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关节活动度降低对大鼠比目鱼肌肌节长度、肌内膜胶原纤维排列及透明质酸的影响。

Effects of reduced joint mobility on sarcomere length, collagen fibril arrangement in the endomysium, and hyaluronan in rat soleus muscle.

作者信息

Okita Minoru, Yoshimura Toshiro, Nakano Jiro, Motomura Masakatsu, Eguchi Katsumi

机构信息

Department of Physical Therapy, Nagasaki University, School of Health Sciences, 1-7-1 Sakamoto, Japan.

出版信息

J Muscle Res Cell Motil. 2004;25(2):159-66. doi: 10.1023/b:jure.0000035851.12800.39.

Abstract

Immobilization is often associated with a decrease in muscle elasticity. This condition is called muscle contracture, but the mechanism is not yet clear. We examined changes in ankle joint mobility, sarcomere length, collagen fibril arrangement in the endomysium, and hyaluronic acid (HYA) in muscular tissue 1, 2, 4, 8, and 12 weeks after immobilization of rat soleus muscles in shortened position. Ankle joint mobility decreased with the duration of immobilization. Sarcomere length had shortened 1 week after immobilization, but did not show further change 2, 4, 8, and 12 weeks after immobilization. Collagen fibril arrangement in the endomysium 1 and 2 weeks after immobilization was longitudinal to the axis of the muscle fibers, whereas 4, 8, and 12 weeks after immobilization it was circumferential. HYA in muscular tissue had increased 1 week after immobilization but remained at the same level at weeks 2, 4, 8, and 12. Histochemically, HYA in the endomysium of immobilized muscular tissue was stained more strongly and widely than that in the control tissue. Increased HYA in muscular tissue may induce muscle stiffness, but the significance of how HYA is related to the mechanism of muscle contracture was not clear. The findings suggest that muscle contracture started 1 week after immobilization and increased with the length of immobilization. Consequently, muscle contracture is affected by the shortening muscle fibers during the early stage of immobilization, after which the collagen adapts by the fibril arrangement in the endomysium becoming more circumferential. This change in collagen fibril arrangement may cause advanced muscle contracture in the late stage of immobilization.

摘要

固定通常与肌肉弹性下降有关。这种情况被称为肌肉挛缩,但其机制尚不清楚。我们检查了大鼠比目鱼肌在缩短位置固定1、2、4、8和12周后,踝关节活动度、肌节长度、肌内膜中胶原纤维排列以及肌肉组织中透明质酸(HYA)的变化。踝关节活动度随固定时间延长而降低。固定1周后肌节长度缩短,但在固定2、4、8和12周后未显示进一步变化。固定1周和2周后肌内膜中的胶原纤维排列与肌纤维轴纵向排列,而固定4、8和12周后则呈周向排列。肌肉组织中的HYA在固定1周后增加,但在2、4、8和12周时保持在同一水平。组织化学上,固定肌肉组织肌内膜中的HYA染色比对照组织更强且更广泛。肌肉组织中HYA的增加可能会导致肌肉僵硬,但HYA与肌肉挛缩机制的关系的意义尚不清楚。研究结果表明,肌肉挛缩在固定1周后开始,并随固定时间延长而增加。因此,在固定早期,肌肉挛缩受肌肉纤维缩短的影响,此后胶原通过肌内膜中纤维排列变得更加周向而适应。胶原纤维排列的这种变化可能在固定后期导致晚期肌肉挛缩。

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