首页> 美国卫生研究院文献>The Journal of Physiology >The effects of caffeine on intracellular calcium force and the rate of relaxation of mouse skeletal muscle.
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The effects of caffeine on intracellular calcium force and the rate of relaxation of mouse skeletal muscle.

机译:咖啡因对小鼠骨骼肌细胞内钙力和松弛速率的影响。

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摘要

1. Intracellular calcium concentration ([Ca2+]i) and force were measured from isolated single fibres of mouse skeletal muscle. The effects of 5 mM caffeine on muscle fibres at rest and during short tetani were examined. 2. Caffeine increased tetanic tension and slowed the rate of relaxation. [Ca2+]i was increased in the presence of caffeine both in the resting muscle and during tetani. The time course of decline of [Ca2+]i after a tetanus is complex with a large, early, rapid phase followed by a smaller and slower phase. Caffeine accelerated the early phase but slowed the later phase. 3. The sensitivity of the myofibrillar proteins to Ca2+ measured in the intact fibre was increased in the presence of caffeine, confirming earlier findings on skinned muscle fibres. 4. Analysis of the late phase of the decline of [Ca2+]i after a tetanus provides information about the properties of the sarcoplasmic reticulum (SR) Ca2+ pump. Caffeine slowed the pump to 60-70% of the control value at a given [Ca2+]i but had no effect on the Ca2+ leak from the SR. 5. Analysis of relaxation made use of the Ca(2+)-derived force in which the [Ca2+]i during relaxation was converted to the Ca(2+)-derived force by means of the steady-state relation between [Ca2+]i and force. The Ca(2+)-derived force fell more slowly in the presence of caffeine but the lag between Ca(2+)-derived force and measured force was unaffected. Thus, the slowed relaxation was caused by changes in Ca2+ handling and not by slowed cross-bridge kinetics. 6. A model of the Ca2+ movements and force production of muscle was used to examine independently the effects of increased Ca2+ sensitivity, slowing of the SR Ca2+ pump and increased SR Ca2+ permeability. The effects of caffeine on [Ca2+]i, tetanic force and relaxation could be explained by a combination of these three effects.
机译:1.从孤立的小鼠骨骼肌单纤维中测量细胞内钙浓度([Ca2 +] i)和作用力。检查了5 mM咖啡因对静息状态和短破伤风期间肌肉纤维的影响。 2.咖啡因增加强直性张力,减慢放松速度。在静息肌肉和破伤风期间,在咖啡因的存在下,[Ca2 +] i均升高。破伤风后[Ca2 +] i下降的时间过程很复杂,有一个大的,早期的,快速的阶段,然后是一个较小的和较慢的阶段。咖啡因可加速早期阶段,但减慢后期阶段。 3.在存在咖啡因的情况下,完整纤维中肌纤维蛋白对Ca2 +的敏感性增加,这证实了较早发现的皮肤肌纤维上的发现。 4.破伤风后[Ca2 +] i下降后期的分析提供了有关肌浆网(SR)Ca2 +泵特性的信息。在给定的[Ca2 +] i下,咖啡因将泵的速度降低至控制值的60-70%,但对SR的Ca2 +泄漏没有影响。 5.利用Ca(2+)衍生的力进行松弛分析,其中通过[Ca2 +]之间的稳态关系将松弛过程中的[Ca2 +] i转换为Ca(2+)衍生力我和力量。在存在咖啡因的情况下,Ca(2+)衍生的力下降得更慢,但Ca(2+)衍生的力与测得的力之间的滞后不受影响。因此,减缓的弛豫是由Ca2 +处理的变化引起的,而不是由减缓的跨桥动力学引起的。 6.使用Ca2 +运动和肌肉产生力的模型独立检查Ca2 +敏感性增加,SR Ca2 +泵减慢和SR Ca2 +渗透性增加的影响。咖啡因对[Ca2 +] i,强直作用力和松弛的影响可以通过这三种作用的组合来解释。

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