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首页> 外文期刊>American Journal of Physiology >Protective role of extracellular chloride in fatigue of isolated mammalian skeletal muscle.
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Protective role of extracellular chloride in fatigue of isolated mammalian skeletal muscle.

机译:细胞外氯化物在孤立的哺乳动物骨骼肌疲劳中的保护作用。

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摘要

A possible role of extracellular Cl(-) concentration ([Cl(-)](o)) in fatigue was investigated in isolated skeletal muscles of the mouse. When [Cl(-)](o) was lowered from 128 to 10 mM, peak tetanic force was unchanged, fade was exacerbated (wire stimulation electrodes), and a hump appeared during tetanic relaxation in both nonfatigued slow-twitch soleus and fast-twitch extensor digitorum longus (EDL) muscles. Low [Cl(-)](o) increased the rate of fatigue 1) with prolonged, continuous tetanic stimulation in soleus, 2) with repeated intermittent tetanic stimulation in soleus or EDL, and 3) to a greater extent with repeated tetanic stimulation when wire stimulation electrodes were used rather than plate stimulation electrodes in soleus. In nonfatigued soleus muscles, application of 9 mM K(+) with low [Cl(-)](o) caused more rapid and greater tetanic force depression, along with greater depolarization, than was evident at normal [Cl(-)](o). These effects of raised [K(+)](o) and low [Cl(-)](o) were synergistic. From these data, we suggest that normal [Cl(-)](o) provides protection against fatigue involving high-intensity contractions in both fast- and slow-twitch mammalian muscle. This phenomenon possibly involves attenuation of the depolarization caused by stimulation- or exercise-induced run-down of the transsarcolemmal K(+) gradient.
机译:在小鼠的孤立骨骼肌中研究了细胞外Cl(-)浓度([Cl(-)](o))在疲劳中的可能作用。当[Cl(-)](o)从128降低到10 mM时,峰值强直力不变,褪色加剧(导线刺激电极),并且在强直松弛比目鱼肌和快速疲劳比目鱼肌在强直松弛期间出现驼峰。抽搐指长肌(EDL)肌肉。较低的[Cl(-)](o)会增加疲劳率:1)比目鱼肌持续长时间连续性强直性刺激; 2)比目鱼肌或EDL反复性强直性强直性刺激; 3)重复性强直性疲劳时更大的程度使用线刺激电极而不是比目鱼肌使用板刺激电极。在未疲劳的比目鱼肌中,与正常[Cl(-)]相比,应用低[Cl(-)](o)的9 mM K(+)会导致更快和更大的强直力下降以及更大的去极化。 o)。提高[K(+)](o)和降低[Cl(-)](o)的效果是协同的。从这些数据中,我们建议正常的[Cl(-)](o)可以防止涉及快速和缓慢抽动的哺乳动物肌肉中的高强度收缩的疲劳。这种现象可能涉及通过刺激或运动引起的跨肌膜K(+)梯度下降引起的去极化减弱。

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