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大鼠后肢卸载:比目鱼肌组织化学、超微结构及肌电图

Rat hindlimb unloading: soleus histochemistry, ultrastructure, and electromyography.

作者信息

Riley D A, Slocum G R, Bain J L, Sedlak F R, Sowa T E, Mellender J W

机构信息

Department of Anatomy and Cellular Biology, Medical College of Wisconsin, Milwaukee 53226.

出版信息

J Appl Physiol (1985). 1990 Jul;69(1):58-66. doi: 10.1152/jappl.1990.69.1.58.

Abstract

Soleus muscle atrophy was induced by hindlimb unloading of male Sprague-Dawley rats (305 +/- 15 g) for 4, 7, and 10-14 days. Controls (291 +/- 14 g) were housed in vivarium cages. Soleus electromyogram (EMG) activity was recorded before and during tail suspension. Unloading caused progressive reduction in the muscle-to-body weight ratio. After 14 days, type I and IIa fibers decreased in area 63 and 47%, respectively. Subsarcolemmal mitochondria and myofibrils were degraded more rapidly than intermyofibrillar mitochondria and the cell membrane. After 10 days, 3% of the fibers exhibited segmental necrosis; affected fibers were all high-oxidative type IIa fibers. This suggested ischemic injury. By 13 days, 30% of the fibers possessed central corelike lesions involving primarily type I fibers. Video monitoring revealed abnormal plantar flexion of the hindfeet by 4 days; this posture shortened the soleus working range. Corelike lesions indicated adaptation to the shortened length. No morphological signs of denervation were detected. EMG activity shifted from tonic to phasic, and aggregate activity was 13% of normal after 7 days. These findings indicate that the atrophy and pathological changes result from unloaded contractions, reduced use, compromised blood flow, and shortened working length.

摘要

通过对雄性Sprague-Dawley大鼠(305±15克)进行后肢卸载4、7和10 - 14天来诱导比目鱼肌萎缩。对照组(291±14克)饲养在饲养笼中。在尾部悬吊前和悬吊过程中记录比目鱼肌肌电图(EMG)活动。卸载导致肌肉与体重比逐渐降低。14天后,I型和IIa型纤维面积分别减少63%和47%。肌膜下线粒体和肌原纤维的降解速度比肌原纤维间线粒体和细胞膜更快。10天后,3%的纤维出现节段性坏死;受影响的纤维均为高氧化型IIa纤维。这提示存在缺血性损伤。到13天时,30%的纤维出现主要累及I型纤维的中央核样病变。视频监测显示4天时后足出现异常跖屈;这种姿势缩短了比目鱼肌的工作范围。核样病变表明对缩短的长度产生了适应性变化。未检测到去神经支配的形态学迹象。EMG活动从紧张性转变为相位性,7天后总活动量为正常的13%。这些发现表明,萎缩和病理变化是由卸载收缩、使用减少、血流受损和工作长度缩短所致。

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