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锶对蟾蜍心室肌的一些电学和力学效应:与钙的比较。

Some electrical and mechanical effects of strontium on toad ventricular muscle: comparison to calcium.

作者信息

Bass B G, Ciulla E M, Klop P, Van Baal S

出版信息

J Physiol. 1975 Nov;252(3):547-64. doi: 10.1113/jphysiol.1975.sp011158.

DOI:10.1113/jphysiol.1975.sp011158
PMID:812985
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1348483/
Abstract
  1. The mechanical and electrophysiological effects of Sr were evaluated and compared to those of Ca in isolated, electrically driven toad ventricular muscle strips. The effects of Ca and Sr were compared at concentrations from control (2 mM) to 10 mM either by substitution of Sr for Ca at equimolar concentration, or by maintenance of a constant total Ca plus Sr concentration within which individual Ca and Sr concentrations were varied. 2. Changes in the degree of contractile activation were evaluated in terms of changes in maximal dT/dt of isometric contractions, maximal dL/dt of very lightly loaded isotonic contractions, and the shape of after-loaded force-velocity curves, with specific attention directed to the shape of the curves as they approached Vmax on the velocity axis. Effects on the cell membrane were evaluated in terms of changes in the transmembrane action potential (recorded with glass micro-electrodes) and in the mechanical parameters directly related to its duration in amphibian ventricle, viz. the duration of isometric tension and of isotonic shortening. Isometric tension and action potentials were recorded simultaneously. 3. Ca and Sr, at concentrations above control, had similar but not identical effects on dT/dt and dL/dt. Both ions alone in equimolar concentrations, or together at constant total Ca plus Sr concentration, increased dT/dt and dL/dt and shifted force-velocity curves upward. At constant total Ca plus Sr concentration, force-velocity curves were virtually superimposable as they approached the velocity intercept. 4. The duration of the action potential was markedly prolonged by Sr and shortened by Ca in concentrations above control. Unlike dT/dt and dL/dt, the total duration of isometric tension and isotonic shortening depended upon the specific Ca and Sr concentrations within a constant total concentration, and were progressively prolonged as the Sr concentration was increased. 5. The similar effects of Ca and Sr on dT/dt, dL/dt, and on the force-velocity relationship at light loads depended upon the presence of Ca ions. In Sr alone, dT/dt and dL/dt were faster than in an equimolar concentration of Ca, and time to maximal dT/dt and dL/dt was prolonged. The force-velocity curve in Sr alone was consistently shifted upward beyond the other curves in which Ca was present. These differences between the two ions are attributed in part to the rapid and early repolarization of the action potential in elevated Ca and the resultant abbreviation of the build up in active state and slower dT/dt and dL/dt. 6. The results suggest that Ca and Sr act in a similar although not identical way in activating contraction but are competitive at the cell membrane.
摘要
  1. 在分离的、电驱动的蟾蜍心室肌条中评估了锶(Sr)的机械和电生理效应,并与钙(Ca)的效应进行了比较。通过等摩尔浓度的Sr替代Ca,或维持总Ca加Sr浓度恒定(其中Ca和Sr的个体浓度变化),在从对照浓度(2 mM)到10 mM的浓度下比较了Ca和Sr的效应。2. 根据等长收缩的最大dT/dt变化、非常轻负荷的等张收缩的最大dL/dt变化以及后负荷力-速度曲线的形状来评估收缩激活程度的变化,特别关注曲线在速度轴上接近Vmax时的形状。根据跨膜动作电位(用玻璃微电极记录)的变化以及与两栖类心室中其持续时间直接相关的机械参数,即等长张力持续时间和等张缩短持续时间,来评估对细胞膜的影响。同时记录等长张力和动作电位。3. 高于对照浓度的Ca和Sr对dT/dt和dL/dt有相似但不完全相同的影响。等摩尔浓度的两种离子单独存在,或在总Ca加Sr浓度恒定的情况下一起存在,都会增加dT/dt和dL/dt,并使力-速度曲线向上移动。在总Ca加Sr浓度恒定的情况下,力-速度曲线在接近速度截距时几乎可重叠。4. Sr使动作电位持续时间明显延长,而高于对照浓度的Ca则使其缩短。与dT/dt和dL/dt不同,等长张力和等张缩短的总持续时间取决于总浓度恒定情况下特定的Ca和Sr浓度,并且随着Sr浓度的增加而逐渐延长。5. Ca和Sr对dT/dt、dL/dt以及轻负荷下的力-速度关系的相似影响取决于Ca离子的存在。单独的Sr中,dT/dt和dL/dt比等摩尔浓度的Ca中更快,达到最大dT/dt和dL/dt的时间延长。单独Sr中的力-速度曲线始终向上移动,超过存在Ca的其他曲线。这两种离子之间的这些差异部分归因于高Ca时动作电位的快速早期复极化以及由此导致的活性状态积累的缩短和较慢的dT/dt和dL/dt。6. 结果表明,Ca和Sr在激活收缩方面的作用方式相似但不完全相同,但在细胞膜上具有竞争性。

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本文引用的文献

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The effects of potassium, ammonium, calcium, strontium and magnesium on the electrogram and myogram of mammalian heart muscle.钾、铵、钙、锶和镁对哺乳动物心肌电描记图和肌动描记图的影响。
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Effect of strontium on cardiac contractility and membrane resting potentials.锶对心脏收缩性和膜静息电位的影响。
Am J Physiol. 1962 Nov;203:844-8. doi: 10.1152/ajplegacy.1962.203.5.844.
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Force-velocity relations in mammalian heart muscle.哺乳动物心肌中的力-速度关系。
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