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钙钠对蛙心的拮抗作用:一项电压钳研究。

Calcium-sodium antagonism on the frog's heart: a voltage-clamp study.

作者信息

Benninger C, Einwächter H M, Haas H G, Kern R

出版信息

J Physiol. 1976 Aug;259(3):617-45. doi: 10.1113/jphysiol.1976.sp011486.

DOI:10.1113/jphysiol.1976.sp011486
PMID:957260
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1309055/
Abstract
  1. In double sucrose-gap voltage-clamped frog atrial fibres the influence of [Ca]o and [Na]o on membrane current and contraction was investigated. 2. The slow (secondary) inward current varied with [Ca]o but was almost insensitive to changes in [Na]o. In contrast, the phasic (transient) contraction initiated by the slow inward current was affected by both [Ca]o and [Na]o. 3. With moderate changes of [Ca]o and [Na]o from normal, the strength of phasic contraction at a given depolarization followed the [Ca]o/[Na]2o ratio approximately. This was best seen at membrane potentials near zero level. 4. Under the same conditions, tonic (sustained) contractions associated with prolonged depolarizations were strictly correlated to the [Ca]o/[Na]2o ratio at any potential. No interrelation between tonic tension and steady-state current was found. 5. With extensive changes in [Ca]o and [Na]o, the sensitivity of both phasic and tonic tension to the [Ca]o/[Na]2o ratio declined, the negative effect of [Na]o becoming smaller than was expected from this ratio. 6. In Na-free choline-Ringer, a strong contracture developed followed by a spontaneous relaxation. Starting from the relaxed state, application of depolarizing clamps gave rise to phasic contractions with a very slow relaxation while tonic contractions were apparently lacking. 7. The results are interpreted in terms of an energy-dependent carrier mechanism exchanging one Ca for two Na ions across the cell membrane. The model implies a strong asymmetry in the rate constants governing the chemical reactions on both sides of the membrane. The system is thought to operate close to equilibrium at any potential, thereby determining the steady level of myoplasmic Ca. The equilibrium itself is considered to shift upon depolarization. Assuming that [Na]i is constant, the steady level of [Ca]i is expected to be proportional to the [Ca]o/[Na]2o ratio, the scale factor being a function of membrane potential. 8. The carrier model suggests the occurrence of a depolarization-induced inward transfer of Ca which might be involved in the generation of tonic contractions. 9. The apparent lack of tonic contractions in the absence of external Na ions may be explained by a suppression of carrier-mediated Ca influx normally occurring upon depolarization. 10. The antagonistic effects of [Ca]o and [Na]o on phasic contraction are understood as being due to alterations of the Ca pumping system rather than changes in slow inward current.
摘要
  1. 在双蔗糖间隙电压钳制的蛙心房纤维中,研究了细胞外钙浓度([Ca]o)和细胞外钠浓度([Na]o)对膜电流和收缩的影响。2. 缓慢(次级)内向电流随[Ca]o变化,但对[Na]o的变化几乎不敏感。相比之下,由缓慢内向电流引发的阶段性(瞬时)收缩受到[Ca]o和[Na]o两者的影响。3. 当[Ca]o和[Na]o相对于正常水平有适度变化时,在给定去极化情况下,阶段性收缩的强度大致遵循[Ca]o/[Na]2o比值。这在接近零电位的膜电位时最为明显。4. 在相同条件下,与长时间去极化相关的强直性(持续性)收缩在任何电位下都与[Ca]o/[Na]2o比值严格相关。未发现强直性张力与稳态电流之间存在相互关系。5. 当[Ca]o和[Na]o有大幅度变化时,阶段性和强直性张力对[Ca]o/[Na]2o比值的敏感性下降,[Na]o的负面影响变得比根据该比值预期的要小。6. 在无钠的胆碱 - 林格液中,会出现强烈的挛缩,随后是自发松弛。从松弛状态开始,施加去极化钳制会引发阶段性收缩,其松弛非常缓慢,而明显缺乏强直性收缩。7. 这些结果可根据一种能量依赖的载体机制来解释,该机制在细胞膜上用一个钙离子交换两个钠离子。该模型意味着在控制膜两侧化学反应的速率常数方面存在强烈的不对称性。该系统被认为在任何电位下都接近平衡运行,从而决定肌浆钙的稳定水平。认为平衡本身在去极化时会发生变化。假设细胞内钠浓度([Na]i)恒定,预期细胞内钙浓度([Ca]i)的稳定水平与[Ca]o/[Na]2o比值成正比,比例因子是膜电位的函数。8. 载体模型表明存在去极化诱导钙离子的内向转运,这可能参与强直性收缩的产生。9. 在没有外部钠离子时明显缺乏强直性收缩,这可能是由于去极化时通常发生的载体介导的钙内流受到抑制。10. [Ca]o和[Na]o对阶段性收缩的拮抗作用被理解为是由于钙泵系统的改变,而不是缓慢内向电流的变化。

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本文引用的文献

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[The calcium effect on the frog heart as a function of the ion balance between the cell membrane and the environment].[钙对蛙心的作用作为细胞膜与环境之间离子平衡的函数]
Helv Physiol Pharmacol Acta. 1948;6(2):208-21.
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Protagonistic effects of Na and Ca on tension development in cardiac muscle at low extracellular Na concentrations.在低细胞外钠浓度下钠和钙对心肌张力发展的促动作用。
Nat New Biol. 1973 May 9;243(123):57-9.
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The action of ions upon the frog's heart.离子对青蛙心脏的作用。
J Physiol. 1921 Mar 15;54(5-6):367-83. doi: 10.1113/jphysiol.1921.sp001938.
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The action of ions and lipoids upon the frog's heart.离子和类脂对蛙心的作用。
J Physiol. 1913 Oct 17;47(1-2):66-107. doi: 10.1113/jphysiol.1913.sp001614.
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Contractures in a superfused frog's ventricle.灌注蛙心室中的挛缩
J Physiol. 1966 Oct;186(2):261-83. doi: 10.1113/jphysiol.1966.sp008033.
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A further Contribution regarding the influence of the different Constituents of the Blood on the Contraction of the Heart.关于血液不同成分对心脏收缩影响的进一步贡献。
J Physiol. 1883 Jan;4(1):29-42.3. doi: 10.1113/jphysiol.1883.sp000120.
7
MOVEMENTS OF CA IN FROG HEART VENTRICLES AT REST AND DURING CONTRACTURES.蛙心心室在静息和挛缩期间钙的运动
J Physiol. 1963 Jul;167(3):515-50. doi: 10.1113/jphysiol.1963.sp007166.
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Calcium flux and contractility in guinea pig atria.豚鼠心房中的钙通量与收缩性
J Gen Physiol. 1962 Jan;45(3):371-94. doi: 10.1085/jgp.45.3.371.
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The antagonism between Ca and Na ions on the frog's heart.钙离子与钠离子对蛙心的拮抗作用。
J Physiol. 1958 Oct 31;143(3):486-505. doi: 10.1113/jphysiol.1958.sp006073.
10
The dual effect of calcium on the action potential of the frog's heart.钙对蛙心动作电位的双重作用。
J Physiol. 1966 May;184(2):291-311. doi: 10.1113/jphysiol.1966.sp007916.