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马属动物屈肌腱分子和细胞成分的年龄相关变化。

Age-related changes to the molecular and cellular components of equine flexor tendons.

作者信息

Birch H L, Bailey J V, Bailey A J, Goodship A E

机构信息

Veterinary Basic Sciences, Royal Veterinary College, North Mymms, Hatfield, UK.

出版信息

Equine Vet J. 1999 Sep;31(5):391-6. doi: 10.1111/j.2042-3306.1999.tb03838.x.

Abstract

Specific tendons show a high incidence of partial central core rupture which is preceded by degeneration. In the performance horse, the superficial digital flexor tendon (SDFT) is most often affected. We have described previously the molecular changes that are associated with degeneration in the central core region of the equine SDFT. The pathophysiological mechanism leading to change in synthetic activity of central zone cells in degenerated tendons is not known. In this study, we test the hypothesis that ageing results in matrix composition changes within the central zone of the SDFT. Extracellular matrix composition and cellularity were analysed in equine SDFTs collected from Thoroughbred horses and compared with a flexor tendon which rarely shows degenerative change and subsequent injury (deep digital flexor tendon, DDFT). Data were examined for age-related changes to central and peripheral zone tissue of the SDFT and DDFT. Ageing in both tendons (SDFT and DDFT) resulted in a significant increase in collagen-linked fluorescence and a decrease in cellularity in the DDFT but not the SDFT. The central zone tissue from the SDFT had a significantly higher proportion of type III collagen than the peripheral zone of the tendon. The highest level of type III collagen was found in the central zone tissue of the SDFT from the older group of horses and this may represent the early stages of a degenerative change. Collagen content did not differ between the 2 flexor tendons; however, there were differences in collagen type and organisation. The SDFT had a higher type III collagen content, higher levels of the mature trifunctional collagen crosslink hydroxylysylpyridinoline, lower total chondroitin sulphate equivalent glycosaminoglycan content, smaller diameter collagen fibrils and a higher cellularity than the DDFT. In conclusion, differences in macromolecular composition exist between the flexor tendons and ageing contributes to a tendon specific change in composition.

摘要

特定肌腱显示出较高的中央部分核心断裂发生率,且断裂之前存在退变。在竞技用马中,指浅屈肌腱(SDFT)最常受到影响。我们之前已经描述了与马SDFT中央核心区域退变相关的分子变化。导致退变肌腱中央区细胞合成活性改变的病理生理机制尚不清楚。在本研究中,我们检验了衰老导致SDFT中央区基质成分发生变化这一假说。对从纯种马采集的马SDFT的细胞外基质成分和细胞密度进行了分析,并与很少出现退变改变及后续损伤的屈肌腱(指深屈肌腱,DDFT)进行比较。研究了SDFT和DDFT中央区和外周区组织与年龄相关的变化。两种肌腱(SDFT和DDFT)的衰老均导致DDFT中胶原交联荧光显著增加且细胞密度降低,但SDFT未出现这种情况。SDFT的中央区组织中III型胶原的比例显著高于肌腱外周区。在老年马组的SDFT中央区组织中发现III型胶原水平最高,这可能代表了退变改变的早期阶段。两种屈肌腱的胶原含量无差异;然而,胶原类型和组织结构存在差异。与DDFT相比,SDFT具有更高的III型胶原含量、更高水平的成熟三功能胶原交联羟赖氨吡啶并啉、更低的总硫酸软骨素等效糖胺聚糖含量、更小直径的胶原纤维以及更高的细胞密度。总之,屈肌腱之间存在大分子成分差异,衰老导致了肌腱特异性的成分变化。

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