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兰尼碱对哺乳动物心肌细胞内钙离子瞬变的影响。

Effects of ryanodine on intracellular Ca2+ transients in mammalian cardiac muscle.

作者信息

Wier W G, Yue D T, Marban E

出版信息

Fed Proc. 1985 Dec;44(15):2989-93.

PMID:4065357
Abstract

We observed the effects of ryanodine on the aequorin luminescence, membrane potential, and contraction of canine cardiac Purkinje fibers and ferret ventricular muscle. In canine Purkinje fibers, ryanodine (10 nM to 1 microM) abolished the spontaneous spatiotemporal fluctuations in [Ca2+] that occur as a result of Ca2+-induced Ca2+ release from the sarcoplasmic reticulum (SR) during exposure to low-Na+ solutions. Ryanodine strongly reduced the twitch and both components of the intracellular aequorin luminescence signal (L1 and L2), which normally accompanies contraction. The small luminescence signals that remained in ryanodine could be abolished by a Ca2+ channel blocker (nitrendipine, 10 microM). The plateau phase of the action potential was reduced by nitrendipine in the presence of ryanodine, which suggests that Ca2+ current was not blocked by ryanodine. In ferret ventricular tissue, ryanodine (1 microM) prolonged the action potential and reduced the peak amplitudes of both the aequorin transient and the twitch, while greatly prolonging the time-to-peak of both signals. Increases in extracellular [Ca2+] restored the peak amplitudes of the twitch and the aequorin luminescence, but did not restore the normal time-to-peak. The results show that in both tissues, the negative inotropic effect of ryanodine is due to the reduction of the intracellular [Ca2+] transient. Inasmuch as neither Ca2+ entry via surface membrane Ca2+ channels nor Na+-Ca2+ exchange appears to be blocked by ryanodine, the most probable cause of reduction of the [Ca2+] transient is an inhibition of Ca2+ release by the SR.

摘要

我们观察了ryanodine对犬心脏浦肯野纤维和雪貂心室肌的水母发光蛋白发光、膜电位及收缩的影响。在犬浦肯野纤维中,ryanodine(10 nM至1 μM)消除了在低钠溶液暴露期间因肌浆网(SR)中Ca2+诱导的Ca2+释放而出现的[Ca2+]自发时空波动。Ryanodine强烈降低了通常伴随收缩的抽搐以及细胞内水母发光蛋白发光信号的两个成分(L1和L2)。ryanodine中残留的小发光信号可被Ca2+通道阻滞剂(尼群地平,10 μM)消除。在ryanodine存在的情况下,尼群地平降低了动作电位的平台期,这表明ryanodine并未阻断Ca2+电流。在雪貂心室组织中,ryanodine(1 μM)延长了动作电位,降低了水母发光蛋白瞬变和抽搐的峰值幅度,同时极大地延长了两个信号的峰值时间。细胞外[Ca2+]的增加恢复了抽搐和水母发光蛋白发光的峰值幅度,但未恢复正常的峰值时间。结果表明,在这两种组织中,ryanodine的负性肌力作用是由于细胞内[Ca2+]瞬变的降低。由于ryanodine似乎既不阻断通过表面膜Ca2+通道的Ca2+内流,也不阻断Na+-Ca2+交换,[Ca2+]瞬变降低的最可能原因是SR对Ca2+释放的抑制。

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