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

被引:8
作者
Spiers, JP [1 ]
Kelso, EJ [1 ]
McDermott, BJ [1 ]
Scholfield, CN [1 ]
Silke, B [1 ]
机构
[1] QUEENS UNIV BELFAST,DEPT THERAPEUT & PHARMACOL,CTR MED BIOL,BELFAST BT9 7BL,ANTRIM,NORTH IRELAND
关键词
patch-clamp; endothelin; potassium current; PD155080; RES0-701; acetylcholine; cardiomyocyte;
D O I
10.1111/j.1476-5381.1996.tb16055.x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
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 (I-K(ACh) were investigated in the absence and presence of the receptor-selective antagonists, PD155080 (ET(A) receptor-selective adn RES-701 (ET(B) 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 mu M), 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 mM) alone did not affect the 'steady state' potassium current. Acetylcholine (1 mu M) 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 (I-K(ACh)) as they were blocked by atropine (10 mu M). Endothelin-1 (10 mM) 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 ET(A) receptor-selective antagonist, PD155080 (1 mu M), prevented (P<0.05) the ET-1 induced inhibition of I-K(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 ET(B) receptor-selective antagonist, RES-701 (1 mu m), only prevented (P<0.05) the inhibitory effect of endothelin-1 on the inward component of the I-K(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 I(K(ACh)) in rabbit atrial cardiomyocytes. This effect is primarily mediated by an ET(A) receptor-subtype, but is transiently and partially mediated by a RES-701-sensitive ET(B) receptor subtype. Inhibition of the I(K(ACh)) may account for the positive chronotropic properties of endothelin-1.
引用
收藏
页码:1427 / 1437
页数:11
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