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首页> 外文期刊>Current medicinal chemistry >Effect of the antifibrillatory compound tedisamil (KC-8857) on transmembrane currents in mammalian ventricular myocytes.
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Effect of the antifibrillatory compound tedisamil (KC-8857) on transmembrane currents in mammalian ventricular myocytes.

机译:抗纤颤化合物泰地米尔(KC-8857)对哺乳动物心室肌细胞中跨膜电流的影响。

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摘要

The cellular mechanism of action of tedisamil (KC-8857) (TED), a novel antiarrhythmic/antifibrillatory compound, was studied on transmembrane currents in guinea pig, rabbit and dog ventricular myocytes by applying the patch-clamp and the conventional microelectrode technique. In guinea pig myocytes the rapid component of the delayed rectifier potassium current (IKr) was largely diminished by 1 microM TED (from 0.88+/-0.17 to 0.23+/-0.07 pA/pF, n=5, p<0.05), while its slow component (IKs) was reduced only by 5 microM TED (from 8.1+/-0.3 to 4.23+/-0.07 pA/pF, n=5, p<0.05). TED did not significantly change the IKr and IKs kinetics. In rabbit myocytes 1 microM TED decreased the amplitude of the transient outward current (I(to)) from 20.3+/-4.9 to 13.9+/-2.8 pA/pF (n=5, p<0.05), accelerated its fast inactivation time constant from 8.3+/-0.6 to 3.5+/-0.5 ms (n=5, p<0.05) and reduced the ATP-activated potassium current (IKATP) from 38.2+/-11.8 to 18.4+/-4.7 pA/pF (activator: 50 microM cromakalim; n=5, p<0.05). In dog myocytes 2 microM TED blocked the fast sodium current (INa) with rapid onset and moderately slow offset kinetics, while the inward rectifier potassium (IK1), the inward calcium (ICa) and even the I(to) currents were not affected by TED in concentration as high as 10 microM. The differences in I(to) responsiveness between dog and rabbit are probably due to the different alpha-subunits of I(to) in these species. It is concluded that inhibition of several transmembrane currents, including IKr, IKs, I(to), IKATP and even INa, can contribute to the high antiarrhythmic/antifibrillatory potency of TED, underlying predominant Class III combined with I A/B type antiarrhythmic characteristics.
机译:通过应用膜片钳和常规微电极技术,研究了一种新型的抗心律失常/抗纤颤性化合物泰地米尔(KC-8857)(TED)在豚鼠,兔和狗心室肌细胞中的跨膜电流,并研究了其作用机制。在豚鼠心肌细胞中,延迟整流器钾电流(IKr)的快速成分在很大程度上被1 microM TED减弱(从0.88 +/- 0.17到0.23 +/- 0.07 pA / pF,n = 5,p <0.05),而其慢速成分(IKs)仅降低了5 microM TED(从8.1 +/- 0.3降至4.23 +/- 0.07 pA / pF,n = 5,p <0.05)。 TED并未显着改变IKr和IKs动力学。在兔心肌细胞中,1 microM TED将瞬时外向电流(I(to))的幅度从20.3 +/- 4.9降至13.9 +/- 2.8 pA / pF(n = 5,p <0.05),加快了其快速失活时间常数从8.3 +/- 0.6毫秒降低到3.5 +/- 0.5毫秒(n = 5,p <0.05),并将ATP激活的钾电流(IKATP)从38.2 +/- 11.8降低到18.4 +/- 4.7 pA / pF(活化剂:50 microM克罗马卡林; n = 5,p <0.05)。在犬心肌细胞中,2 microM TED阻断了快速的钠电流(INa),具有快速的起效和中度缓慢的偏移动力学,而向内整流钾(IK1),向内钙(ICa)甚至I(to)电流不受以下影响TED的浓度高达10 microM。狗和兔子之间I(to)反应性的差异可能是由于这些物种中I(to)的α-亚基不同所致。结论是,抑制多种跨膜电流,包括IKr,IKs,I(to),IKATP甚至INa,可促进TED的高抗心律不齐/抗纤颤力,其基础是III类优势和I A / B型抗心律不齐特征。

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