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过度使用和受损肌腱中的基因表达与基质更新

Gene expression and matrix turnover in overused and damaged tendons.

作者信息

Riley G P

机构信息

Soft Tissue Injury and Repair Group, Rheumatology Research Unit, Addenbrooke's Hospital, Cambridge, UK.

出版信息

Scand J Med Sci Sports. 2005 Aug;15(4):241-51. doi: 10.1111/j.1600-0838.2005.00456.x.

Abstract

Chronic, painful conditions affecting tendons, frequently known as tendinopathy, are very common types of sporting injury. The tendon extracellular matrix is substantially altered in tendinopathy, and these changes are thought to precede and underlie the clinical condition. The tendon cell response to repeated minor injuries or "overuse" is thought to be a major factor in the development of tendinopathy. Changes in matrix turnover may also be effected by the cellular response to physical load, altering the balance of matrix turnover and changing the structure and composition of the tendon. Matrix turnover is relatively high in tendons exposed to high mechanical demands, such as the supraspinatus and Achilles, and this is thought to represent either a repair or tissue maintenance function. Metalloproteinases are a large family of enzymes capable of degrading all of the tendon matrix components, and these are thought to play a major role in the degradation of matrix during development, adaptation and repair. It is proposed that some metalloproteinase enzymes are required for the health of the tendon, and others may be damaging, leading to degeneration of the tissue. Further research is required to investigate how these enzyme activities are regulated in tendon and altered in tendinopathy. A profile of all the metalloproteinases expressed and active in healthy and degenerate tendon is required and may lead to the development of new drug therapies for these common and debilitating sports injuries.

摘要

影响肌腱的慢性疼痛病症,通常称为肌腱病,是非常常见的运动损伤类型。在肌腱病中,肌腱细胞外基质会发生显著改变,并且这些变化被认为先于临床病症并构成其基础。肌腱细胞对反复轻微损伤或“过度使用”的反应被认为是肌腱病发展的一个主要因素。基质周转的变化也可能受细胞对物理负荷的反应影响,从而改变基质周转的平衡,并改变肌腱的结构和组成。在承受高机械需求的肌腱中,如冈上肌和跟腱,基质周转相对较高,这被认为代表一种修复或组织维持功能。金属蛋白酶是一大类能够降解所有肌腱基质成分的酶,并且这些酶被认为在发育、适应和修复过程中基质的降解中起主要作用。有人提出,一些金属蛋白酶对肌腱健康是必需的,而其他一些可能具有损害作用,导致组织退化。需要进一步研究来调查这些酶活性在肌腱中是如何被调节的,以及在肌腱病中是如何改变的。需要了解在健康和退变肌腱中表达并具有活性的所有金属蛋白酶的情况,这可能会促成针对这些常见且使人衰弱的运动损伤开发新的药物疗法。

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