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核心蛋白聚糖的表达对于肌腱结构和力学性能的年龄相关性变化很重要。

Decorin expression is important for age-related changes in tendon structure and mechanical properties.

机构信息

The McKay Orthopaedic Research Laboratory, University of Pennsylvania, 424 Stemmler Hall, 3450 Hamilton Walk, Philadelphia, PA 19104, USA.

出版信息

Matrix Biol. 2013 Jan;32(1):3-13. doi: 10.1016/j.matbio.2012.11.005. Epub 2012 Nov 23.

Abstract

The aging population is at an increased risk of tendon injury and tendinopathy. Elucidating the molecular basis of tendon aging is crucial to understanding the age-related changes in structure and function in this vulnerable tissue. In this study, the structural and functional features of tendon aging are investigated. In addition, the roles of decorin and biglycan in the aging process were analyzed using transgenic mice at both mature and aged time points. Our hypothesis is that the increase in tendon injuries in the aging population is the result of altered structural properties that reduce the biomechanical function of the tendon and consequently increase susceptibility to injury. Decorin and biglycan are important regulators of tendon structure and therefore, we further hypothesized that decreased function in aged tendons is partly the result of altered decorin and biglycan expression. Biomechanical analyses of mature (day 150) and aged (day 570) patellar tendons revealed deteriorating viscoelastic properties with age. Histology and polarized light microscopy demonstrated decreased cellularity, alterations in tenocyte shape, and reduced collagen fiber alignment in the aged tendons. Ultrastructural analysis of fibril diameter distributions indicated an altered distribution in aged tendons with an increase of large diameter fibrils. Aged wild type tendons maintained expression of decorin which was associated with the structural and functional changes seen in aged tendons. Aged patellar tendons exhibited altered and generally inferior properties across multiple assays. However, decorin-null tendons exhibited significantly decreased effects of aging compared to the other genotypes. The amelioration of the functional deficits seen in the absence of decorin in aged tendons was associated with altered tendon fibril structure. Fibril diameter distributions in the decorin-null aged tendons were comparable to those observed in the mature wild type tendon with the absence of the subpopulation containing large diameter fibrils. Collectively, our findings provide evidence for age-dependent alterations in tendon architecture and functional activity, and further show that lack of stromal decorin attenuates these changes.

摘要

人口老龄化使肌腱损伤和腱病的风险增加。阐明肌腱老化的分子基础对于理解这种脆弱组织在结构和功能上的年龄相关变化至关重要。在这项研究中,研究了肌腱老化的结构和功能特征。此外,还使用成熟和老年时间点的转基因小鼠分析了核心蛋白聚糖和 biglycan 在衰老过程中的作用。我们的假设是,人口老龄化中肌腱损伤的增加是结构特性改变的结果,这些改变降低了肌腱的生物力学功能,从而增加了受伤的易感性。核心蛋白聚糖和 biglycan 是肌腱结构的重要调节剂,因此,我们进一步假设,老年肌腱功能下降部分是由于核心蛋白聚糖和 biglycan 表达改变所致。成熟(第 150 天)和老年(第 570 天)髌腱的生物力学分析显示,随着年龄的增长,粘弹性特性恶化。组织学和偏光显微镜显示,老年肌腱的细胞减少、腱细胞形状改变和胶原纤维排列减少。原纤维直径分布的超微结构分析表明,老年肌腱的分布发生改变,大直径原纤维增多。老年野生型肌腱保持核心蛋白聚糖的表达,这与老年肌腱的结构和功能变化有关。老年髌腱在多个检测中表现出改变和普遍较差的性质。然而,与其他基因型相比,核心蛋白聚糖缺失的肌腱表现出衰老的影响明显降低。在缺乏核心蛋白聚糖的情况下,改善老年肌腱中观察到的功能缺陷与肌腱原纤维结构的改变有关。缺乏核心蛋白聚糖的老年肌腱的原纤维直径分布与成熟野生型肌腱相似,不存在含有大直径原纤维的亚群。总之,我们的研究结果为肌腱结构和功能活动的年龄依赖性改变提供了证据,并进一步表明基质核心蛋白聚糖的缺乏减轻了这些改变。

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