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去甲斑蝥素,一种具有负性变时作用的正性肌力药。

Thaliporphine, a positive inotropic agent with a negative chronotropic action.

作者信息

Su M J, Chang Y M, Chi J F, Lee S S

机构信息

Department of Pharmacology, College of Medicine, National Taiwan University, Taipei.

出版信息

Eur J Pharmacol. 1994 Mar 11;254(1-2):141-50. doi: 10.1016/0014-2999(94)90381-6.

Abstract

The effects of thaliporphine on contractions and electrophysiological properties of cardiac tissues were examined. In driven rat left atria and right ventricular strips, thaliporphine (1-30 microM) increased twitch tension dose-dependently. The positive inotropic effect of thaliporphine was unaffected by atenolol (3 microM) and prazosin (1 microM) but was significantly suppressed by verapamil (1 microM). An electrophysiological study revealed that thaliporphine (3-10 microM) markedly inhibited the action potential upstroke and prolonged the action potential duration (APD50) in rat and guinea pig atrial and ventricular cells. At 1-30 microM, thaliporphine reduced the transient outward current (Ito) of the rat ventricular cells in a dose-dependent manner. The peak Ito in rat ventricular cells and the delayed rectifying K+ current (Ik in guinea pig ventricular cells were reduced by thaliporphine (10 microM) to 37.3 +/- 2.1% (n = 8) and 45.3 +/- 1.8% (n = 4), respectively. In rat ventricular cells and guinea pig atrial cells, thaliporphine (1.5 microM) reduced the Na+ inward current (INa) with a negative shift (4-5 mV) relative to its half inactivation potential. For the Ca2+ inward current (ICa) in rat ventricular cells, 10 microM of thaliporphine caused a smaller increase in the peak ICa than 0.5 microM of Bay K 8644. The increase in ICa elicited by both agents was associated with a negative shift of its half activation potential from -10 +/- 2 mV to -18 +/- 2 mV (n = 6) by thaliporphine and -11 +/- 2 to -19 +/- 2 mV (n = 4) by Bay K 8644. These results indicate that thaliporphine is a weak Ca2+ channel agonist with strong Na+ and K+ channel blocking activities. The positive inotropic effect may be due to an increase in calcium entry mediated via partial activation of calcium channels or by inhibition of K+ efflux. Inhibition of K+ efflux would result in prolongation of APD50 and contribute to the negative chronotropic effect of thaliporphine.

摘要

研究了硫代卟啉对心脏组织收缩和电生理特性的影响。在驱动的大鼠左心房和右心室肌条中,硫代卟啉(1 - 30微摩尔)剂量依赖性地增加了抽搐张力。硫代卟啉的正性肌力作用不受阿替洛尔(3微摩尔)和哌唑嗪(1微摩尔)的影响,但被维拉帕米(1微摩尔)显著抑制。一项电生理研究表明,硫代卟啉(3 - 10微摩尔)显著抑制大鼠和豚鼠心房及心室细胞的动作电位上升支,并延长动作电位持续时间(APD50)。在1 - 30微摩尔时,硫代卟啉剂量依赖性地降低大鼠心室细胞的瞬时外向电流(Ito)。硫代卟啉(10微摩尔)使大鼠心室细胞的Ito峰值和豚鼠心室细胞的延迟整流钾电流(Ik)分别降低至37.3±2.1%(n = 8)和45.3±1.8%(n = 4)。在大鼠心室细胞和豚鼠心房细胞中,硫代卟啉(1.5微摩尔)降低钠内向电流(INa),相对于其半失活电位有负向偏移(4 - 5毫伏)。对于大鼠心室细胞中的钙内向电流(ICa),10微摩尔的硫代卟啉引起的ICa峰值增加小于0.5微摩尔的Bay K 8644。两种药物引起的ICa增加均与其半激活电位从 - 10±2毫伏负向偏移至 - 18±2毫伏(n = 6)相关,硫代卟啉引起的偏移为 - 11±2至 - 19±2毫伏(n = 4),Bay K 8644引起的偏移为 - 11±2至 - 19±2毫伏(n = 4)。这些结果表明,硫代卟啉是一种弱钙通道激动剂,具有较强的钠和钾通道阻断活性。正性肌力作用可能是由于通过钙通道部分激活介导的钙内流增加或钾外流抑制。钾外流抑制会导致APD50延长,并有助于硫代卟啉的负性变时作用。

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