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器官培养的大鼠骨骼肌中的离子电流和电荷移动

Ionic currents and charge movements in organ-cultured rat skeletal muscle.

作者信息

Hollingworth S, Marshall M W, Robson E

出版信息

J Physiol. 1984 Dec;357:369-86. doi: 10.1113/jphysiol.1984.sp015505.

Abstract

The middle of the fibre voltage-clamp technique was used to measure ionic currents and non-linear charge movements in intact, organ-cultured (in vitro denervated) mammalian fast-twitch (rat extensor digitorum longus) muscle fibres. Muscle fibres organ cultured for 4 days can be used as electrophysiological and morphological models for muscles in vivo denervated for the same length of time. Sodium currents in organ-cultured muscle fibres are similar to innervated fibres except that in the temperature range 0-20 degrees C (a) in the steady state, the voltage distribution of inactivation in cultured fibres is shifted negatively some 20 mV; (b) at the same temperature and membrane potential, the time constant of inactivation in cultured fibres is about twice that of innervated fibres. Potassium currents in innervated and cultured fibres at 15 degrees C can be fitted with the Hodgkin-Huxley n variable raised to the second power. Despite the large range we would estimate that the maximum value of the steady-state potassium conductance of cultured fibres is about one-half that of innervated fibres. The estimated maximum amount of charge moved in cultured fibre is about one-third that in innervated fibres. Compared to innervated fibres, culturing doubles the kinetics of the decay phase of charge movement. The possibility of a negative shift of the voltage distribution of charge movements in cultured fibres is discussed.

摘要

运用纤维电压钳技术的中间部分来测量完整的、器官培养(体外去神经支配)的哺乳动物快肌(大鼠趾长伸肌)纤维中的离子电流和非线性电荷移动。培养4天的器官培养肌纤维可作为体内去神经支配相同时间的肌肉的电生理和形态学模型。器官培养肌纤维中的钠电流与有神经支配的纤维相似,只是在0-20摄氏度的温度范围内:(a)在稳态下,培养纤维中失活的电压分布负向偏移约20毫伏;(b)在相同温度和膜电位下,培养纤维中失活的时间常数约为有神经支配纤维的两倍。在15摄氏度时,有神经支配和培养的纤维中的钾电流可用霍奇金-赫胥黎n变量的二次幂来拟合。尽管范围很大,但我们估计培养纤维的稳态钾电导最大值约为有神经支配纤维的一半。培养纤维中估计的最大电荷移动量约为有神经支配纤维的三分之一。与有神经支配的纤维相比,培养使电荷移动衰减相的动力学加倍。文中讨论了培养纤维中电荷移动电压分布负向偏移 的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b4a/1193263/f42588751707/jphysiol00583-0397-a.jpg

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