首页> 外文OA文献 >A novel Na+ channel agonist, dimethyl lithospermate B, slows Na+ current inactivation and increases action potential duration in isolated rat ventricular myocytes
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A novel Na+ channel agonist, dimethyl lithospermate B, slows Na+ current inactivation and increases action potential duration in isolated rat ventricular myocytes

机译:新型Na +通道激动剂二甲基紫草酸B,减缓Na +电流失活并增加离体大鼠心室肌细胞的动作电位持续时间

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摘要

Voltage-gated Na+ channel blockers have been widely used as local anaesthetics and antiarrhythmic agents. It has recently been proposed that Na+ channel agonists can be used as inotropic agents. Here, we report the identification of a natural substance that acts as a Na+ channel agonist.Using the patch-clamp technique in isolated rat ventricular myocytes, we investigated the electrophysiological effects of the substances isolated from the root extract of Salvia miltiorrhiza, which is known as ‘Danshen' in Asian traditional medicine. By the intensive activity-guided fractionation, we identified dimethyl lithospermate B (dmLSB) as the most active component, while LSB, which is the major component of the extract, showed negligible electrophysiological effect. Action potential duration (APD90) was increased by 20 μM dmLSB from 58.8±12.1 to 202.3±9.5 ms. In spite of the prolonged APD, no early after-depolarization (EAD) was observed.dmLSB had no noticeable effect on K+ or Ca2+ currents, but selectively affected Na+ currents (INa). dmLSB slowed the inactivation kinetics of INa by increasing the proportion of slowly inactivating component without inducing any persistent INa. The relative amplitude of slow component compared to the peak fast INa was increased dose dependently by dmLSB (EC50=20 μM). Voltage dependence of inactivation was not affected by dmLSB, while voltage dependence of activation shifted by 5 mV to the depolarised direction.Since the APD prolongation by dmLSB did not provoke EAD, which is thought as a possible mechanism for the proarrhythmia seen in other Na+ channel agonists, dmLSB might be an excellent candidate for a Na+ channel agonist.
机译:电压门控Na +通道阻滞剂已被广泛用作局麻药和抗心律不齐药物。最近已经提出,Na +通道激动剂可以用作变力剂。在此,我们报告了鉴定为Na +通道激动剂的天然物质的方法。在孤立的大鼠心室肌细胞中使用膜片钳技术,我们研究了从丹参根提取物中分离出的物质的电生理效应。在亚洲传统医学中被称为“丹参”。通过密集的活性指导分级分离,我们确定了二甲基紫草酸B(dmLSB)是最有效的成分,而LSB是提取物的主要成分,其电生理作用可忽略不计。动作电位持续时间(APD90)从58.8±12.1毫秒增加了20μMdmLSB至202.3±9.5毫秒。尽管APD延长,但未观察到早期的去极化(EAD).dmLSB对K +或Ca2 +电流没有明显影响,但选择性影响Na +电流(INa)。 dmLSB通过增加缓慢失活组分的比例而不诱导任何持久性INa减慢了INa失活动力学。与峰值快速INa相比,慢速成分的相对振幅剂量增加了dmLSB(EC50 = 20μM)。失活的电压依赖性不受dmLSB的影响,而失活的电压依赖性向去极化方向移动了5 mV。由于dmLSB的APD延长不会引起EAD,这被认为是其他Na +通道中出现心律失常的可能机制。激动剂中,dmLSB可能是Na +通道激动剂的绝佳候选者。

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