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青蛙骨骼肌纤维中的疲劳及甲基黄嘌呤衍生物的影响。

Fatigue in frog skeletal muscle fibres and effects of methylxanthine derivatives.

作者信息

Khan A R, Bengtsson B

出版信息

Acta Physiol Scand. 1985 May;124(1):35-41. doi: 10.1111/j.1748-1716.1985.tb07629.x.

Abstract

The influence of theophylline and the related drug caffeine on the mechanical performance of fatigued muscle fibre isolated from semitendinosus muscle of Rana temporaria (2.5-6.7 degrees C) was investigated. The fibre was stimulated supramaximally to produce I s fused tetani and 2 s and 10 s partially fused tetani at intervals of 10 min. Fatigue was produced by shortening the contraction interval to 15 and 30 s. This caused a 15-20% decline in the maximum tension during fused tetanus and a 40-50% decline during partially fused tetanus. Theophylline and caffeine (0.1-0.5 mM) did not change the maximum tension developed by the fatigued fibre during fused tetanization. Both drugs, however, markedly increased the tension output of the fatigued muscle fibre during partially fused tetanus. It was observed that the increase in partially fused tetanic tension by theophylline and caffeine was associated with an increase in the degree of fusion. This later effect was even more pronounced in the presence of diethyl-stilboestrol. It is concluded that these drugs may not reverse the metabolic changes caused by fatigue, since they are unnable to increase fused tetanic force of a fatigued muscle fibre. The increase in partially fused tetanic tension of a fatigued muscle fibre by these drugs is probably due to enhancement of the activator calcium release from the sarcoplasmic reticulum in response to stimulation.

摘要

研究了茶碱及相关药物咖啡因对从处于2.5 - 6.7摄氏度的林蛙半腱肌分离出的疲劳肌纤维机械性能的影响。以超最大刺激方式刺激肌纤维,每隔10分钟产生1秒的强直融合收缩、2秒和10秒的部分融合收缩。通过将收缩间隔缩短至15秒和30秒来产生疲劳。这导致强直融合收缩期间最大张力下降15 - 20%,部分融合收缩期间下降40 - 50%。茶碱和咖啡因(0.1 - 0.5 mM)在强直融合收缩期间并未改变疲劳肌纤维产生的最大张力。然而,这两种药物在部分融合收缩期间均显著增加了疲劳肌纤维的张力输出。观察到茶碱和咖啡因使部分融合收缩张力增加与融合程度增加有关。在己烯雌酚存在的情况下,后一种效应更为明显。得出的结论是,这些药物可能无法逆转由疲劳引起的代谢变化,因为它们无法增加疲劳肌纤维的强直融合力。这些药物使疲劳肌纤维部分融合收缩张力增加可能是由于增强了肌浆网对刺激的反应从而释放激活钙。

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