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The Initiation of Spike Potential in Barnacle Muscle Fibers under Low Intracellular Ca++

机译:低细胞内Ca ++条件下藤壶肌纤维穗电位的起始

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摘要

Electrical properties of the muscle fiber membrane were studied in the barnacle, Balanus nubilus Darw. by using intracellular electrode techniques. A depolarization of the membrane does not usually produce an all-or-none spike potential in the normal muscle fiber even though a mechanical response is elicited. The intracellular injection of Ca++-binding agents (K2SO4 and K salt of EDTA solution, K3 citrate solution, etc.) renders the fiber capable of initiating all-or-none spikes. The overshoot of such a spike potential increases with increasing external Ca concentration, the increment for a tenfold increase in Ca concentration being about 29 mv. The threshold membrane potential for the spike and also for the K conductance increase shifts to more positive membrane potentials with increasing [Ca++]out. The removal of Na ions from the external medium does not change the configuration of the spike potential. In the absence of Ca++ in the external medium, the spike potential is restored by Ba++ and Sr++ but not by Mg++. The overshoot of the spike potential increases with increasing [Ba++]out or [Sr++]out. The Ca influx through the membrane of the fiber treated with K2SO4 and EDTA was examined with Ca45. The influx was 14 pmol per sec. per cm2 for the resting membrane and 35 to 85 pmol per cm2 for one spike. From these results it is concluded that the spike potential of the barnacle muscle fiber results from the permeability increase of the membrane to Ca++ (Ba++ or Sr++).
机译:在藤壶Balanus nubilus Darw中研究了肌纤维膜的电学性质。通过使用细胞内电极技术。即使引起机械反应,膜的去极化通常不会在正常肌纤维中产生全峰或无峰的电位。胞内注射Ca ++ 结合剂(EDTA溶液的K2SO4和K盐,柠檬酸K3溶液等)使纤维能够引发全峰或无峰。这种尖峰电位的过冲随着外部Ca浓度的增加而增加,Ca浓度增加十倍的增量约为29 mv。随着[Ca ++ ] out的增加,尖峰的膜电位和钾电导的阈值电位移向更正的膜电位。从外部介质中除去Na离子不会改变尖峰电位的构型。在外部介质中不存在Ca ++ 的情况下,Ba ++ 和Sr ++ 可以恢复尖峰电位,而Mg不能恢复 ++ 。尖峰电位的过冲随着[Ba ++ ] out或[Sr ++ ] out的增加而增加。用Ca 45 检查了用K2SO4和EDTA处理的纤维膜中的Ca流入。流入量为每秒14 pmol。每平方厘米 2 (静息膜)和每平方厘米 2 35至85 pmol(一次尖峰)。从这些结果可以得出结论,藤壶肌纤维的刺突电位是由膜对Ca ++ (Ba ++ 或Sr ++ )。

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