首页> 外文OA文献 >Electrophysiological mechanisms for antiarrhythmic efficacy and positive inotropy of liriodenine, a natural aporphine alkaloid from Fissistigma glaucescens.
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Electrophysiological mechanisms for antiarrhythmic efficacy and positive inotropy of liriodenine, a natural aporphine alkaloid from Fissistigma glaucescens.

机译:电生理机制的抗衰老功效和正性肌力的liriodenine,一种来自Fissistigma glaucescens的天然阿朴啡生物碱。

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摘要

1. The antiarrhythmic potential and electromechanical effects of liriodenine, an aporphine alkaloid isolated from the plant, Fissistigma glaucescens, were examined. 2. In the Langendorff perfused (with constant pressure) rat heart, at a concentration of 0.3 to 3 microM, liriodenine was able to convert a polymorphic ventricular tachyrhythmia induced by the ischaemia-reperfusion (EC50 = 0.3 microM). 3. In isolated atrial and ventricular muscle, liriodenine increased the contractile force and slowed the spontaneous beating of the right atrium. 4. The liriodenine-induced positive inotropy was markedly attenuated by a transient outward K+ channel blocker, 4-aminopyridine (4-AP) but was not significantly affected by prazosin, propranolol, verapamil or carbachol. 5. In rat isolated ventricular myocytes, liriodenine prolonged action potential duration and decreased the maximal upstroke velocity of phase 0 depolarization (Vmax) and resting membrane potential in a concentration-dependent manner. The action potential amplitude was not significantly changed. 6. Whole-cell voltage clamp study revealed that liriodenine blocked the Na+ channel (INa) concentration-dependently (IC50 = 0.7 microM) and caused a leftward shift of its steady-state inactivation curve. However, its recovery rate from the inactivated state was not affected. The L-type Ca2+ currents (Ica) were also decreased, but to a lesser degree (IC50 = 2.5 microM, maximal inhibition = 35%). 7. Liriodenine inhibited the 4-AP-sensitive transient outward current (Ito) (IC50 = 2.8 microM) and moderately accelerated its rate of decay. The block of Ito was not associated with changes in the voltage-dependence of the steady-state inactivation curve or in the process of recovery from inactivation of the current. Liriodenine also reduced the amplitude of a slowly inactivating, steady-state outward current (Iss) (IC50 = 1.9 microM). These effects were consistent with its prolonging effect on action potential duration. The inwardly rectifying background K+ current (IK1), was also decreased but to a less degree. 8. Compared to quinidine, liriodenine exerted a stronger degree of block on INa, comparable degree of block on IK1, and lesser extent of block on ICa and Ito. 9. It is concluded that, through inhibition of Na+ and the Ito channel, liriodenine can suppress ventricular arrhythmias induced by myocardial ischaemia reperfusion. The positive inotropic effect can be explained by inhibition of the Ito channel and the subsequent prolongation of action potential duration. These results provide a satisfactory therapeutic potential for the treatment of cardiac arrhythmias.
机译:1.研究了从植物Fissistigma glaucescens分离得到的一种磷啡肽生物碱liriodenine的抗心律失常潜力和机电效应。 2.在浓度为0.3至3 microM的Langendorff灌注(恒压)大鼠心脏中,鹅绒rio碱能够将缺血再灌注(EC50 = 0.3 microM)诱导的多形性室性心律失常转化。 3.在孤立的心房和心室肌中,鹅绒rio烯碱可增加收缩力并减慢右心房的自发搏动。 4.短暂的向外K +通道阻滞剂4-氨基吡啶(4-AP)显着减弱了鹅绒碳素诱导的正性肌力,但不受哌唑嗪,普萘洛尔,维拉帕米或卡巴胆碱的影响。 5.在大鼠离体的心室肌细胞中,鹅绒den碱延长了动作电位的持续时间,并以浓度依赖的方式降低了0相去极化(Vmax)的最大上冲程速度和静息膜电位。动作电位振幅没有明显变化。 6.全细胞电压钳研究表明,鹅绒den碱可浓度依赖性地阻断Na +通道(INa)(IC50 = 0.7 microM),并导致其稳态失活曲线向左移动。但是,它从灭活状态的恢复率不受影响。 L型Ca2 +电流(Ica)也降低了,但程度较小(IC50 = 2.5 microM,最大抑制率= 35%)。 7. Liriodenine抑制了4-AP敏感的瞬态向外电流(Ito)(IC50 = 2.8 microM),并适度加快了其衰减速率。 Ito阻滞与稳态失活曲线的电压相关性变化或电流失活的恢复过程无关。 Liriodenine还降低了缓慢失活的稳态向外电流(Iss)的幅度(IC50 = 1.9 microM)。这些作用与其对动作电位持续时间的延长作用一致。向内整流的背景K +电流(IK1)也减小了,但程度较小。 8.与奎尼丁相比,鹅绒den碱对INa的阻断作用较强,与IK1的阻断作用相当,而对ICa和Ito的阻断作用较小。 9.结论是,通过抑制Na +和Ito通道,鹅绒den碱可以抑制心肌缺血再灌注引起的室性心律失常。正性肌力作用可以通过抑制Ito通道和随后延长动作电位持续时间来解释。这些结果为治疗心律不齐提供了令人满意的治疗潜力。

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