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采用新型疲劳加载系统对肌腱束进行循环加载会增加腱细胞中白细胞介素-6 的表达。

Cyclic loading of tendon fascicles using a novel fatigue loading system increases interleukin-6 expression by tenocytes.

机构信息

School of Biological Sciences, University of East Anglia, Norwich, UK.

出版信息

Scand J Med Sci Sports. 2013 Feb;23(1):31-7. doi: 10.1111/j.1600-0838.2011.01410.x. Epub 2011 Nov 3.

Abstract

Repetitive strain or 'overuse' is thought to be a major factor contributing to the development of tendinopathy. The aims of our study were to develop a novel cyclic loading system, and use it to investigate the effect of defined loading conditions on the mechanical properties and gene expression of isolated tendon fascicles. Tendon fascicles were dissected from bovine-foot extensors and subjected to cyclic tensile strain (1 Hz) at 30% or 60% of the strain at failure, for 0 h (control), 15 min, 30 min, 1 h, or 5 h. Post loading, a quasi-static test to failure assessed damage. Gene expression at a selected loading regime (1 h at 30% failure strain) was analyzed 6 h post loading by quantitative real-time polymerase chain reaction. Compared with unloaded controls, loading at 30% failure strain took 5 h to lead to a significant decrease in failure stress, whereas loading to 60% led to a significant reduction after 15 min. Loading for 1 h at 30% failure strain did not create significant structural damage, but increased Collagen-1-alpha-chain-1 and interleukin-6 (IL6) expression, suggesting a role of IL6 in tendon adaptation to exercise. Correlating failure properties with fatigue damage provides a method by which changes in gene expression can be associated with different degrees of fatigue damage.

摘要

重复性劳损或“过度使用”被认为是导致腱病发展的一个主要因素。我们的研究目的是开发一种新的循环加载系统,并利用它来研究特定的加载条件对分离的肌腱束的机械性能和基因表达的影响。从牛脚伸肌中分离出肌腱束,并在失效应变的 30%或 60%下以 1 Hz 的频率进行循环拉伸应变(1 Hz),持续 0 h(对照)、15 min、30 min、1 h 或 5 h。加载后,进行准静态失效测试以评估损伤。在选定的加载方案(30%失效应变持续 1 小时)下,通过定量实时聚合酶链反应分析 6 小时后的基因表达。与未加载的对照组相比,在 30%失效应变下加载需要 5 小时才会导致失效应力显著下降,而在 60%下加载 15 分钟后就会显著下降。在 30%失效应变下持续 1 小时的加载不会造成明显的结构损伤,但会增加 Collagen-1-alpha-chain-1 和白细胞介素 6(IL6)的表达,这表明 IL6 在肌腱适应运动中发挥作用。将失效特性与疲劳损伤相关联为将基因表达的变化与不同程度的疲劳损伤相关联提供了一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eb2/3558793/7b7aa12841de/sms0023-0031-f1.jpg

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