhibition to occur, may be the target for EDHF.
摘要
  1. 在吲哚美辛(IM,10微摩尔)和Nω-硝基-L-精氨酸(L-NOARG,0.3毫摩尔)存在的情况下,乙酰胆碱(ACh)可诱导大鼠离体肝动脉中内皮依赖性平滑肌超极化和舒张。钾(K)通道抑制剂四丁基铵(TBA,1毫摩尔)以及在较小程度上的4-氨基吡啶(4-AP,1毫摩尔)可抑制ACh诱导的对L-NOARG/IM耐药的舒张,而蜂毒明肽(0.1 - 0.3微摩尔)、蝎毒素(0.1 - 0.3微摩尔)、iberiotoxin(0.1微摩尔)和树眼镜蛇毒素(0.1微摩尔)均无作用。TBA还可抑制由受体非依赖性内皮细胞激活剂A23187诱导的舒张。2. 当联合使用时,蜂毒明肽(0.1微摩尔) + 蝎毒素(0.1微摩尔),而非蜂毒明肽(0.1微摩尔) + iberiotoxin(0.1微摩尔)或4-AP(1毫摩尔) + 蜂毒明肽(0.1微摩尔) + iberiotoxin(0.1微摩尔)的三联组合,可抑制ACh诱导的对L-NOARG/IM耐药的舒张。在浓度为0.3微摩尔时,蜂毒明肽 + 蝎毒素可完全抑制舒张。这种毒素组合还可消除A23187诱导的对L-NOARG/IM耐药的舒张。3. 在不存在L-NOARG的情况下,TBA(1毫摩尔)可抑制ACh诱导的舒张,而蝎毒素(0.3微摩尔) + 蜂毒明肽(0.3微摩尔)则无作用,表明该毒素组合不会干扰L-精氨酸/一氧化氮途径。4. 缝隙连接抑制剂氟烷(2毫摩尔)和1-庚醇(2毫摩尔),或用丙酸钠替代氯化钠,均不影响ACh诱导的对L-NOARG/IM耐药的舒张。5. 哇巴因(1毫摩尔)抑制Na+/K(+)-ATP酶对ACh诱导的对L-NOARG/IM耐药的舒张无作用。然而,暴露于无钾的克雷布斯溶液中可使最大舒张降低13%,而不影响对ACh的敏感性。6. 结果表明,大鼠肝动脉中ACh诱导的对L-NOARG/IM耐药的舒张是由对TBA敏感的K通道以及蜂毒明肽 + 蝎毒素的组合激活介导的。氯离子通道、Na+/K(+)-ATP酶和缝隙连接可能不参与该反应。有人提出,内皮细胞激活可诱导一种不同于一氧化氮和环氧化酶产物的内皮源性超极化因子(EDHF)分泌,该因子可激活平滑肌细胞上不止一种类型的K通道。或者,一种单一类型的K通道可能是EDHF的作用靶点,蜂毒明肽和蝎毒素都必须与之结合才能产生抑制作用。

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