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Correlation between μCT imaging, histology and functional capacity of the osteoarthritic knee in the rat model of osteoarthritis

机译:骨关节炎大鼠模型中μCT成像,骨关节炎膝关节组织学与功能能力的相关性

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Background To acquire the most meaningful understanding of human arthritis, it is essential to select the disease model and methodology translatable to human conditions. The primary objective of this study was to evaluate a number of analytic techniques and biomarkers for their ability to accurately gauge bone and cartilage morphology and metabolism in the medial meniscal tear (MMT) model of osteoarthritis (OA). Methods MMT surgery was performed in rats to induce OA. A dynamic weight bearing system (DWB) system was deployed to evaluate the weight-bearing capacity of the front and hind legs in rats. At the end of a 10-week study cartilage pathology was evaluated by micro computed tomography (μCT), contrast enhanced μCT (EPIC μCT) imaging and traditional histology. Bone tissue was evaluated at the tibial metaphysis and epiphysis, including the subchondral bone. Histological techniques and dynamic histomorphometry were used to evaluate cartilage morphology and bone mineralization. Results The study results showed a negative impact of MMT surgery on the weight-bearing capacity of the operated limb. Surgery caused severe and extensive deterioration of the articular cartilage at the medial tibial plateau, as evidenced by elevated CTX-II in serum, EPIC μCT and histology. Bone analysis by μCT showed thickening of the subchondral bone beneath the damaged cartilage, loss of cancellous bone at the metaphysis and active osteophyte formation. Conclusions The study emphasizes the need for using various methodologies that complement each other to provide a comprehensive understanding of the pathophysiology of OA at the organ, tissue and cellular levels. Results from this study suggest that use of histology, μCT and EPIC μCT, and functional DWB tests provide powerful combination to fully assess the key aspects of OA and enhance data interpretation.
机译:背景技术要获得对人类关节炎的最有意义的了解,必须选择可转化为人类疾病的疾病模型和方法。这项研究的主要目的是评估许多分析技术和生物标记物,以准确评估骨关节炎(OA)的内侧半月板撕裂(MMT)模型中的骨骼和软骨形态以及新陈代谢。方法对大鼠进行MMT手术以诱发OA。部署了动态负重系统(DWB),以评估大鼠前腿和后腿的承重能力。在为期10周的研究结束时,通过显微计算机断层扫描(μCT),对比增强型μCT(EPICμCT)成像和传统组织学评估了软骨病理。在胫骨干meta端和骨epi端(包括软骨下骨)评估骨组织。组织学技术和动态组织形态学用于评估软骨形态和骨矿化。结果研究结果表明,MMT手术对手术肢体的负重具有负面影响。手术引起了胫骨内侧平台关节软骨的严重而广泛的退化,这在血清,EPICμCT和组织学检查中均表现为CTX-II升高。通过μCT进行的骨分析显示,软骨受损下方的软骨下骨变厚,干meta端的松质骨丢失和活跃的骨赘形成。结论研究强调需要使用相互补充的各种方法,以在器官,组织和细胞水平上全面了解OA的病理生理学。这项研究的结果表明,组织学,μCT和EPICμCT以及功能性DWB测试的使用提供了强大的组合,可以全面评估OA的关键方面并增强数据解释。

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