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首页> 外文期刊>The Journal of Experimental Biology >Getting the jump on skeletal muscle disuse atrophy: preservation of contractile performance in aestivating Cyclorana alboguttata (Gunther 1867)
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Getting the jump on skeletal muscle disuse atrophy: preservation of contractile performance in aestivating Cyclorana alboguttata (Gunther 1867)

机译:骨骼肌废用性萎缩获得突破:在培养Cyclorana alboguttata时保持收缩性能(Gunther 1867)

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摘要

Prolonged immobilisation or unloading of skeletal muscle causes muscle disuse atrophy, which is characterised by a reduction in muscle cross-sectional area and compromised locomotory function. Animals that enter seasonal dormancy, such as hibernators and aestivators, provide an interesting model for investigating atrophy associated with disuse. Previous research on the amphibian aestivator Cyclorana alboguttata (Gunther 1867) demonstrated an absence of muscle disuse atrophy after 3 months of aestivation, as measured by gastrocnemius muscle contractile properties and locomotor performance. In this study, we aimed to investigate the effect of aestivation on iliofibularis and sartorius muscle morphology and contractile function of C. alboguttata over a longer, more ecologically relevant time-frame of 9 months. We found that whole muscle mass, muscle cross-sectional area, fibre number and proportions of fibre types remained unchanged after prolonged disuse. There was a significant reduction in iliofibularis fibre cross-sectional area (declined by 36% for oxidative fibre area and 39% for glycolytic fibre area) and sartorius fibre density (declined by 44%). Prolonged aestivation had little effect on the isometric properties of the skeletal muscle of C. alboguttata. There was a significant reduction in the isometric contraction times of the relatively slow-twitch iliofibularis muscle, suggesting that the muscle was becoming slower after 9 months of aestivation (time to peak twitch increased by 25%, time from peak twitch to half relaxation increased by 34% and time from last stimulus to half tetanus relation increased by 20%). However, the results of the work-loop analysis clearly demonstrate that, despite changes to muscle morphology and isometric kinetics, the overall contractile performance and power output levels of muscles from 9-month aestivating C. alboguttata are maintained at control levels.
机译:骨骼肌的长时间固定或空载会导致肌肉废用性萎缩,其特征是肌肉横截面积减少和运动功能受损。进入冬眠状态的动物,例如冬眠动物和食草动物,为研究与废除相关的萎缩提供了有趣的模型。先前对两栖吸食者Cyclorana alboguttata(Gunther 1867)的研究表明,吸食3个月后,腓肠肌的收缩特性和运动能力表明无肌肉废用性萎缩。在这项研究中,我们旨在研究在9个月更长的,更与生态相关的时间范围内,开垦对纤毛虫和sartorius肌肉形态及收缩功能的影响。我们发现,长时间停用后,整个肌肉质量,肌肉横截面积,纤维数量和纤维类型的比例保持不变。原纤维横截面积(氧化纤维面积下降36%,糖酵解纤维面积下降39%)和缝线肌密度(下降44%)显着降低。长时间的陶醉对白念珠菌骨骼肌的等轴测特性影响不大。相对缓慢抽搐的腓肠肌的等距收缩时间显着减少,这表明在吸气9个月后,肌肉变得越来越慢(从抽搐到抽搐的时间增加了25%,从抽搐到松弛的时间增加了25%)。从最后一次刺激到出现一半破伤风的时间增加了34%,并且增加了20%)。但是,工作循环分析的结果清楚地表明,尽管肌肉形态和等距动力学发生了变化,但9个月培养的白纹梭菌的总体肌肉收缩性能和功率输出水平仍保持在控制水平。

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