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关节软骨力学特性的产后变化是由其胶原网络的演变所驱动的。

Postnatal changes to the mechanical properties of articular cartilage are driven by the evolution of its collagen network.

作者信息

Gannon A R, Nagel T, Bell A P, Avery N C, Kelly D J

机构信息

Trinity Centre for Bioengineering, Department of Mechanical Engineering, Parsons Building, Trinity College Dublin, Dublin 2,

出版信息

Eur Cell Mater. 2015 Jan 29;29:105-21; discussion 121-3. doi: 10.22203/ecm.v029a09.

Abstract

While it is well established that the composition and organisation of articular cartilage dramatically change during skeletal maturation, relatively little is known about how this impacts the mechanical properties of the tissue. In this study, digital image correlation was first used to quantify spatial deformation within mechanically compressed skeletally immature (4 and 8 week old) and mature (1 and 3 year old) porcine articular cartilage. The compressive modulus of the immature tissue was relatively homogeneous, while the stiffness of mature articular cartilage dramatically increased with depth from the articular surface. Other, well documented, biomechanical characteristics of the tissue also emerged with skeletal maturity, such as strain-softening and a depth-dependent Poisson's ratio. The most significant changes that occurred with age were in the deep zone of the tissue, where an order of magnitude increase in compressive modulus (from 0.97 MPa to 9.4 MPa for low applied strains) was observed from 4 weeks postnatal to skeletal maturity. These temporal increases in compressive stiffness occurred despite a decrease in tissue sulphated glycosaminoglycan content, but were accompanied by increases in tissue collagen content. Furthermore, helium ion microscopy revealed dramatic changes in collagen fibril alignment through the depth of the tissue with skeletal maturity, as well as a fivefold increase in fibril diameter with age. Finally, computational modelling was used to demonstrate how both collagen network reorganisation and collagen stiffening play a key role in determining the final compressive mechanical properties of the tissue. Together these findings provide a unique insight into evolving structure-function relations in articular cartilage.

摘要

虽然关节软骨的组成和组织结构在骨骼成熟过程中会发生显著变化,但对于这种变化如何影响组织的力学性能却知之甚少。在本研究中,首先使用数字图像相关技术来量化机械压缩下骨骼未成熟(4周龄和8周龄)和成熟(1岁和3岁)猪关节软骨内的空间变形。未成熟组织的压缩模量相对均匀,而成熟关节软骨的刚度从关节表面开始随深度急剧增加。该组织的其他已充分记录的生物力学特性也随着骨骼成熟而出现,例如应变软化和深度依赖性泊松比。随着年龄增长发生的最显著变化发生在组织的深层区域,从出生后4周到骨骼成熟,观察到压缩模量增加了一个数量级(对于低施加应变,从0.97MPa增加到9.4MPa)。尽管组织硫酸化糖胺聚糖含量有所下降,但压缩刚度随时间的这些增加伴随着组织胶原蛋白含量的增加。此外,氦离子显微镜显示,随着骨骼成熟,整个组织深度的胶原纤维排列发生了显著变化,并且纤维直径随年龄增加了五倍。最后,使用计算模型来证明胶原网络重组和胶原硬化如何在决定组织的最终压缩力学性能方面发挥关键作用。这些发现共同为关节软骨中不断演变的结构 - 功能关系提供了独特的见解。

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