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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Voltage-dependent inhibition of brain Na(+) channels by American ginseng.
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Voltage-dependent inhibition of brain Na(+) channels by American ginseng.

机译:西洋参对脑Na(+)通道的电压依赖性抑制作用。

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摘要

American ginseng (Panax quinquefolius) is a major species of ginseng that has many pharmacological effects. Studies have demonstrated that constituents of ginseng have neuroprotective effects during ischemia. Neuronal damage during ischemic episodes has been associated with abnormal Na(+) fluxes. Drugs that block voltage-dependent Na(+) channels provide cytoprotection during cerebral ischemia. We thus hypothesized that American ginseng may block Na(+) channels. In this study, effects of an American ginseng aqueous extract was evaluated in tsA201 cells transfected with cDNA expressing alpha subunits of the Brain(2a) Na(+) channel using the whole-cell patch clamp technique. We found that American ginseng extract tonically and reversibly blocked the channel in a concentration- and voltage-dependent manner. It shifted the voltage-dependence of inactivation by 14 mV (3 mg/ml) in the hyperpolarizing direction and delayed recovery from inactivation, whereas activation of the channel was unaffected. Ginsenoside Rb(1), a major constituent of the American ginseng extract, produced similar effects. The data were compared with the actions of lidocaine, a Na(+) channel blocker. Our results suggest that Na(+) channel block by American ginseng extract and Rb(1) was primarily due to interaction with the inactive state of the channel. Inhibition of the Na(+) channel activity by American ginseng extract may contribute to its neuroprotective effect during ischemia.
机译:西洋参(Panax quinquefolius)是人参的主要种类,具有许多药理作用。研究表明,人参成分在缺血期间具有神经保护作用。缺血性发作期间的神经元损害与异常的Na(+)通量有关。阻断电压依赖性Na(+)通道的药物可在脑缺血期间提供细胞保护作用。因此,我们假设西洋参可能会阻止Na(+)通道。在这项研究中,使用全细胞膜片钳技术在用表达Brain(2a)Na(+)通道的alpha亚基的cDNA转染的tsA201细胞中评估了西洋参水提取物的作用。我们发现西洋参提取物以浓度和电压依赖性方式可逆且可逆地阻塞通道。它将失活的电压依赖性在超极化方向上偏移了14 mV(3 mg / ml),并延迟了从失活的恢复,而通道的激活不受影响。人参提取物的主要成分人参皂甙Rb(1)产生了相似的效果。将数据与利多卡因(一种Na(+)通道阻滞剂)的作用进行了比较。我们的结果表明,西洋参提取物和Rb(1)的Na(+)通道阻滞主要归因于与通道的非活性状态相互作用。西洋参提取物对Na(+)通道活性的抑制作用可能有助于其在缺血过程中的神经保护作用。

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