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肌节损伤主要发生在再负荷大鼠内收长肌的慢肌纤维中。

Sarcomere lesion damage occurs mainly in slow fibers of reloaded rat adductor longus muscles.

作者信息

Vijayan K, Thompson J L, Riley D A

机构信息

Department of Cell Biology, Neurobiology and Anatomy, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

J Appl Physiol (1985). 1998 Sep;85(3):1017-23. doi: 10.1152/jappl.1998.85.3.1017.

Abstract

Sarcomere lesions were previously observed with reloading of rat adductor longus muscles after spaceflight and hindlimb unloading (HU). Spaceflown rats displayed more lesioned fibers in the "slow-fiber" region, suggesting a damage-susceptible fiber type. Unloading induces fast myosin expression in some slow fibers, generating hybrid fibers. We examined whether lesion damage differed among slow-, hybrid-, and fast-fiber types in HU-reloaded adductor longus muscles. Temporal HU for 5, 8, 11, 14, and 17 days revealed that hybrid fiber percent, detected by antimyosin immunostaining, peaked at 29 +/- 12% by 14 days. A 14-day HU followed by 12-14 h of voluntary reloading was performed to induce lesions. chi2 analysis showed that slow fibers were preferentially damaged, accounting for 92 +/- 5% of lesioned fibers; hybrid and fast fibers accounted for 7 +/- 4 and <0.5%, respectively. Atrophy did not explain differential lesion damage across fiber types, as slow and hybrid fibers atrophied to a similar extent. Because active myofiber contractions are requisite for lesion formation, selective recruitment of slow fibers most likely explains their damage susceptibility.

摘要

先前在大鼠航天飞行及后肢卸载(HU)后内收长肌重新加载时观察到肌节损伤。航天飞行后的大鼠在“慢肌纤维”区域显示出更多受损纤维,表明存在一种易受损的纤维类型。卸载会诱导一些慢肌纤维中快肌肌球蛋白表达,产生混合纤维。我们研究了HU重新加载后的内收长肌中,慢肌纤维、混合肌纤维和快肌纤维类型之间的损伤损害是否存在差异。5、8、11、14和17天的阶段性HU显示,通过抗肌球蛋白免疫染色检测到的混合纤维百分比在14天时达到峰值,为29±12%。进行14天的HU,随后进行12 - 14小时的自主重新加载以诱导损伤。卡方分析表明,慢肌纤维优先受损,占受损纤维的92±5%;混合肌纤维和快肌纤维分别占7±4%和<0.5%。萎缩并不能解释不同纤维类型间损伤损害的差异,因为慢肌纤维和混合肌纤维萎缩程度相似。由于活跃的肌纤维收缩是损伤形成所必需的,慢肌纤维的选择性募集很可能解释了它们的易损性。

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