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植物性雌激素三羟异黄酮对家兔房室结细胞自发活动的电生理效应
作者姓名:Cheng YP  Ma T  He RR
作者单位:河北医科大学基础医学研究所生理室,石家庄,050017
摘    要:本研究旨在应用经典玻璃微电极方法观察植物性雌激素三羟异黄酮(genistein,GST)对家兔房室结细胞自发活动的电生理效应及其作用机制。GST(10-100μmol/L)不仅以剂量依赖性方式抑制房室结起搏细胞的动作电位0相最大上升速度(Vmax)、4期去极化速率(VDD)、自发起搏频率(RPF)和动作电位幅值(APA),而且延长复极化90%的时间(APD90)。如提高灌流液中钙离子浓度以及应用L型钙通道开放剂Bay K8644(0.25μmol/L),则可拮抗GST对起搏细胞的上述电理效应,但NO合酶阻断剂L-NAME(0.5nmol/L)对GST的效应并无影响,以上结果提示,GST可抑制家兔房室结的自发活动,这些效应可能与其抑制钙离子内流有关,但此作用机制中并无NO参与。

关 键 词:植物性雌激素  三羟异黄酮  房室结  钙电流

Electrophysiological effects of phytoestrogen genistein on spontaneous activity of rabbit atrioventricular node cells
Cheng YP,Ma T,He RR.Electrophysiological effects of phytoestrogen genistein on spontaneous activity of rabbit atrioventricular node cells[J].Acta Physiologica Sinica,2003,55(1):9-13.
Authors:Cheng Yan-Ping  Ma Tao  He Rui-Rong
Institution:CHENG Yan Ping,MA Tao,HE Rui Rong * Department of Physiology,Institute of Basic Medicine,Hebei Medical University,Shijiazhuang 050017
Abstract:The purpose of this study was to determine the electrophysiological effects of genistein (GST) on spontaneous activity of atrioventricular (AV) node and the underlying mechanism(s). Action potentials in AV node cells were recorded using intracellular microelectrode technique. GST not only reduced the amplitude of action potential (APA), maximal rate of depolarization (Vmax), velocity of diastolic (phase 4) depolarization (VDD), and rate of spontaneous firing (RSF), but also prolonged 90% duration of action potential (APD90) in a concentration-dependent manner. The effects of GST (50 μmol/L) could be blocked completely by pretreatment with Bay K8644 (0.25 μmol/L), an agonist of L-type calcium channel. Pretreatment with NG-nitro-L-arginine methyl ester (L-NAME, 0.5 mmol/L), a nitric oxide (NO) synthase inhibitor, did not affect the effects of GST on AV node cells. Elevation of Ca2+ concentration (5 mmol/L) in superfusate antagonized the effects of GST (50 μmol/L). These results suggest that GST exerted a negative electrophysiological effects of spontaneous activity of AV node cells in rabbits. These effects were likely due to reduction in calcium influx, but had no association with NO release.
Keywords:phytoestrogen  genistein  atrioventricular node  calcium currents
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