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固定对大鼠比目鱼肌不溶性胶原蛋白浓度及Ⅰ型和Ⅲ型胶原蛋白亚型的影响。

Effect of Immobilization on Insoluble Collagen Concentration and Type I and Type III Collagen Isoforms of Rat Soleus Muscle.

作者信息

Hibino Itaru, Okita Minoru, Inoue Takayuki, Banno Yasuhiro, Hoso Masahiro

机构信息

Department of Rehabilitation Science, Faculty of Human Health, Nagoya Gakuin University, Aichi 480-1298, Japan ; Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa 920-1192, Japan.

Division of Physical Therapy and Occupational Therapy Science, Graduate School of Health Sciences, Nagasaki University, Nagasaki 852-8520, Japan.

出版信息

J Jpn Phys Ther Assoc. 2008;11(1):1-6. doi: 10.1298/jjpta.11.1.

Abstract

Immobilization is often associated with decreased muscle elasticity. This condition is known as muscle contracture; however, the mechanism remains unclear. The purpose of this study was to clarify the mechanism governing muscle contracture in rat soleus muscle by identifying changes in ankle joint mobility, insoluble collagen concentration and type I and type III collagen isoforms following 1- and 3-week immobilizations. Following a 1-week immobilization, range of motion (ROM) of dorsiflexion declined to 90% of the control value; additionally, ROM dropped to 67.5% of the control value after a 3-week immobilization. This finding suggested that ankle joint mobility decreases in conjunction with extended periods of immobilization. Insoluble collagen concentration in soleus muscles, which was unchanged after 1 week of immobilization, increased 3 weeks after immobilization. These results may be indicative of collagen fibers with strong intermolecular cross-links contained in the muscle was made increased relatively by 3 weeks of immobilization. Therefore, the change in intermolecular cross-links may be significant in terms of progress of muscle contracture with longer periods of immobilization. On the other hand, the ratio of type III to type I collagen isoforms in muscular tissue increased following a 1-week immobilization; moreover, this ratio remained constant after 3 weeks of immobilization. These data suggested that muscle immobilization may induce type III collagen isoform expression. The increase in the ratio of type III to type I collagen isoforms do not change in parallel with the increase in the limitation in ROM; however, this phenomenon probably is not closely related to the progress of muscle contracture. The change of collagen isoform in immobilized muscle may be involved in the mechanism governing the progression of muscle fibrosis.

摘要

固定通常与肌肉弹性降低有关。这种情况被称为肌肉挛缩;然而,其机制仍不清楚。本研究的目的是通过确定1周和3周固定后踝关节活动度、不溶性胶原蛋白浓度以及I型和III型胶原蛋白亚型的变化,来阐明大鼠比目鱼肌肌肉挛缩的机制。固定1周后,背屈活动范围(ROM)降至对照值的90%;此外,固定3周后,ROM降至对照值的67.5%。这一发现表明,踝关节活动度会随着固定时间的延长而降低。比目鱼肌中的不溶性胶原蛋白浓度在固定1周后没有变化,但在固定3周后增加。这些结果可能表明,肌肉中含有强分子间交联的胶原纤维在固定3周后相对增加。因此,分子间交联的变化可能在长期固定导致的肌肉挛缩进展方面具有重要意义。另一方面,肌肉组织中III型与I型胶原蛋白亚型的比例在固定1周后增加;此外,固定3周后该比例保持不变。这些数据表明,肌肉固定可能诱导III型胶原蛋白亚型的表达。III型与I型胶原蛋白亚型比例的增加与ROM限制的增加并非平行变化;然而,这种现象可能与肌肉挛缩的进展没有密切关系。固定肌肉中胶原蛋白亚型的变化可能参与了肌肉纤维化进展的调控机制。

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