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功能骨-软骨单位的生长相关结构、生化和力学特性。

Growth-related structural, biochemical, and mechanical properties of the functional bone-cartilage unit.

机构信息

Institute of Biomechanics and Orthopaedics, German Sport University Cologne, Germany.

出版信息

J Anat. 2013 Feb;222(2):248-59. doi: 10.1111/joa.12003. Epub 2012 Oct 22.

Abstract

Articular cartilage and subchondral bone act together, forming a unit as a weight-bearing loading-transmitting surface. A close interaction between both structures has been implicated during joint cartilage degeneration, but their coupling during normal growth and development is insufficiently understood. The purpose of the present study was to examine growth-related changes of cartilage mechanical properties and to relate these changes to alterations in cartilage biochemical composition and subchondral bone structure. Tibiae and femora of both hindlimbs from 7- and 13-week-old (each n = 12) female Sprague-Dawley rats were harvested. Samples were processed for structural, biochemical and mechanical analyses. Immunohistochemical staining and protein expression analyses of collagen II, collagen IX, COMP and matrilin-3, histomorphometry of cartilage thickness and COMP staining height were performed. Furthermore, mechanical testing of articular cartilage and micro-CT analysis of subchondral bone was conducted. Growth decreased cartilage thickness, paralleled by a functional condensation of the underlying subchondral bone due to enchondral ossification. Cartilage mechanical properties seem to be rather influenced by growth-related changes in the assembly of major ECM proteins such as collagen II, collagen IX and matrilin-3 than by growth-related alterations in its underlying subchondral bone structure. Importantly, the present study provides a first insight into the growth-related structural, biochemical and mechanical interaction of articular cartilage and subchondral bone. Finally, these data contribute to the general knowledge about the cooperation between the articular cartilage and subchondral bone.

摘要

关节软骨和软骨下骨共同作用,形成一个作为承重传力表面的单位。在关节软骨退化过程中,这两种结构之间存在密切的相互作用,但它们在正常生长和发育过程中的耦合作用还不够了解。本研究的目的是研究与生长相关的软骨力学性能变化,并将这些变化与软骨生化成分和软骨下骨结构的变化联系起来。从 7 周和 13 周龄(每组 n = 12)的雌性 Sprague-Dawley 大鼠的双侧后肢中采集胫骨和股骨。对样本进行结构、生化和力学分析。进行了胶原 II、胶原 IX、COMP 和 matrilin-3 的免疫组织化学染色和蛋白表达分析,以及软骨厚度的组织形态计量学和 COMP 染色高度分析。此外,还进行了关节软骨的力学测试和软骨下骨的 micro-CT 分析。生长降低了软骨厚度,同时由于软骨内成骨,下方的软骨下骨发生功能性浓缩。软骨力学性能似乎更多地受到主要 ECM 蛋白(如胶原 II、胶原 IX 和 matrilin-3)组装方面与生长相关的变化的影响,而不是其下软骨下骨结构方面与生长相关的变化的影响。重要的是,本研究首次深入了解了关节软骨和软骨下骨之间与生长相关的结构、生化和力学相互作用。最后,这些数据有助于增加我们对关节软骨和软骨下骨之间相互合作的认识。

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COMP acts as a catalyst in collagen fibrillogenesis.COMP在胶原纤维形成过程中起催化剂作用。
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