Sutko J L, Kenyon J L
J Gen Physiol. 1983 Sep;82(3):385-404. doi: 10.1085/jgp.82.3.385.
To test whether ryanodine blocks the release of calcium from the sarcoplasmic reticulum in cardiac muscle, we examined its effects on the aftercontractions and transient depolarizations or transient inward currents developed by guinea pig papillary muscles and voltage-clamped calf cardiac Purkinje fibers in potassium-free solutions. Ryanodine (0.1-1.0 microM) abolished or prevented aftercontractions and transient depolarizations by the papillary muscles without affecting any of the other sequelae of potassium removal. In the presence of 4.7 mM potassium and at a stimulation rate of 1 Hz, ryanodine had only a small variable effect on papillary muscle force development and action potential characteristics. In calf Purkinje fibers, ryanodine (1 nM-1 microM) completely blocked the aftercontractions and transient inward currents without altering the steady state current-voltage relationship. Ryanodine also abolished the twitch in potassium-free solutions, but it enhanced the tonic force during depolarizing voltage-clamp steps. This latter effect was dependent on the combination of ryanodine and potassium-free solutions. The slow inward current was not blocked by 1 microM ryanodine, but ryanodine did appear to abolish an outward current that remained in the presence of 0.5 mM 4-aminopyridine. Our observations are consistent with the hypothesis that ryanodine, by inhibiting the release of calcium from the sarcoplasmic reticulum, prevents the oscillations in intracellular calcium that activate the transient inward currents and aftercontractions associated with calcium overload states.
为了测试ryanodine是否会阻断心肌肌浆网中钙的释放,我们研究了其对豚鼠乳头肌以及在无钾溶液中电压钳制的小牛心脏浦肯野纤维所产生的后收缩、瞬时去极化或瞬时内向电流的影响。Ryanodine(0.1 - 1.0微摩尔)可消除或预防乳头肌的后收缩和瞬时去极化,而不影响去除钾后的任何其他后遗症。在存在4.7毫摩尔钾且刺激频率为1赫兹的情况下,ryanodine对乳头肌力量发展和动作电位特征仅有微小的可变影响。在小牛浦肯野纤维中,ryanodine(1纳摩尔 - 1微摩尔)完全阻断了后收缩和瞬时内向电流,而不改变稳态电流 - 电压关系。Ryanodine在无钾溶液中也消除了抽搐,但在去极化电压钳制步骤中增强了强直力。后一种效应取决于ryanodine和无钾溶液的组合。1微摩尔ryanodine并未阻断缓慢内向电流,但ryanodine似乎确实消除了在存在0.5毫摩尔4 - 氨基吡啶时仍存在的外向电流。我们的观察结果与以下假设一致:ryanodine通过抑制肌浆网中钙的释放,防止细胞内钙的振荡,而这种振荡会激活与钙超载状态相关的瞬时内向电流和后收缩。