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Contribution of sarcolemmal sodium-calcium exchange and intracellular calcium release to force development in isolated canine ventricular muscle

机译:肌膜钠钙交换和细胞内钙释放对强迫离体犬心室肌发育的贡献

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摘要

The aim of this work was to determine the relationship between peak twitch amplitude and sarcoplasmic reticulum (SR) Ca2+ content during changes of stimulation frequency in isolated canine ventricle, and to estimate the extent to which these changes were dependent upon sarcolemmal Na(+)-Ca2+ exchange. In physiological [Na+]o, increased stimulation frequency in the 0.2-2-Hz range resulted in a positive inotropic effect characterized by an increase in peak twitch amplitude and a decrease in the duration of contraction, measured as changes in isometric force development or unloaded cell shortening in intact muscle and isolated single cells, respectively. Action potentials recorded from single cells indicated that the inotropic effect was associated with a progressive decrease of action potential duration and a marked reduction in average time spent by the cell near the resting potential during the stimulus train. The frequency-dependent increase of peak twitch force was correlated with an increase of Ca2+ uptake into and release from the SR. This was estimated indirectly using the phasic contractile response to rapid (less than 1 s) lowering of perfusate temperature from 37 degrees C to 0-2 degrees C and changes of twitch amplitude resulting from perturbations in the pattern of electrical stimulation. Lowering [Na+]o from 140 to 70 mM resulted in an increase of contractile strength, which was accompanied by a similar increase of apparent SR Ca2+ content, both of which could be abolished by exposure to ryanodine (1 x 10(-8) M), caffeine (3 x 10(-3) M), or nifedipine (2 x 10(-6) M). Increased stimulation frequency in 70 mM [Na+]o resulted in a negative contractile staircase, characterized by a graded decrease of peak isometric force development or unloaded cell shortening. SR Ca2+ content estimated under identical conditions remained unaltered. Rate constants derived from mechanical restitution studies implied that the depressant effect of increased stimulation frequency in 70 mM [Na+]o was not a consequence of a decreased rate of refilling of a releasable pool of Ca2+ within the cell. These results demonstrate that frequency-dependent changes of contractile strength and intracellular Ca2+ loading in 140 mM [Na+]o require the presence of a functional sarcolemmal Na(+)-Ca2+ exchange process. The possibility that the negative staircase in 70 mM [Na+]o is related to inhibition of Ca(2+)-induced release of Ca2+ from the SR by various cellular mechanisms is discussed.
机译:这项工作的目的是确定在孤立的犬脑室的刺激频率变化过程中,峰值抽动幅度与肌浆网(SR)Ca2 +含量之间的关系,并估计这些变化在多大程度上取决于肌膜Na(+)- Ca2 +交换。在生理[Na +] o中,在0.2-2-Hz范围内增加刺激频率会产生正性肌力作用,其特征在于峰抽搐幅度增加和收缩持续时间减少(以等轴测力发展或空载的变化衡量)完整肌肉中的细胞缩短和分离的单个细胞中的缩短。从单个细胞记录的动作电位表明,正性肌力作用与动作电位持续时间的逐渐减少和刺激训练期间靠近静息电位的细胞所花费的平均时间显着减少有关。峰值抽搐力的频率依赖性增加与SR中Ca2 +的吸收和释放相关。这是通过对灌注液温度从37摄氏度快速降低(少于1 s)至0-2摄氏度的阶段性收缩响应以及由于电刺激模式扰动而引起的抽动幅度变化进行间接估算的。 [Na +] o从140降低至70 mM,导致收缩强度增加,同时表观SR Ca2 +含量也有相似的增加,这两种情况都可以通过暴露于雷诺丹(1 x 10(-8)M ),咖啡因(3 x 10(-3)M)或硝苯地平(2 x 10(-6)M)。在70 mM [Na +] o中增加的刺激频率导致负向收缩楼梯,其特征是峰值等距力发展或空载细胞缩短逐渐降低。在相同条件下估算的SR Ca2 +含量保持不变。从机械恢复研究得出的速率常数暗示在70 mM [Na +] o中增加刺激频率的抑制作用不是细胞内可释放的Ca2 +池的重新填充速率降低的结果。这些结果表明,在140 mM [Na +] o中,收缩强度和细胞内Ca2 +负载的频率依赖性变化需要功能性肌膜Na(+)-Ca2 +交换过程的存在。讨论了在70 mM [Na +] o中的负阶梯与抑制Ca(2+)诱导的SR通过各种细胞机制从SR释放Ca2 +有关的可能性。

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  • 年度 1992
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  • 正文语种 {"code":"en","name":"English","id":9}
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