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丹曲林钠的作用机制。

The mechanism of action of dantrolene sodium.

作者信息

Morgan K G, Bryant S H

出版信息

J Pharmacol Exp Ther. 1977 Apr;201(1):138-47.

PMID:321754
Abstract

Dantrolene sodium is thought to affect some step in the excitation-contraction coupling process. Using a point voltage clamp to determine mechanical thresholds of individual fibers of frog, rat and goat skeletal muscle preparations, we found that dantrolene both raises (moves to more positive potentials) the rheobasic potential and increases the steepness of the strength-duration curve for mechanical threshold. The effect of raising the rheobase reaches a maximum at 1.2 x 10-5M dantrolene whereas the steepness effect occurs only at a saturating concentration (3.8x10-5M),indicating that dantrolene has two sites of action. The rheobase effect is absent below 18 degrees C (suggesting a phase transition) and it is competitively antagnoized by the calcium ionophore A23187 which can release calcium from the sarcoplasmic reticulum. The data indicate that dantrolene raises the rheobase by directly decreasing the release of calcium from the sarcoplasmic reticulum. We propose that dantrolene inhibits the movement of a natural calcium ionophore. Measurements of the voltage-dependent charge movement associated with excitation-contraction coupling showed that dantrolene did not significantly change the amount of charge moved. The time to peak of the ON current was not significantly changed, but that of the OFF current was significantly shortened. This action of dantrolene on the kinetics of the OFF current may account for its effect on the steepness of the strength-duration curve.

摘要

丹曲林钠被认为会影响兴奋-收缩偶联过程中的某个步骤。我们使用点电压钳来测定青蛙、大鼠和山羊骨骼肌标本中单个纤维的机械阈值,发现丹曲林既能提高(使电位向更正方向移动)基强度电位,又能增加机械阈值强度-时间曲线的斜率。提高基强度的作用在丹曲林浓度为1.2×10⁻⁵M时达到最大值,而斜率效应仅在饱和浓度(3.8×10⁻⁵M)时出现,这表明丹曲林有两个作用位点。基强度效应在18℃以下不存在(提示有相变),并且可被能从肌浆网释放钙的钙离子载体A23187竞争性拮抗。数据表明,丹曲林通过直接减少肌浆网中钙的释放来提高基强度。我们推测丹曲林抑制了一种天然钙离子载体的移动。对与兴奋-收缩偶联相关的电压依赖性电荷移动的测量表明,丹曲林并未显著改变电荷移动量。开启电流的峰值时间没有显著变化,但关闭电流的峰值时间显著缩短。丹曲林对关闭电流动力学的这种作用可能解释了它对强度-时间曲线斜率的影响。

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