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兔膝骨质疏松性骨关节炎中软骨下骨的超微结构改变增加了软骨损伤的严重程度。

Ultrastructural change of the subchondral bone increases the severity of cartilage damage in osteoporotic osteoarthritis of the knee in rabbits.

机构信息

Fujian University of Traditional Chinese Medicine, Fuzhou, Fujian, 350122, China; Fujian Academy of Integrative Medicine, Fuzhou, Fujian, 350122, China.

Fujian University of Traditional Chinese Medicine, Fuzhou, Fujian, 350122, China; Fujian Academy of Traditional Chinese Medicine, Fuzhou, Fujian, 350003, China.

出版信息

Pathol Res Pract. 2018 Jan;214(1):38-43. doi: 10.1016/j.prp.2017.11.018. Epub 2017 Dec 2.

Abstract

Osteoporotic osteoarthritis is a phenotype of osteoarthritis (OA) manifested as fragile and osteoporotic subchondral bone. However, the ultrastructural features of subchondral bone in osteoporosis OA have not been determined. The study was aimed to investigate the ultrastructural dynamic changes of subchondral bone in osteoporotic OA model and how the ultrastructural damage in the subchondral bone caused by osteoporosis deteriorated the cartilage damage in OA. Eighteen rabbits were equally randomized to three groups, including the control, the OA and the osteoporotic OA groups. The structural changes of cartilage were evaluated by HE and safranin-O fast green staining, the Mankin's grading system was used to assess the stage of OA progression. And microstructural or ultrastructural changes in subchondral bone were assessed by micro-computed tomography or by scanning electron microscopy. According to the changes of cartilage histopathology, the OA group was in the early pathological stage of OA while the osteoporotic OA group was in the middle stage of OA based on Mankin's grading system. In addition, the damage of cartilage surface, reduction in the number of chondrocytes and the matrix staining were more increased in the osteoporotic OA group compared to the OA group. Compared to the OA group, the subchondral bone in the microstructure and ultrastructure in the osteoporotic OA group showed more microfracture changes in trabecular bone with more destructions of the tree-like mesh. Moreover, the collagen fibers were random rough with a fewer amount of bone lacunae in subchondral cortical plate in the osteoporotic OA group compared to the OA group. These findings indicated that the subchondral bone ultrastructure in the osteoporotic OA model was characterized by the destruction of the network structure and collagen fibers. The subchondral bone ultrastructural damage caused by osteoporosis may change mechanical properties of the upper cartilage and aggravate OA cartilage. Therefore, early diagnosis and treatment of osteoporosis is of great significance to prevent early OA from further developing osteoporotic OA.

摘要

骨质疏松性骨关节炎是一种以骨关节炎(OA)为表现的表型,表现为脆弱和骨质疏松的软骨下骨。然而,骨质疏松性骨关节炎软骨下骨的超微结构特征尚未确定。本研究旨在探讨骨质疏松性骨关节炎模型中软骨下骨的超微结构动态变化,以及骨质疏松引起的软骨下骨超微结构损伤如何使 OA 中的软骨损伤恶化。将 18 只兔子随机均分为三组,包括对照组、OA 组和骨质疏松性骨关节炎组。通过 HE 和番红 O 快绿染色评估软骨的结构变化,采用 Mankin 分级系统评估 OA 进展阶段。通过微计算机断层扫描或扫描电子显微镜评估软骨下骨的微观或超微结构变化。根据软骨组织病理学变化,OA 组处于 OA 的早期病理阶段,而骨质疏松性骨关节炎组根据 Mankin 分级系统处于 OA 的中期阶段。此外,与 OA 组相比,骨质疏松性骨关节炎组软骨表面损伤、软骨细胞数量减少和基质染色增加更为明显。与 OA 组相比,骨质疏松性骨关节炎组软骨下骨在微观和超微结构上表现出更多的小梁骨微骨折变化,树状网格破坏更严重。此外,与 OA 组相比,骨质疏松性骨关节炎组软骨下皮质板中的胶原纤维粗糙不规则,骨陷窝数量较少。这些发现表明,骨质疏松性骨关节炎模型中的软骨下骨超微结构特征为网络结构和胶原纤维的破坏。骨质疏松引起的软骨下骨超微结构损伤可能改变上层软骨的力学性能,加重 OA 软骨的损伤。因此,早期诊断和治疗骨质疏松症对防止早期 OA 进一步发展为骨质疏松性骨关节炎具有重要意义。

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