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脊椎动物肌纤维单收缩和强直收缩期间主动缩短导致的力学性能降低。

Depression of mechanical performance by active shortening during twitch and tetanus of vertebrate muscle fibres.

作者信息

Edman K A

出版信息

Acta Physiol Scand. 1980 May;109(1):15-26. doi: 10.1111/j.1748-1716.1980.tb06559.x.

Abstract

Shortening during activity of frog single muscle fibres caused a graded depression of the contractile force that persisted for 800-900 ms during a partially fused or completely fused tetanus. The depression of force was not associated with a change of the shortening velocity at zero load. Passive shortening performed just before stimulation had no effect on the subsequent course of contraction. The decrease in isometric force produced by shortening was not significantly affected by a stretch applied immediately before or after the shortening was not significantly affected by a stretch applied immediately before or after the shortening phase. For a given amount of shortening the depressant effect during a fused tetanus was 8-28% of that produced during a twitch. The effect was substantially reduced, both during twitch and tetanus, in the presence of 0.5 mM caffeine. The length dependence of the movement effect was studied between 1.7 and 2.9 micrometer sarcomere spacing. Maximum depression of force (in per cent of the control at each length) was obtained at 2.1-2.2 micrometer sarcomere length, the effect being steadily reduced at shorter and more extended lengths. The Q10 of the depressant effect was 0.95 +/- 0.16 (S.D.). The features of the movement effect are consistent with a true deactivation of the contractile system as would occur if shortening reduced the binding of activator calcium to the regulatory proteins of the myofilaments.

摘要

青蛙单根肌纤维活动时的缩短,会导致收缩力呈分级下降,在部分融合或完全融合的强直收缩过程中,这种下降持续800 - 900毫秒。力的下降与零负荷时缩短速度的变化无关。刺激前进行的被动缩短对随后的收缩过程没有影响。缩短产生的等长力下降,在缩短阶段之前或之后立即施加的拉伸对其没有显著影响。对于给定的缩短量,融合强直收缩期间的抑制作用是单收缩期间产生作用的8 - 28%。在存在0.5 mM咖啡因的情况下,单收缩和强直收缩期间的这种作用都显著降低。在1.7至2.9微米的肌节间距之间研究了运动效应的长度依赖性。在2.1 - 2.2微米的肌节长度时获得最大力抑制(占每个长度下对照的百分比),在更短和更长的长度下,这种效应逐渐降低。抑制作用的Q10为0.95±0.16(标准差)。运动效应的特征与收缩系统的真正失活一致,就像缩短减少了激活钙与肌丝调节蛋白的结合时所发生的那样。

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