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内皮素-1介导对兔离体心房心肌细胞乙酰胆碱激活钾电流的抑制作用。

Endothelin-1 mediated inhibition of the acetylcholine-activated potassium current from rabbit isolated atrial cardiomyocytes.

作者信息

Spiers J P, Kelso E J, McDermott B J, Scholfield C N, Silke B

机构信息

School of Biomedical Science, Queen's University of Belfast, Medical Biology Centre.

出版信息

Br J Pharmacol. 1996 Dec;119(7):1427-37. doi: 10.1111/j.1476-5381.1996.tb16055.x.

Abstract
  1. Endothelin-1 is a 21 amino acid peptide with potent inotropic and chronotropic actions in the heart. Relatively little is known about the underlying electrophysiological effects of the peptide. In this study, the effects of endothelin-1 (ET-1) on the acetylcholine-activated potassium current (IK(ACh) were investigated in the absence and presence of the receptor-selective antagonists, PD155080 (ETA receptor-selective) and RES-701 (ETB receptor-selective) in rabbit atrial cardiomyocytes. 2. Cells were obtained from New Zealand White rabbits (2.5-3 kg) by enzymatic dissociation with collagenase. Potassium currents were recorded, in the presence of nifedipine (5 microM), by use of the whole cell ruptured patch-clamp technique. Following stabilization, control recordings were made with standard pulse protocols, and drugs were applied by a gravity fed microperfusion system. 3. Endothelin-1 (10 nM) alone did not affect the "steady state' potassium current. Acetylcholine (1 microM) increased (P < 0.05) the potassium current to-1321 +/- 290 pA, from a control value of -955 +/- 191 pA, at a step potential of -100 mV. Acetylcholine also increased the holding current at -40 mV from +80 +/- 9 pA to +242 +/- 38 pA, and this effect was abolished (P < 0.05) in the presence of endothelin-1 (+44 +/- 13 pA). The responses to acetylcholine were attributed to activation of the atrial muscarinic-activated potassium current (IK(ACh)) as they were blocked by atropine (10 microM). Endothelin-1 (10 nM) in the presence of acetylcholine did not affect the "steady state' potassium current (-882 +/- 88 pA compared to a control value of -870 +/- 98 pA, at -100 mV). 4. The ETA receptor-selective antagonist, PD155080 (1 microM), prevented (P < 0.05) the ET-1 induced inhibition of IK(ACh) at all potentials. PD155080, in the presence of endothelin-1 and acetylcholine, increased the inward component of the "steady state' potassium current to -1030 +/- 210 pA from a control value of -804 +/- 224 pA at a step potential of -100 mV. Also the outward component was increased at a potential of -20 mV from +90 +/- 17 pA to +241 +/- 47 pA. 5. Unlike PD155080, the ETB receptor-selective antagonist, RES-701 (1 microM), only prevented (P < 0.05) the inhibitory effect of endothelin-1 on the inward component of the IK(ACh); at -100 mV, RES-701, in the presence of endothelin-1 and acetylcholine, increased the "steady state' potassium current to -913 +/- 137 pA from -733 +/- 116 pA. Furthermore, RES-701, in contrast to PD155080, failed to sustain this inhibitory effect as, in the presence of endothelin-1 and acetylcholine, the "steady state' potassium current returned to a value of -768 +/- 96 pA, at a step potential of -100 mV. 6. In conclusion, endothelin-1 clearly inhibits the effects of acetylcholine on IK(ACh) in rabbit atrial cardiomyocytes. This effect is primarily mediated by an ETA receptor-subtype, but is transiently and partially mediated by a RES-701-sensitive ETB receptor subtype. Inhibition of the IK(ACh) may account for the positive chronotropic properties of endothelin-1.
摘要
  1. 内皮素 -1是一种由21个氨基酸组成的肽,对心脏具有强大的变力性和变时性作用。关于该肽潜在的电生理效应,人们了解相对较少。在本研究中,在兔心房肌细胞中,于不存在和存在受体选择性拮抗剂PD155080(ETA受体选择性)和RES -701(ETB受体选择性)的情况下,研究了内皮素 -1(ET -1)对乙酰胆碱激活的钾电流(IK(ACh))的影响。2. 通过用胶原酶进行酶解从新西兰白兔(2.5 - 3千克)获取细胞。在硝苯地平(5微摩尔)存在的情况下,使用全细胞破膜片钳技术记录钾电流。稳定后,采用标准脉冲方案进行对照记录,并通过重力微灌注系统施加药物。3. 单独的内皮素 -1(10纳摩尔)不影响“稳态”钾电流。乙酰胆碱(1微摩尔)使钾电流增加(P < 0.05),在 -100毫伏的阶跃电位下,从对照值 -955 ± 191皮安增加到 -1321 ± 290皮安。乙酰胆碱还使 -40毫伏时的钳制电流从 +80 ± 9皮安增加到 +242 ± 38皮安,并且在存在内皮素 -1时这种效应被消除(P < 0.05)(变为 +44 ± 13皮安)。对乙酰胆碱的反应归因于心房毒蕈碱激活的钾电流(IK(ACh))的激活,因为它们被阿托品(10微摩尔)阻断。在存在乙酰胆碱的情况下,内皮素 -1(10纳摩尔)不影响“稳态”钾电流(在 -100毫伏时,与对照值 -870 ± 98皮安相比为 -882 ± 88皮安)。4. ETA受体选择性拮抗剂PD155080(1微摩尔)在所有电位下均阻止(P < 0.05)ET -1诱导的IK(ACh)抑制。在 -100毫伏的阶跃电位下,在存在内皮素 -1和乙酰胆碱的情况下,PD155080使“稳态”钾电流的内向成分从对照值 -804 ± 224皮安增加到 -1030 ± 210皮安。在 -20毫伏的电位下,外向成分也从 +90 ± 17皮安增加到 +241 ± 47皮安。5. 与PD155080不同,ETB受体选择性拮抗剂RES -701(1微摩尔)仅阻止(P < 0.05)内皮素 -1对IK(ACh)内向成分的抑制作用;在 -100毫伏时,在存在内皮素 -1和乙酰胆碱的情况下,RES -701使“稳态”钾电流从 -733 ± 116皮安增加到 -913 ± 137皮安。此外,与PD155080相反,RES -701未能维持这种抑制作用,因为在存在内皮素 -1和乙酰胆碱的情况下,在 -100毫伏的阶跃电位下,“稳态”钾电流恢复到 -768 ± 96皮安的值。6. 总之,内皮素 -1明显抑制乙酰胆碱对兔心房肌细胞中IK(ACh)的作用。这种作用主要由ETA受体亚型介导,但也由RES -701敏感的ETB受体亚型短暂且部分介导。IK(ACh)的抑制可能解释了内皮素 -1的正性变时特性。

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