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蛙培养骨骼肌细胞中的电压依赖性离子电流。

Voltage dependent ionic currents in frog cultured skeletal myocytes.

作者信息

Lukyanenko V I, Katina I E, Nasledov G A, Lonsky A V

机构信息

Sechenov Institute of Evolutionary Physiology and Biochemistry, Academy of Sciences of Russia, St.-Petersburg.

出版信息

Gen Physiol Biophys. 1993 Jun;12(3):231-47.

PMID:8224780
Abstract

The voltage dependent ionic currents in cultured embryonic skeletal myocytes at stages of development ranging from 1 to 6 day were studied using the whole-cell patch clamp technique. Sodium (INa) and calcium (ICa) inward and potassium (IK) outward currents were observed at all stages. INa did not differ from that described in adult frog striated muscle fibres. Slow ICa was mediated by current through dihydropyridine sensitive Ca channels and it did not differ in its kinetics from corresponding slow ICa in frog adult twitch muscle fibres. In about 10% of cells examined for ICa, this current was significantly slower and similar to ICa described in frog tonic muscle fibres. In some cases two slow calcium currents with distinguishable kinetics were recorded in the same myocytes. Fast dihydropyridine-insensitive noninactivating ICa could also be observed. At least 6 types of IK were registered, with approximate time-to-peak (at test pulse of -10 mV) 5, 12, 20, 30, 50 ms (fast IK) and more than 7 s (slow IK). Three of them (5, 20 and 30 ms) predominated in 3-day cultures and disappeared in 6-day-old cultures. IK in myocytes did not correspond fully in the kinetics to IK reported in adult frog skeletal muscles. Channels associated with transient fast and noninactivating slow IK were shown to be highly sensitive to low temperature (+5 degrees C).

摘要

采用全细胞膜片钳技术研究了培养的胚胎骨骼肌细胞在发育1至6天阶段的电压依赖性离子电流。在所有阶段均观察到钠(INa)和钙(ICa)内向电流以及钾(IK)外向电流。INa与成年青蛙横纹肌纤维中描述的情况无差异。慢ICa由通过二氢吡啶敏感钙通道的电流介导,其动力学与青蛙成年快肌纤维中相应的慢ICa无差异。在约10%检测ICa的细胞中,该电流明显更慢,类似于青蛙慢肌纤维中描述的ICa。在某些情况下,在同一肌细胞中记录到两种具有可区分动力学的慢钙电流。还可观察到快速的二氢吡啶不敏感非失活ICa。至少记录到6种类型的IK,其峰值时间(在-10 mV测试脉冲下)约为5、12、20、30、50 ms(快IK)和超过7 s(慢IK)。其中三种(5、20和30 ms)在3天培养物中占主导,在6日龄培养物中消失。肌细胞中的IK动力学与成年青蛙骨骼肌中报道的IK不完全对应。与瞬时快IK和非失活慢IK相关的通道对低温(+5摄氏度)高度敏感。

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