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aiNa在豚鼠乳头肌正性力-频率阶梯现象中的作用。

Role of aiNa in positive force-frequency staircase in guinea pig papillary muscle.

作者信息

Wang D Y, Chae S W, Gong Q Y, Lee C O

机构信息

Department of Physiology and Biophysics, Cornell University Medical College, New York, New York 10021.

出版信息

Am J Physiol. 1988 Dec;255(6 Pt 1):C798-807. doi: 10.1152/ajpcell.1988.255.6.C798.

Abstract

In the ventricular papillary muscle of guinea pig heart, membrane potential, intracellular sodium activity (aiNa), and twitch force were measured simultaneously and continuously for many hours at stimulation rates of 0, 0.5, 1, 2, 3, 4, 5, and 6 Hz to investigate the relation of aiNa to twitch force and membrane potential both in the steady state and during the changes in these variables. After an increase in stimulation rate, both aiNa and twitch force increased progressively, reaching steady-state levels. The relation between twitch force and aiNa in the steady state was generally sigmoidal over the range of 0.5-5 Hz and steep in the 1- to 4-Hz range. After either increase or decrease in stimulation rate, the time course of change in aiNa was exponential and similar to that of change in twitch force. Moreover, the force-aiNa relation observed after increase in stimulation rate from 0.5 to 3 Hz resembled that observed after decrease in the rate from 3 to 0.5 Hz, indicating an absence of hysteresis in the relation. The results suggest that an increase in aiNa is an important factor involved in the force staircase. As stimulation rate was increased from 0.5 to higher rates (5 or 6 Hz) and then decreased back to 0.5 Hz, a hysteresis phenomenon was observed in the relation between twitch force and aiNa. This suggests that some secondary factor may alter the relation between twitch force and aiNa. As stimulation rate increased and aiNa rose, the steady-state diastolic membrane potential hyperpolarized. This result is consistent with the view that an increase in aiNa enhances the electrogenic Na+-K+ pump and hyperpolarizes the cell membrane.

摘要

在豚鼠心脏的心室乳头肌中,以0、0.5、1、2、3、4、5和6 Hz的刺激频率,同时连续数小时测量膜电位、细胞内钠活性(aiNa)和收缩力,以研究在稳态以及这些变量变化期间aiNa与收缩力和膜电位之间的关系。刺激频率增加后,aiNa和收缩力均逐渐增加,达到稳态水平。在0.5 - 5 Hz范围内,稳态下收缩力与aiNa之间的关系通常呈S形,在1 - 4 Hz范围内较为陡峭。刺激频率增加或降低后,aiNa的变化时间进程呈指数形式,与收缩力的变化相似。此外,刺激频率从0.5 Hz增加到3 Hz后观察到的力 - aiNa关系与从3 Hz降低到0.5 Hz后观察到的关系相似,表明该关系不存在滞后现象。结果表明,aiNa的增加是参与力阶梯现象的一个重要因素。当刺激频率从0.5 Hz增加到更高频率(5或6 Hz),然后再降低回0.5 Hz时,在收缩力与aiNa之间的关系中观察到滞后现象。这表明一些次要因素可能会改变收缩力与aiNa之间的关系。随着刺激频率增加和aiNa升高,稳态舒张膜电位超极化。这一结果与aiNa增加会增强生电钠钾泵并使细胞膜超极化的观点一致。

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