Electromechanical effects of the direct renin inhibitor (aliskiren) on the pulmonary vein and atrium

被引:0
作者
Chin-Feng Tsai
Yao-Chang Chen
Yung-Kuo Lin
Shih-Ann Chen
Yi-Jen Chen
机构
[1] Chung Shan Medical University Hospital,Division of Cardiology, Department of Internal Medicine
[2] Chung Shan Medical University,Department of Biomedical Engineering
[3] School of Medicine,Division of Cardiovascular Medicine
[4] Chung Shan Medical University,Graduate Institute of Clinical Medicine
[5] National Defense Medical Center,Division of Cardiology and Cardiovascular Research Center
[6] Wan Fang Hospital,undefined
[7] Taipei Medical University,undefined
[8] Taipei Medical University,undefined
[9] Taipei Veterans General Hospital,undefined
来源
Basic Research in Cardiology | 2011年 / 106卷
关键词
Aliskiren; Arrhythmia; Pulmonary vein; Calcium transient;
D O I
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中图分类号
学科分类号
摘要
Activation of the atrial renin–angiotensin system plays an important role in the pathophysiology of atrial fibrillation (AF). The pulmonary vein (PV) and left atrium (LA) are important trigger and substrate for the genesis of AF. We investigate the effects of a direct renin inhibitor, aliskiren, on the PV and LA arrhythmogenic activity and the underlying electromechanical mechanisms. Conventional microelectrodes were used to record action potentials and contractility in isolated rabbit PVs and LA tissues before and after the administration of aliskiren (0.1, 1, 3 and 10 μM). By the whole-cell patch clamp and indo-1 fluorimetric ratio techniques, ionic currents and intracellular calcium transient were studied in isolated single PV and LA cardiomyocyte before and after the administration of aliskiren (3 μM). Aliskiren (0.1, 1, 3 and 10 μM) reduced PV firing rate in a concentration-dependent manner (6, 10, 14 and 17%) and decreased PV diastolic tension, which could be attenuated in the presence of 100 μM L-NG-Nitroarginine Methyl Ester (L-NAME). Aliskiren induced PV automatic rhythm exit block causing slow and irregular PV activity with variable pauses. Aliskiren increased PV and LA contractility, which could be abolished by pre-treating with 0.1 μM ryanodine. Aliskiren (3 μM) decreased L-type calcium currents, but increased reverse-mode of Na+/Ca2+ exchanger currents, intracellular calcium transients, and sarcoplasmic reticulum calcium content in PV and LA cardiomyocytes. Pretreatment with renin, losartan or angiotensin II did not alter the effect of aliskiren on sarcolemmal calcium flux. In conclusion, aliskiren reduces PV arrhythmogenic activity with a direct vasodilatory property and has a positive inotropic effect on cardiomyocytes. These findings may reveal the anti-arrhythmic and anti-heart failure potentials of aliskiren.
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页码:979 / 993
页数:14
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