Oz M, Frank G B
Department of Pharmacology, University of Alberta, Edmonton, Canada.
J Pharmacol Exp Ther. 1991 May;257(2):575-81.
The effects of removing extracellular Ca++ ions or of adding the organic calcium channel antagonist, nitrendipine, were tested on twitches and tetani (100 Hz for 2 sec) in frog toe muscles. Under conditions that did not reduce or that potentiated twitches, both procedures reduced the size of the tetanic responses. This depression was seen as an inability to maintain the maximum tetanic tension for more than 0.5 sec. Intracellular microelectrode recordings showed that the muscle fibers were depolarized (mean about 23 mV) during the stimulus train and the fiber only slowly repolarized after the train. The latter effect is the "late negative afterpotential" and it is produced by the accumulation of K+ ions in the t-tubules during the action potential train. Neither the depolarization nor the late negative afterpotentials were decreased in amplitude by nitrendipine. These results indicate that the voltage-sensitive, slow Ca++ channels are opened by the accumulation of K+ ions in the t-tubules during the tetanus and that the Ca++ ions entering via these channels are required to maintain the full strength of the tetanic contraction. It is suggested that this is a function of these Ca++ channels concentrated in the t-tubules of skeletal muscle fibers.
在蛙趾肌中,测试了去除细胞外钙离子或添加有机钙通道拮抗剂尼群地平对单收缩和强直收缩(100Hz,持续2秒)的影响。在不降低或增强单收缩的条件下,这两种操作均减小了强直反应的幅度。这种抑制表现为无法维持最大强直张力超过0.5秒。细胞内微电极记录显示,在刺激串期间肌肉纤维发生去极化(平均约23mV),并且在刺激串后纤维仅缓慢复极化。后一种效应是“晚期负后电位”,它是由动作电位串期间钾离子在横管中积累产生的。尼群地平并未降低去极化或晚期负后电位的幅度。这些结果表明,在强直收缩期间,钾离子在横管中积累会打开电压敏感的慢钙通道,并且通过这些通道进入的钙离子是维持强直收缩全部强度所必需的。有人认为,这是集中在骨骼肌纤维横管中的这些钙通道的一种功能。