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机械负荷调节骨腱结合处肌腱蛋白-C的表达。

Mechanical loading regulates tenascin-C expression in the osteotendinous junction.

作者信息

Järvinen T A, Jozsa L, Kannus P, Järvinen T L, Kvist M, Hurme T, Isola J, Kalimo H, Järvinen M

机构信息

Institute of Medical Technology and Medical School, University of Tampere, Tampere, Finland.

出版信息

J Cell Sci. 1999 Sep;112 Pt 18:3157-66. doi: 10.1242/jcs.112.18.3157.

Abstract

Elastic extracellular matrix protein tenascin-C (TN) has very restricted expression in normal tissues, but is expressed in large quantities during embryogenesis and hyperplastic processes. To examine the importance of mechanical stress on the regulation of TN expression in vivo, the effects of various mechanical loading states (immobilization and three forms of subsequent remobilization) on the expression of TN were studied immunohistochemically at the bone-tendon attachment of the rat quadriceps muscle. This osteotendinous junction (OTJ) was selected as study site, since it receives its mechanical stimuli only from muscle contracting activity, which is easy to block by cast immobilization. TN was expressed abundantly in the normal OTJ. Following the removal of the mechanical stress from the junction by cast-immobilization of three weeks, the immunoreactivity of TN was almost completely absent. Normal mechanical stress in the form of free remobilization of eight weeks (free cage activity) resulted in a slight increase in TN expression, but could not restore the expression of TN to the level of the healthy contralateral leg. After the application of the increased mechanical stress (intensified remobilization of the eight weeks by low- or high-intensity treadmill running), the distribution and immunoreactivity of TN reached the level of the healthy contralateral limb in the low-intensity running group or even exceeded that in the high-intensity running group. High TN expression was seen around the chondrocytes and fibroblasts of the OTJ as well as around the collagen fibers of the tendon belly. We conclusively show that mechanical strain regulates the expression of TN in vivo, and propose that mechanical stress is a major regulator of TN expression in fibroblasts and chondrocytes. This may be an important aspect of the regulation of TN expression during embryogenesis, tendon degeneration, wound healing, bone formation, and in the other normal or regenerative morphogenetic processes TN is postulated to take part in.

摘要

弹性细胞外基质蛋白腱生蛋白-C(TN)在正常组织中的表达非常有限,但在胚胎发育和增生过程中大量表达。为了研究机械应力对体内TN表达调控的重要性,我们采用免疫组织化学方法,研究了各种机械负荷状态(固定及随后三种形式的再活动)对大鼠股四头肌骨-肌腱附着处TN表达的影响。选择这个骨-肌腱连接点(OTJ)作为研究部位,是因为它仅从肌肉收缩活动中接受机械刺激,而这种刺激很容易通过石膏固定来阻断。TN在正常OTJ中大量表达。通过三周的石膏固定去除连接点的机械应力后,TN的免疫反应性几乎完全消失。八周的自由再活动(自由笼内活动)形式的正常机械应力导致TN表达略有增加,但无法将TN的表达恢复到健康对侧腿的水平。在施加增加的机械应力(通过低强度或高强度跑步机跑步进行八周的强化再活动)后,低强度跑步组中TN的分布和免疫反应性达到了健康对侧肢体的水平,甚至在高强度跑步组中超过了该水平。在OTJ的软骨细胞和成纤维细胞周围以及肌腱腹部的胶原纤维周围可见高TN表达。我们最终表明,机械应变在体内调节TN的表达,并提出机械应力是成纤维细胞和软骨细胞中TN表达的主要调节因子。这可能是胚胎发育、肌腱退变、伤口愈合、骨形成以及TN被认为参与的其他正常或再生形态发生过程中TN表达调控的一个重要方面。

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