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对袋鼠关节软骨中胶原纤维和弹性纤维的微观结构分析表明,其结构的差异取决于局部力学环境。

Microstructural analysis of collagen and elastin fibres in the kangaroo articular cartilage reveals a structural divergence depending on its local mechanical environment.

机构信息

School of Pathology and Laboratory Medicine, University of Western Australia, Western Australia, Australia.

出版信息

Osteoarthritis Cartilage. 2013 Jan;21(1):237-45. doi: 10.1016/j.joca.2012.10.008. Epub 2012 Oct 17.

Abstract

OBJECTIVE

To assess the microstructure of the collagen and elastin fibres in articular cartilage under different natural mechanical loading conditions and determine the relationship between the microstructure of collagen and its mechanical environment.

METHOD

Articular cartilage specimens were collected from the load bearing regions of the medial femoral condyle and the medial distal humerus of adult kangaroos. The microstructure of collagen and elastin fibres of these specimens was studied using laser scanning confocal microscopy (LSCM) and the orientation and texture features of the collagen were analysed using ImageJ.

RESULTS

A zonal arrangement of collagen was found in kangaroo articular cartilage: the collagen fibres aligned parallel to the surface in the superficial zone and ran perpendicular in the deep zone. Compared with the distal humerus, the collagen in the femoral condyle was less isotropic and more clearly oriented, especially in the superficial and deep zones. The collagen in the femoral condyle was highly heterogeneous, less linear and more complex. Elastin fibres were found mainly in the superficial zone of the articular cartilage of both femoral condyle and distal humerus.

CONCLUSIONS

The present study demonstrates that the collagen structure and texture of kangaroo articular cartilage is joint-dependent. This finding emphasizes the effects of loading on collagen development and suggests that articular cartilage with high biochemical and biomechanical qualities could be achieved by optimizing joint loading, which may benefit cartilage tissue engineering and prevention of joint injury. The existence of elastin fibres in articular cartilage could have important functional implications.

摘要

目的

评估关节软骨在不同自然机械载荷条件下的胶原和弹性纤维的微观结构,并确定胶原微观结构与其力学环境之间的关系。

方法

从成年袋鼠的股骨内侧髁和肱骨内侧远端的负重区采集关节软骨标本。使用激光共聚焦扫描显微镜(LSCM)研究这些标本的胶原和弹性纤维的微观结构,并使用 ImageJ 分析胶原的取向和纹理特征。

结果

在袋鼠关节软骨中发现了胶原的带状排列:表面浅层的胶原纤维与表面平行排列,深层的胶原纤维垂直排列。与肱骨远端相比,股骨髁的胶原纤维各向异性较小,定向更明显,尤其是在浅层和深层。股骨髁的胶原纤维高度不均匀,线性度较低,结构更复杂。弹性纤维主要存在于股骨髁和肱骨远端关节软骨的浅层。

结论

本研究表明,袋鼠关节软骨的胶原结构和纹理具有关节依赖性。这一发现强调了载荷对胶原发育的影响,并表明通过优化关节载荷可以获得具有高生化和生物力学特性的关节软骨,这可能有益于软骨组织工程和预防关节损伤。关节软骨中弹性纤维的存在可能具有重要的功能意义。

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