Suppr超能文献

三种噻二嗪酮衍生物,EMD 60417、EMD 66430和EMD 66398,具有III类抗心律失常活性,但电生理特性不同。

Three thiadiazinone derivatives, EMD 60417, EMD 66430, and EMD 66398, with class III antiarrhythmic activity but different electrophysiologic profiles.

作者信息

Himmel H M, Wettwer E, Lues I, Beier N, Jonas R, Ravens U

机构信息

Department of Pharmacology and Toxicology, Dresden University of Technology, Dresden, Germany.

出版信息

J Cardiovasc Pharmacol. 2001 Sep;38(3):438-49. doi: 10.1097/00005344-200109000-00012.

Abstract

The thiadiazinone derivatives EMD 60417, EMD 66430, and EMD 66398 were developed as class III antiarrhythmic agents. Their chemical structure is closely related to that of their calcium-sensitizing congener [+]-EMD 60263, and EMD 66398 possesses the methylsulfonylaminobenzoyl moiety present in the prototypical IKr blocker E-4031. We compared the electrophysiologic effects of these compounds with standard drugs (almokalant, E-4031, quinidine) in cardiac myocytes from guinea-pig ventricle and human atrium by whole-cell patch-clamp technique. The test compounds' class III action, which is related to impairment of K+ channel function, was confirmed by action potential measurements. EMD 60417, EMD 66430, EMD 66398, and almokalant (1 microM each) reversibly prolonged the action potential duration in guinea-pig myocytes. In the same cells, the rapidly activating component IKr of the delayed rectifier K+ current, which has been defined by its sensitivity to E-4031, was reduced by EMD 60417, EMD 66430, EMD 66398, and almokalant. Inhibition of IKr was concentration-dependent as determined by attenuation of tail currents. The slowly activating component IKs of the delayed rectifier K+ current was not affected. The inward rectifier K+ current IK1 was not influenced at potentials close to the reversal potential. Transient and sustained outward K+ currents (Ito, Iso) measured in human atrial myocytes were not altered by any EMD compound. L-type Ca2+ current was hardly affected at concentrations of 1-10 microM, but sodium current was decreased. Action potential prolongation by EMD 60417, EMD 66430, and EMD 66398 is due to block of IKr. INa is inhibited at higher concentrations by EMD 66430 and EMD 60417. EMD 66398 is more potent and selective for IKr than EMD 60417 and EMD 66430, and thus resembles E-4031 in structure and function.

摘要

噻二嗪酮衍生物EMD 60417、EMD 66430和EMD 66398被开发为III类抗心律失常药物。它们的化学结构与其钙增敏同系物[+]-EMD 60263密切相关,并且EMD 66398具有原型IKr阻滞剂E-4031中存在的甲基磺酰氨基苯甲酰基部分。我们通过全细胞膜片钳技术比较了这些化合物与标准药物(氨卡兰特、E-4031、奎尼丁)在豚鼠心室和人心房心肌细胞中的电生理作用。通过动作电位测量证实了测试化合物与K+通道功能受损相关的III类作用。EMD 60417、EMD 66430、EMD 66398和氨卡兰特(各1 microM)可逆地延长了豚鼠心肌细胞的动作电位持续时间。在相同细胞中,延迟整流K+电流的快速激活成分IKr(已根据其对E-4031的敏感性定义)被EMD 60417、EMD 66430、EMD 66398和氨卡兰特降低。通过尾电流衰减确定,IKr的抑制呈浓度依赖性。延迟整流K+电流的缓慢激活成分IKs未受影响。内向整流K+电流IK1在接近反转电位的电位下未受影响。在人心房肌细胞中测量的瞬时和持续外向K+电流(Ito、Iso)未被任何EMD化合物改变。在1-10 microM浓度下,L型Ca2+电流几乎未受影响,但钠电流降低。EMD 60417、EMD 66430和EMD 66398导致的动作电位延长是由于IKr的阻断。EMD 66430和EMD 60417在较高浓度下抑制INa。EMD 66398对IKr的作用比EMD 60417和EMD 66430更强且更具选择性,因此在结构和功能上类似于E-4031。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验