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关于退变如何影响软骨-骨系统中的承重:一项微观结构和微观力学研究。

On how degeneration influences load-bearing in the cartilage-bone system: a microstructural and micromechanical study.

作者信息

Thambyah A, Broom N

机构信息

Biomaterials Laboratory, Department of Chemical and Materials Engineering, University of Auckland, New Zealand.

出版信息

Osteoarthritis Cartilage. 2007 Dec;15(12):1410-23. doi: 10.1016/j.joca.2007.05.006. Epub 2007 Aug 8.

Abstract

OBJECTIVE

This study investigated the microanatomical response to compression of intact and degenerate cartilage-on-bone samples with the aim of elucidating the functional consequences of articular surface disruption and related matrix changes.

METHOD

Two groups of mature bovine patellae were identified at the time of harvest; those with intact cartilage and those with cartilage exhibiting mild to severe degeneration. Cartilage-on-bone samples were statically compressed (7 MPa) to near-equilibrium using an 8-mm diameter cylindrical indenter, and then formalin-fixed in this deformed state. Following mild decalcification full-depth cartilage-bone sections, incorporating the indentation profile and beyond, were studied in their fully hydrated state using differential interference contrast optical microscopy (DIC).

RESULTS

Differences in matrix texture, degree of disruption of the articular surface layer (or its complete absence), number of tidemarks and absence or presence of vascularization of the calcified cartilage zone were all observable features that provided clear differentiation between the normal and degenerate tissues. Under load a chevron-type shear discontinuity characterized those samples in which the strain-limiting surface layer was still largely intact. The extent to which this shear discontinuity advanced into the adjacent non-directly loaded cartilage continuum was influenced by the integrity of the cartilage general matrix. For those tissues deficient in a strain-limiting articular surface there was no shear discontinuity, the cartilage deformation field was instead shaped primarily by its osteochondral attachment and a laterally-directed compressive collapse of a much weakened matrix. In the degenerate samples the altered matrix textures associated with different regions of the deformation field are interpreted in terms of an intrinsic fibrillar architecture that is weakened by two fundamental processes: (1) a de-structuring resulting from a reduction in connectivity between fibrils and (2) subsequent aggregation of these now disconnected fibrils.

CONCLUSION

DIC microscopy provides a high-resolution description of the integrated osteochondral tissue system across the full continuum of matrices, from normal to severely degenerate. Our study demonstrates the important functional role played by the strain-limiting articular surface, the consequences associated with its disruption, as well as the loss of effective stress transmission associated with a 'de-structured' general matrix. The study also provides new insights into the integration of cartilage with both its subchondral substrate and the wider continuum of non-directly loaded cartilage.

摘要

目的

本研究调查了完整和退变的骨软骨样本对压缩的微观解剖学反应,旨在阐明关节表面破坏及相关基质变化的功能后果。

方法

在收获时识别出两组成熟牛髌骨;一组软骨完整,另一组软骨呈现轻度至重度退变。使用直径8毫米的圆柱形压头将骨软骨样本静态压缩至接近平衡状态(7兆帕),然后在该变形状态下用福尔马林固定。经过轻度脱钙后,使用微分干涉对比光学显微镜(DIC)在完全水合状态下研究包含压痕轮廓及以外区域的全层软骨-骨切片。

结果

基质纹理、关节表面层的破坏程度(或其完全缺失)、潮线数量以及钙化软骨区域血管化的有无等差异都是可观察到的特征,这些特征清晰地区分了正常组织和退变组织。在负载下,人字形剪切不连续是那些应变限制表面层仍基本完整的样本的特征。这种剪切不连续向相邻非直接加载软骨连续体推进的程度受软骨总体基质完整性的影响。对于那些缺乏应变限制关节表面的组织,不存在剪切不连续,软骨变形场主要由其骨软骨附着以及严重弱化基质的侧向压缩塌陷形成。在退变样本中,与变形场不同区域相关的改变的基质纹理可根据内在纤维结构来解释,该结构因两个基本过程而弱化:(1)纤维间连接性降低导致的解构;(2)这些现在断开连接的纤维随后的聚集。

结论

DIC显微镜提供了从正常到严重退变的整个基质连续体上骨软骨组织系统的高分辨率描述。我们的研究证明了应变限制关节表面所起的重要功能作用、其破坏带来的后果以及与“解构”的总体基质相关的有效应力传递丧失。该研究还为软骨与其软骨下基质以及更广泛的非直接加载软骨连续体之间的整合提供了新见解。

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