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豚鼠心室肌细胞中的收缩由一种与钠电流和L型电流分离的钙释放机制触发。

Contractions in guinea-pig ventricular myocytes triggered by a calcium-release mechanism separate from Na+ and L-currents.

作者信息

Ferrier G R, Howlett S E

机构信息

Department of Pharmacology, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

J Physiol. 1995 Apr 1;484 ( Pt 1)(Pt 1):107-22. doi: 10.1113/jphysiol.1995.sp020651.

DOI:10.1113/jphysiol.1995.sp020651
PMID:7602513
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1157925/
Abstract
  1. Unloaded cell shortening and membrane currents were examined in isolated guinea-pig ventricular myocytes at 37 degrees C using video edge detection and single-electrode voltage clamp. 2. Inward Na+ currents were eliminated by lidocaine, tetrodotoxin, replacement of extracellular Na+ with choline chloride or sucrose, or by voltage inactivation of Na+ channels. In the absence of Na+ current, the threshold for contraction was approximately -50 or -55 mV. 3. Verapamil (5 microM) and nifedipine (2 microM) failed to inhibit contractions at negative membrane potentials when positive conditioning pulses were used to maintain intracellular Ca2+ stores via Na(+)-Ca2+ exchange. In contrast, 200 microM Ni2+ inhibited these contractions. 4. Contractions were abolished when the extracellular solution was nominally Ca2+ free. However, contractions were restored by as little as 50 microM extracellular Ca2+. 5. Ryanodine (30 nM) completely abolished contractions initiated by depolarizing steps from -65 to -40 mV, but had minimal effects on contractions initiated by depolarizing steps from -40 to +5 mV. Subtraction of contraction-voltage relations determined in the presence of ryanodine from control relations revealed a ryanodine-sensitive component of contraction. This component activated at -55 mV and reached a plateau near -25 mV. 6. The amplitudes of contractions initiated by depolarizing steps from -40 mV were directly proportional to the magnitude of Ca2+ current (ICa). In contrast, contractions initiated by steps from either -55 or -65 mV were not proportional to ICa. These contractions appeared at potentials negative to the threshold for L-type Ca2+ current, increased to a plateau at more positive potentials and did not decrease at potentials at which ICa decreased. 7. Subtraction of the contraction-voltage relationship determined from a membrane potential of -40 mV from that at -55 mV revealed a component of contraction with a negative activation threshold whose amplitude was not proportional to inward current. The shape of this relationship was virtually identical to that of the ryanodine-sensitive component of contraction. 8. This study identifies a component of contraction associated with Ca2+ release from sarcoplasmic reticulum (SR) which can be separated from other mechanisms of contraction on the basis of membrane potential. Our observations suggest that this voltage-dependent release mechanism is a true trigger mechanism which activates a portion of cardiac contraction which is attributable to SR Ca2+ release.
摘要
  1. 在37℃下,使用视频边缘检测和单电极电压钳技术,对分离的豚鼠心室肌细胞的无负荷细胞缩短和膜电流进行了检测。2. 利多卡因、河豚毒素、用氯化胆碱或蔗糖替代细胞外钠离子、或通过钠离子通道的电压失活消除内向钠离子电流。在没有钠离子电流的情况下,收缩阈值约为-50或-55mV。3. 当使用正向调节脉冲通过钠钙交换维持细胞内钙离子储存时,维拉帕米(5μM)和硝苯地平(2μM)在负膜电位下未能抑制收缩。相比之下,200μM镍离子抑制了这些收缩。4. 当细胞外溶液名义上无钙离子时,收缩被消除。然而,低至50μM的细胞外钙离子就能恢复收缩。5. 雷诺丁(30nM)完全消除了从-65mV到-40mV去极化步骤引发的收缩,但对从-40mV到+5mV去极化步骤引发的收缩影响最小。从对照关系中减去在雷诺丁存在下测定的收缩-电压关系,揭示了收缩的雷诺丁敏感成分。该成分在-55mV时激活,在-25mV附近达到平台期。6. 从-40mV去极化步骤引发的收缩幅度与钙离子电流(ICa)的大小成正比。相比之下,从-55或-65mV步骤引发的收缩与ICa不成比例。这些收缩出现在L型钙离子电流阈值的负电位,在更正的电位增加到平台期,并且在ICa降低的电位时不降低。7. 从-55mV的膜电位测定的收缩-电压关系中减去从-40mV测定的收缩-电压关系,揭示了一个具有负激活阈值的收缩成分,其幅度与内向电流不成比例。这种关系的形状与收缩的雷诺丁敏感成分几乎相同。8. 本研究确定了一种与肌浆网(SR)钙离子释放相关的收缩成分,该成分可根据膜电位与其他收缩机制分离。我们的观察结果表明,这种电压依赖性释放机制是一种真正的触发机制,它激活了一部分可归因于SR钙离子释放的心脏收缩。

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本文引用的文献

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A role for depolarisation induced calcium entry on the Na-Ca exchange in triggering intracellular calcium release and contraction in rat ventricular myocytes.去极化诱导的钙内流在触发大鼠心室肌细胞钠钙交换、细胞内钙释放和收缩过程中的作用。
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Release of calcium from guinea pig cardiac sarcoplasmic reticulum induced by sodium-calcium exchange.钠钙交换诱导豚鼠心肌肌浆网钙释放
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Calcium tolerant ventricular myocytes prepared by preincubation in a "KB medium".通过在“KB培养基”中预孵育制备的耐钙心室肌细胞。
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Ryanodine in mammalian heart ventricular muscle: indication for the induction of calcium leakage from the sarcoplasmic reticulum.哺乳动物心脏心室肌中的兰尼碱:肌浆网钙泄漏诱导的指征。
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