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MCI-154对大鼠心肌细胞的变力作用。

Inotropic effects of MCI-154 on rat cardiac myocytes.

作者信息

Chen Huan-Zhen, Cui Xiang-Li, Zhao Hua-Chen, Zhao Lu-Ying, Lu Ji-Yuan, Wu Bo-Wei

机构信息

Department of Physiology, Shanxi Medical University, Taiyuan 030001, China.

出版信息

Sheng Li Xue Bao. 2004 Jun 25;56(3):301-5.

Abstract

Calcium sensitizers exert positive inotropic effects without increasing intracellular Ca(2+). Thus, they avoid the undesired effects of Ca(2+) overload such as arrhythmias and cell injury, but most of them may impair myocyte relaxation. However, MCI-154, also a calcium sensitizer, has no impairment to cardiomyocyte relaxation. To clarify the underlying mechanisms, we examined the effects of MCI-154 on Ca(2+) transient and cell contraction using ion imaging system, and its influence on L-type Ca(2+) current and Na(+)/ Ca(2+) exchange current with patch clamp technique in rat ventricular myocytes as well. The results showed that: (1) MCI-154 (1-100 micromol/L) had no effect on L-type Ca(2+) current; (2) MCI-154 concentration-dependently increased cell shortening from 5.00+/-1.6 microm of control to 6.2+/-1.6 microm at 1 micromol/L, 8.7+/-1.6 microm at 10 micromol/L and 14.0+/-1.4 microm at 100 micromol/L, respectively, with a slight increase in Ca(2+) transient amplitude and an abbreviation of Ca(2+) transient restore kinetics assessed by time to 50% restore (TR(50)) and time to 90% restore (TR(90)); (3) MCI-154 dose-dependently increased the electrogenic Na(+)/ Ca(2+) exchange current both in the inward and the outward directions in rat ventricular myocytes. These results indicate that MCI-154 exerted a positive inotropic action without impairing myocyte relaxation. The stimulation of inward Na(+)/ Ca(2+) exchange current may accelerate the Ca(2+) efflux, leading to abbreviations of TR(50) and TR(90) in rat myocytes. The findings suggest that the improvement by MCI-154 of myocyte relaxation is attributed to the forward mode of Na(+)/ Ca(2+) exchange.

摘要

钙敏化剂可产生正性肌力作用而不增加细胞内钙离子浓度。因此,它们可避免钙离子超载的不良影响,如心律失常和细胞损伤,但大多数钙敏化剂可能会损害心肌细胞舒张功能。然而,同样作为钙敏化剂的MCI-154对心肌细胞舒张功能并无损害。为阐明其潜在机制,我们使用离子成像系统研究了MCI-154对钙离子瞬变和细胞收缩的影响,并采用膜片钳技术研究了其对大鼠心室肌细胞L型钙电流和钠钙交换电流的影响。结果显示:(1)MCI-154(1 - 100 μmol/L)对L型钙电流无影响;(2)MCI-154浓度依赖性地增加细胞缩短幅度,对照组为5.00±1.6μm,1μmol/L时为6.2±1.6μm,10μmol/L时为8.7±1.6μm,100μmol/L时为14.0±1.4μm,同时钙离子瞬变幅度略有增加,通过50%恢复时间(TR(50))和90%恢复时间(TR(90))评估的钙离子瞬变恢复动力学缩短;(3)MCI-154剂量依赖性地增加大鼠心室肌细胞内向和外向的电生性钠钙交换电流。这些结果表明,MCI-154在不损害心肌细胞舒张功能的情况下发挥正性肌力作用。内向钠钙交换电流的刺激可能加速钙离子外流,导致大鼠心肌细胞TR(50)和TR(90)缩短。研究结果提示,MCI-154对心肌细胞舒张功能的改善归因于钠钙交换的正向模式。

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