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单收缩肌纤维中膜变化与收缩的关系。

The relation of membrane changes ot contraction in twitch muscle fibres.

作者信息

Heistracher P, Hunt C C

出版信息

J Physiol. 1969 May;201(3):589-611. doi: 10.1113/jphysiol.1969.sp008774.

Abstract
  1. Contractile responses in short twitch-type snake muscle fibres have been studied. These fibres are sufficiently short to allow fairly uniform changes in membrane potential along their length when current is passed through an intracellular micropipette. Active sodium permeability changes were blocked with tetrodotoxin (TTX), procaine, or by using solutions low in sodium. Current and voltage micropipettes were used to voltage-clamp these fibres. Depolarization steps to about -40 mV evoked contractile responses, maximal tension being developed between -10 and 0 mV. The relation between contraction and membrane potential was sigmoid.2. Depolarization beyond a critical threshold produced an increment of outward current which inactivated with time. The threshold for this delayed rectification was normally similar to the threshold for contractile activation. Fibres exposed to high potassium showed a reversal of this inactivating current to slightly super-threshold depolarizing pulses. At membrane potentials near 0 mV, no inactivating current was noted, while stronger depolarizing pulses produced an inactivating current in the normal direction. Fibres in high potassium show the same threshold for initiation of contraction as in normal solution.3. Thiocyanate, nitrate, and caffeine shifted the relation between membrane potential and contraction toward higher levels of membrane potential. The threshold for inactivating rectifying current failed to shift to a corresponding extent, although some shift in rectification which did not inactivate was evident.4. When depolarization was maintained, contractile tension was maximal for several seconds, then gradually disappeared. The rate of this contractile inactivation depended upon the level of depolarization.
摘要
  1. 对短收缩型蛇肌纤维的收缩反应进行了研究。这些纤维足够短,当电流通过细胞内微电极时,沿其长度方向的膜电位变化相当均匀。用河豚毒素(TTX)、普鲁卡因或使用低钠溶液可阻断活性钠通透性变化。使用电流和电压微电极对这些纤维进行电压钳制。去极化至约 -40 mV 可诱发收缩反应,最大张力在 -10 至 0 mV 之间产生。收缩与膜电位之间的关系呈 S 形。

  2. 超过临界阈值的去极化会产生外向电流增加,该电流会随时间失活。这种延迟整流的阈值通常与收缩激活的阈值相似。暴露于高钾的纤维,对于略高于阈值的去极化脉冲,这种失活电流会发生反转。在膜电位接近 0 mV 时,未观察到失活电流,而更强的去极化脉冲会产生正常方向的失活电流。高钾溶液中的纤维与正常溶液中的纤维表现出相同的收缩起始阈值。

  3. 硫氰酸盐、硝酸盐和咖啡因使膜电位与收缩之间的关系向更高的膜电位水平移动。失活整流电流的阈值未能相应地移动,尽管明显存在一些未失活的整流变化。

  4. 当维持去极化时,收缩张力在几秒钟内达到最大值,然后逐渐消失。这种收缩失活的速率取决于去极化的水平。

相似文献

2
The effect of procaine on snake twitch muscle fibres.普鲁卡因对蛇抽搐肌纤维的作用。
J Physiol. 1969 May;201(3):627-38. doi: 10.1113/jphysiol.1969.sp008776.
3
Contractile repriming in snake twitch muscle fibres.蛇抽搐肌纤维中的收缩再激发
J Physiol. 1969 May;201(3):613-26. doi: 10.1113/jphysiol.1969.sp008775.

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ELECTROCHEMICAL COUPLING IN POTENTIATION OF MUSCULAR CONTRACTION.肌肉收缩增强中的电化学偶联
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