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Slowed Relaxation in Fatigued Skeletal Muscle Fibers of Xenopus and Mouse : Contribution of [Ca2+]i and Cross-bridges

机译:爪蟾和小鼠的疲劳的骨骼肌纤维中的缓慢放松:[Ca2 +] i和跨桥的贡献。

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摘要

Slowing of relaxation is an important characteristic of skeletal muscle fatigue. The aim of the present study was to quantify the relative contribution of altered Ca2+ handling (calcium component) and factors down-stream to Ca2+ (cross-bridge component) to the slowing of relaxation in fatigued fibers of Xenopus and mouse. Two types of Xenopus fibers were used: easily fatigued, type 1 fibers and fatigue resistant, type 2 fibers. In these Xenopus fibers the free myoplasmic [Ca2+] ([Ca2+]i) was measured with indo-1, and the relaxation of Ca2+-derived force, constructed from tetanic [Ca2+]i records and in vivo [Ca2+]i-force curves, was analyzed. An alternative method was used in both Xenopus and mouse fibers: fibers were rapidly shortened during the initial phase of relaxation, and the time to the peak of force redevelopment was measured. These two methods gave similar results and showed proportional slowing of the calcium and cross-bridge components of relaxation in both fatigued type 1 and type 2 Xenopus fibers, whereas only the cross-bridge component was slowed in fatigued mouse fibers. Ca2+ removal from the myoplasm during relaxation was markedly less effective in Xenopus fibers as compared to mouse fibers. Fatigued Xenopus fibers displayed a reduced rate of sarcoplasmic reticulum Ca2+ uptake and increased sarcoplasmic reticulum Ca2+ leak. Some fibers were stretched at various times during relaxation. The resistance to these stretches was increased during fatigue, especially in Xenopus fibers, which indicates that longitudinal movements during relaxation had become less pronounced and this might contribute to the increased cross-bridge component of relaxation in fatigue. In conclusion, slowing of relaxation in fatigued Xenopus fibers is caused by impaired Ca2+ handling and altered cross-bridge kinetics, whereas the slowing in mouse fibers is only due to altered cross-bridge kinetics.
机译:放松的缓慢是骨骼肌疲劳的重要特征。本研究的目的是量化改变的Ca2 +处理(钙成分)和下游Ca2 +因子(跨桥成分)对非洲爪蟾和小鼠疲劳纤维松弛的相对影响。使用两种类型的非洲爪蟾纤维:易疲劳的1型纤维和耐疲劳的2型纤维。在这些爪蟾纤维中,用indo-1测量了游离的肌质[Ca2 +]([Ca2 +] i),并根据破伤风[Ca2 +] i记录和体内[Ca2 +] i-力曲线构造了Ca2 +衍生力的松弛。 ,进行了分析。在非洲爪蟾和小鼠纤维中都使用了另一种方法:在松弛的初始阶段,纤维被迅速缩短,并测量了力再达到峰值的时间。这两种方法给出了相似的结果,并且显示了疲劳的1型和2型爪蟾纤维中钙和跨桥成分的松弛比例成比例地减慢,而疲劳的小鼠纤维中只有跨桥成分减缓了。与老鼠的纤维相比,非洲爪蟾的纤维在松弛过程中从肌质中去除Ca2 +的效果明显较差。疲劳的非洲爪蟾纤维显示出减少的肌浆网C​​a2 +吸收率和增加的肌浆网C​​a2 +泄漏。一些纤维在松弛期间的不同时间被拉伸。在疲劳期间,尤其是在非洲爪蟾的纤维中,对这些拉伸的抵抗力增加了,这表明松弛过程中的纵向运动变得不太明显,这可能导致疲劳松弛中跨桥成分的增加。总之,疲劳的爪蟾纤维松弛的减慢是由于Ca2 +处理能力的降低和横桥动力学的改变而引起的,而小鼠纤维的减缓只是由于横桥动力学的改变而引起的。

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