首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >The pharmacological properties of K+ currents from rabbit isolated aortic smooth muscle cells.
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The pharmacological properties of K+ currents from rabbit isolated aortic smooth muscle cells.

机译:兔离体主动脉平滑肌细胞钾离子电流的药理特性。

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摘要

1. Using the whole-cell patch-clamp technique, the effects of several K+ channel blocking drugs on K+ current recorded from rabbit isolated aortic smooth muscle cells were investigated. 2. Upon depolarization from -80 mV, outward K+ current composed of several distinct components were observed: a transient, 4-aminopyridine (4-AP)-sensitive component (I1) and a sustained component (Isus), comprising a 4-AP-sensitive delayed rectifier current (IK(V)), and a noisy current which was sensitive to tetraethylammonium (TEA), and probably due to Ca(2+)-activated K+ current (IK(Ca)). 3. Several drugs in clinical or experimental use have as part of their action an inhibitory effect on specific K+ channels. Because of their differential K+ channel blocking effects, these drugs were used in an attempt to characterize further the K+ channels in rabbit aortic smooth muscle cells. Imipramine, phencyclidine, sotalol and amitriptyline failed to block selectively any of the components of K+ current, and were thus of little value in isolating individual channel contributions. Clofilium showed selective block of IK(V) in the presence of TEA, but only at low stimulation frequencies (0.07 Hz). At higher frequencies (1 Hz) of depolarization, both I1 and IK(V) were suppressed to a similar extent. Thus, the blocking action of clofilium was use-dependent. 4. The voltage-dependent inactivation of I1 and the delayed rectifier were very similar although a brief (100 ms) pre-pulse to -30 mV could preferentially inactivate I1. Together with the non-selective blocking effects of the K+ channel blockers, similarities in the activation and inactivation of these two components suggest that they may not exist as separate ionic channels, but as distinct kinetic states within the same K+ channel population. 5. The effects of all of these drugs on tension were examined in strips of rabbit aorta. The non-specific K+ channel blockers caused only minor increases in basal tension. TEA and 4-AP by themselves caused significant increases in tension and were even more effective when applied together. There appeared to be no correlation between the effects of the drugs tested on tension and their actions on currents recorded from isolated myocytes. Thus tension studies are an inappropriate means of investigating the mechanism of action of these drugs, and studies on ionic currents in isolated myocytes cannot easily predict drug actions on intact tissues.
机译:1.使用全细胞膜片钳技术,研究了几种K +通道阻断药物对兔离体主动脉平滑肌细胞记录的K +电流的影响。 2.从-80 mV去极化后,观察到由几个不同成分组成的向外K +电流:瞬态的4-氨基吡啶(4-AP)敏感成分(I1)和持续成分(Isus),包括4-AP敏感的延迟整流器电流(IK(V)),以及对四乙铵(TEA)敏感的噪声电流,这可能是由于Ca(2+)激活的K +电流(IK(Ca))引起的。 3.在临床或实验中使用的几种药物的作用之一是对特定的K +通道具有抑制作用。由于它们具有不同的K +通道阻滞作用,因此使用这些药物试图进一步表征兔主动脉平滑肌细胞中的K +通道。丙咪嗪,苯环利定,索他洛尔和阿米替林不能选择性地阻断K +电流的任何成分,因此在分离单个通道的作用方面价值不大。在TEA存在下,clofilium显示出IK(V)的选择性阻滞,但仅在低刺激频率(0.07 Hz)下出现。在较高的去极化频率(1 Hz)下,I1和IK(V)的抑制程度相似。因此,clofilium的阻断作用取决于使用情况。 4.尽管短暂(100 ms)至-30 mV的预脉冲可以优先使I1失活,但是I1的电压相关失活和延迟整流器非常相似。连同K +通道阻滞剂的非选择性阻滞作用,这两个组分的激活和失活的相似性表明它们可能不以单独的离子通道形式存在,而是以相同的K +通道群中不同的动力学状态存在。 5.在兔主动脉条中检查了所有这些药物对张力的作用。非特异性K +通道阻滞剂仅引起基础张力的轻微增加。 TEA和4-AP本身导致张力显着增加,并且一起使用时效果更佳。被测药物对张力的作用与其对分离的心肌细胞记录的电流的作用之间似乎没有相关性。因此,张力研究是研究这些药物作用机理的不适当手段,对离体心肌细胞中离子电流的研究不能轻易预测完整组织的药物作用。

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