Cohen C J, Fozzard H A, Sheu S S
Circ Res. 1982 May;50(5):651-62. doi: 10.1161/01.res.50.5.651.
Changes in stimulation rate alter the electrical and mechanical characteristics of myocardial cells. We have investigated the possibility that intracellular sodium activity (aiNa) changes with stimulation and correlates with changes in contraction strength. Two kinds of liquid membrane Na+-selective microelectrodes were used to measure aiNa in guinea pig and sheep ventricular muscle and in sheep Purkinje strands. Stimulation produced a rate- and time-dependent elevation of aiNa. Small increases in aiNa were seen at stimulation rates as slow as 0.2 Hz, and faster rates of stimulation elevated aiNa by over 30%. The changes seen in Purkinje strands and ventricular muscle were similar. Following a period of stimulation, aiNa and Vm returned to their pre-stimulus levels with the same time courses. This is consistent with the suggestion that the post-stimulation hyperpolarization is the result of an increased rate of electrogenic Na+ extrusion. The effects of stimulation on aiNa and tension were compared with those of ouabain. The comparison suggests that rapid stimulation could produce increased contraction strength as the result of a substantial gain in intracellular calcium via a Na-Ca exchange mechanism, but that this is only one of several factors determining the force-frequency relationship.
刺激频率的改变会改变心肌细胞的电学和力学特性。我们研究了细胞内钠活性(aiNa)随刺激而变化并与收缩强度变化相关的可能性。使用两种液膜Na⁺选择性微电极来测量豚鼠和绵羊心室肌以及绵羊浦肯野纤维束中的aiNa。刺激导致aiNa呈速率和时间依赖性升高。在低至0.2 Hz的刺激频率下就可见到aiNa有小幅升高,而更快的刺激频率会使aiNa升高超过30%。在浦肯野纤维束和心室肌中观察到的变化相似。在一段刺激期后,aiNa和Vm以相同的时间进程恢复到刺激前水平。这与刺激后超极化是由于电生性Na⁺外流速率增加的结果这一观点一致。将刺激对aiNa和张力的影响与哇巴因的影响进行了比较。该比较表明,快速刺激可能通过Na-Ca交换机制使细胞内钙大量增加从而导致收缩强度增加,但这只是决定力-频率关系的几个因素之一。