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首页> 外文期刊>American Journal of Physiology >Effects of intracellular acidification and varied temperature on force, stiffness, and speed of shortening in frog muscle fibers.
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Effects of intracellular acidification and varied temperature on force, stiffness, and speed of shortening in frog muscle fibers.

机译:细胞内酸化和温度变化对青蛙肌肉纤维的力,刚度和缩短速度的影响。

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This study aimed to establish whether the temperature-dependent effect of acidification on maximum force observed in mammalian muscles also applies to frog muscle. Measurements of force, stiffness, and unloaded velocity of shortening in intact single muscle fibers from the anterior tibialis muscle of Rana temporaria were performed between 0 and 22 degrees C during fused tetani in H(2)CO(3)-CO(2)-buffered Ringer solution with pH adjusted to 7.0 and 6.3, respectively. The force-to-stiffness ratio increased as a rectilinear function of temperature between 0 and 20 degrees C at pH 7.0. Lowering the pH to 6.3 reduced the tetanic force by 13.5 +/- 1.2 and 11.5 +/- 1.4% at 2.8 and 20.5 degrees C, respectively, with only a minor reduction in fiber stiffness. The maximum speed of shortening was decreased by lowered pH by 12.9 +/- 1.5 and 7.8 +/- 1.1% at low and high temperature, respectively. Acidification increased the time to reach 70% of maximum force by 18.0% at approximately 2 degrees C; the same pH changeperformed at approximately 20 degrees C in the same fibers reduced the rise time by 24.1%. The same increase in the rate of rise of force at high temperature was also found at normal pH after the fibers were fatigued by frequent stimulation. It is concluded that, in frog muscle, the force-depressant effect of acidification does not vary significantly with temperature. By contrast, acidification affects the onset of activation in a manner that is critically dependent on temperature.
机译:这项研究旨在确定酸化作用对哺乳动物肌肉中观察到的最大力量的温度依赖性效应是否也适用于青蛙肌肉。在H(2)CO(3)-CO(2)-中的熔融破胶结过程中,在0到22摄氏度之间,测量了林蛙的胫骨前胫骨完整单条肌肉纤维的力量,刚度和缩短的卸载速度。 pH值分别调节到7.0和6.3的林格氏缓冲液。力刚度比随着温度在pH 7.0下在0到20摄氏度之间的直线函数而增加。将pH值降低至6.3,在2.8和20.5摄氏度时分别使破断力降低了13.5 +/- 1.2和11.5 +/- 1.4%,而纤维刚度仅稍有下降。在低温和高温下,pH分别降低12.9 +/- 1.5和7.8 +/- 1.1%时,最大缩短速度降低。酸化使在大约2摄氏度下达到最大力的70%的时间增加了18.0%。在相同的纤维中,在大约20摄氏度的温度下进行相同的pH改变,可将上升时间减少24.1%。在通过频繁的刺激使纤维疲劳之后,在正常pH下,高温下的力上升速率也有相同的增加。结论是,在青蛙肌肉中,酸化的力抑制作用不会随温度显着变化。相反,酸化以关键取决于温度的方式影响活化的开始。

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