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新型组胺和血小板活化因子受体双重拮抗剂鲁帕他定对人心脏kv1.5通道的影响。

Effects of rupatadine, a new dual antagonist of histamine and platelet-activating factor receptors, on human cardiac kv1.5 channels.

作者信息

Caballero R, Valenzuela C, Longobardo M, Tamargo J, Delpón E

机构信息

Department of Pharmacology, School of Medicine, Universidad Complutense, 28040-Madrid, Spain.

出版信息

Br J Pharmacol. 1999 Nov;128(5):1071-81. doi: 10.1038/sj.bjp.0702890.

Abstract
  1. The effects of rupatadine, a new dual antagonist of both histamine H1 and platelet-activating factor receptors, were studied on human cloned hKv1.5 channels expressed in Ltk- cells using the whole-cell patch-clamp technique. 2. Rupatadine produced a use- and concentration-dependent block of hKv1.5 channels (KD=2.4+/-0.7 micronM) and slowed the deactivation of the tail currents, thus inducing the 'crossover' phenomenon. 3. Rupatadine-induced block was voltage-dependent increasing in the voltage range for channel opening suggesting an open channel interaction. At potentials positive to +10 mV the blockade decreased with a shallow voltage-dependence. Moreover, rupatadine also modified the voltage-dependence of hKv1.5 channel activation, which exhibited two components, the midpoint of the steeper component averaging -25. 2+/-2.7 mV. 4. When the intracellular K+ concentration ([K+]i) was lowered to 25% the voltage-dependent unblock observed at positive potentials was suppressed and the activation curve in the presence of rupatadine did not exhibit two components even when the midpoint of the activation curve was shifted to more negative potentials (-30. 3+/-1.3 mV). 5. On channels mutated on the residue R485 (R485Y) which is located on the external entryway of the pore the rupatadine-induced block did not decrease at potentials positive to +10 mV. In contrast, on V512M channels rupatadine reproduced all the features of the blockade observed on wild type channels. 6. All these results suggest that rupatadine blocks hKv1.5 channels binding to an external and to an internal binding site but only at concentrations much higher than therapeutic plasma levels in man. Efflux of K+ promotes the unbinding from the external site. Furthermore, rupatadine binds to an internal site and dramatically modifies the voltage-dependence of channel opening.
摘要
  1. 采用全细胞膜片钳技术,研究了新型组胺H1和血小板活化因子受体双重拮抗剂卢帕他定对Ltk-细胞中表达的人克隆hKv1.5通道的作用。2. 卢帕他定对hKv1.5通道产生了使用和浓度依赖性阻滞(KD=2.4±0.7微摩尔),并减慢了尾电流的失活,从而诱导了“交叉”现象。3. 卢帕他定诱导的阻滞是电压依赖性的,在通道开放的电压范围内增加,提示为开放通道相互作用。在高于+10 mV的电位下,阻滞作用随电压依赖性减弱而降低。此外,卢帕他定还改变了hKv1.5通道激活的电压依赖性,其表现出两个成分,较陡成分的中点平均为-25.2±2.7 mV。4. 当细胞内钾离子浓度([K+]i)降至25%时,在正电位下观察到的电压依赖性解阻滞被抑制,即使激活曲线的中点移至更负的电位(-30.3±1.3 mV),卢帕他定存在时的激活曲线也未表现出两个成分。5. 在位于孔外部入口处的残基R485(R485Y)发生突变的通道上,在高于+10 mV的电位下,卢帕他定诱导的阻滞并未降低。相反,在V512M通道上,卢帕他定再现了在野生型通道上观察到的所有阻滞特征。6. 所有这些结果表明,卢帕他定通过与外部和内部结合位点结合来阻滞hKv1.5通道,但仅在远高于人体治疗血浆水平的浓度下才会如此。钾离子外流促进从外部位点的解离。此外,卢帕他定与内部位点结合并显著改变通道开放的电压依赖性。

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Comparative effects of nonsedating histamine H1 receptor antagonists, ebastine and terfenadine, on human Kv1.5 channels.
Eur J Pharmacol. 1997 May 20;326(2-3):257-63. doi: 10.1016/s0014-2999(97)85421-0.

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