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关节钙化软骨功能的结构线索:对这一关键界面组织的描述性综述。

Structural clues to articular calcified cartilage function: A descriptive review of this crucial interface tissue.

机构信息

Department of Comparative Biomedical Sciences, Royal Veterinary College, University of London, London, UK.

出版信息

J Anat. 2022 Oct;241(4):875-895. doi: 10.1111/joa.13728. Epub 2022 Jul 22.

Abstract

Articular calcified cartilage (ACC) has been dismissed, by some, as a remnant of endochondral ossification without functional relevance to joint articulation or weight-bearing. Recent research indicates that morphologic and metabolic ACC features may be important, reflecting knee joint osteoarthritis (OA) predisposition. ACC is less investigated than neighbouring joint tissues, with its component chondrocytes and mineralised matrix often being either ignored or integrated into analyses of hyaline articular cartilage and subchondral bone tissue respectively. Anatomical variation in ACC is recognised between species, individuals and age groups, but the selective pressures underlying this variation are unknown. Consequently, optimal ACC biomechanical features are also unknown as are any potential locomotory roles. This review collates descriptions of ACC anatomy and biology in health and disease, with a view to revealing its structure/function relationship and highlighting potential future research avenues. Mouse models of healthy and OA joint ageing have shown disparities in ACC load-induced deformations at the knee joint. This raises the hypothesis that ACC response to locomotor forces over time may influence, or even underlie, the bony and hyaline cartilage symptoms characteristic of OA. To effectively investigate the ACC, greater resolution of joint imaging and merging of hierarchical scale data will be required. An appreciation of OA as a 'whole joint disease' is expanding, as is the possibility that the ACC may be a key player in healthy ageing and in the transition to OA joint pathology.

摘要

关节钙化软骨 (ACC) 曾被一些人视为软骨内骨化的残余物,与关节关节或承重无功能相关性。最近的研究表明,形态和代谢 ACC 特征可能很重要,反映了膝关节骨关节炎 (OA) 的易感性。ACC 的研究不如相邻关节组织多,其组成的软骨细胞和矿化基质经常被忽视或分别整合到透明关节软骨和软骨下骨组织的分析中。ACC 在物种、个体和年龄组之间存在解剖学变异,但这种变异的选择压力尚不清楚。因此,也不知道最佳的 ACC 生物力学特征,以及任何潜在的运动功能。本综述汇集了健康和疾病中 ACC 的解剖和生物学描述,旨在揭示其结构/功能关系,并强调潜在的未来研究方向。健康和 OA 关节老化的小鼠模型显示出膝关节处 ACC 在负荷诱导变形方面的差异。这提出了一个假设,即 ACC 对随时间推移的运动力的反应可能会影响甚至是 OA 的特征性骨和透明软骨症状的基础。为了有效地研究 ACC,需要更高的关节成像分辨率和层次数据的融合。人们对 OA 作为一种“全关节疾病”的认识正在扩大,而 ACC 可能是健康老化和向 OA 关节病变过渡的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4dd/9482704/bf355ad86b35/JOA-241-875-g004.jpg

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