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首页> 外文期刊>British journal of sports medicine >Changes in mechanical loading lead to tendonspecific alterations in MMP and TIMP expression: influence of stress deprivation and intermittent cyclic hydrostatic compression on rat supraspinatus and Achilles tendons.
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Changes in mechanical loading lead to tendonspecific alterations in MMP and TIMP expression: influence of stress deprivation and intermittent cyclic hydrostatic compression on rat supraspinatus and Achilles tendons.

机译:机械负荷的变化导致MMP和TIMP表达中的肌腱特异性改变:应力剥夺和间歇性周期性静水压对大鼠棘上肌和跟腱的影响。

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摘要

BACKGROUND: Tendinopathy commonly occurs in tendons with large in vivo loading demands like the Achilles tendon (AT) and supraspinatus tendon (SST). In addition to differences in their local anatomic environment, these tendons are designed for different loading requirements because of the muscles to which they attach, with the AT experiencing higher loads than the SST. One possible factor in the progression of tendinopathy is the interplay between mechanical loading and the regulation of enzymes that degrade the extracellular matrix (matrix metalloproteinases (MMPs)) and their inhibitors (tissue inhibitor of metalloprotienases (TIMPs)). Thus, overuse injuries may have different biological consequences in tendons designed for different in vivo loading demands. AIM: In this study, the tendon-specific regulation of MMP-13, MMP-3 and TIMP-2 expression in rat AT and SST exposed to two different mechanical environments was investigated. METHODS: Rat AT and SST were exposed to stress deprivation (ie, detached from attachments) and intermittent cyclic hydrostatic compression (with attachments intact). Levels of MMP-13, MMP-3 and TIMP-2 mRNA were evaluated in time-zero control, attached, stressdeprived and "compressed" tendons. RESULTS: Stress deprivation led to elevated expression of MMP-13, MMP-3 and TIMP-2 in both tendons, although the magnitude of the increase was greater for the SST than the AT. Intermittent cyclic hydrostatic compression of attached tendons increased expression of MMP-13 in the SST, but not the AT. CONCLUSIONS: The results of this study suggest that stress deprivation may be one contributor to the progression of tendinopathy in AT and SST, where the tendon designed for the lower in vivo loading demand (SST) was the most affected by a change in mechanical loading. The unique upregulation of MMP-13 with hydrostatic compression supports the impingement injury theory for rotator cuff tears.
机译:背景:肌腱病通常发生在具有大量体内负荷需求的腱中,例如跟腱(AT)和棘上肌腱(SST)。除了其局部解剖环境不同外,这些肌腱还因其附着的肌肉而设计用于不同的负荷要求,而AT承受的负荷比SST高。肌腱病进展的一个可能因素是机械负荷与降解细胞外基质的酶(基质金属蛋白酶(MMPs))及其抑制剂(金属卟啉酶的组织抑制剂(TIMPs))之间的相互作用。因此,过度使用的损伤可能在针对不同体内负荷需求设计的肌腱中具有不同的生物学后果。目的:在这项研究中,研究了暴露于两种不同机械环境的大鼠AT和SST中MMP-13,MMP-3和TIMP-2表达的肌腱特异性调节。方法:将大鼠AT和SST暴露于压力剥夺(即脱离附件)和间歇性周期性静水压(附件完好无损)。在零时对照,附着,应力剥夺和“压迫”肌腱中评估了MMP-13,MMP-3和TIMP-2 mRNA的水平。结果:应力剥夺导致两条肌腱中MMP-13,MMP-3和TIMP-2的表达升高,尽管SST的增加幅度大于AT。附加肌腱的间歇性循环静水压增加了MST-13在SST中的表达,但没有增加AT。结论:这项研究的结果表明,压力剥夺可能是导致AT和SST肌腱病进展的一个原因,其中针对较低体内负荷需求(SST)设计的肌腱受机械负荷变化的影响最大。静液压压缩对MMP-13的独特上调支持了对肩袖撕裂的撞击伤害理论。

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