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用于植入物的关节软骨与金属滑动的生物摩擦学测试与分析

Biotribological Testing and Analysis of Articular Cartilage Sliding against Metal for Implants.

作者信息

Stotter Christoph, Bauer Christoph, Simlinger Bojana, Ripoll Manel Rodriguez, Franek Friedrich, Klestil Thomas, Nehrer Stefan

机构信息

Faculty of Health and Medicine, Department for Health Sciences, Medicine and Research, Center for Regenerative Medicine, Danube University Krems; Department of Orthopedics and Traumatology, LK Baden-Mödling-Hainburg;

Faculty of Health and Medicine, Department for Health Sciences, Medicine and Research, Center for Regenerative Medicine, Danube University Krems.

出版信息

J Vis Exp. 2020 May 14(159). doi: 10.3791/61304.

Abstract

Osteochondral defects in middle-aged patients might be treated with focal metallic implants. First developed for defects in the knee joint, implants are now available for the shoulder, hip, ankle and the first metatarsalphalangeal joint. While providing pain reduction and clinical improvement, progressive degenerative changes of the opposing cartilage are observed in many patients. The mechanisms leading to this damage are not fully understood. This protocol describes a tribological experiment to simulate a metal-on-cartilage pairing and comprehensive analysis of the articular cartilage. Metal implant material is tested against bovine osteochondral cylinders as a model for human articular cartilage. By applying different loads and sliding speeds, physiological loading conditions can be imitated. To provide a comprehensive analysis of the effects on the articular cartilage, histology, metabolic activity and gene expression analysis are described in this protocol. The main advantage of tribological testing is that loading parameters can be adjusted freely to simulate in vivo conditions. Furthermore, different testing solutions might be used to investigate the influence of lubrication or pro-inflammatory agents. By using gene expression analysis for cartilage-specific genes and catabolic genes, early changes in the metabolism of articular chondrocytes in response to mechanical loading might be detected.

摘要

中年患者的骨软骨缺损可以采用局部金属植入物进行治疗。这种植入物最初是为膝关节缺损设计的,现在也可用于肩部、髋部、踝关节和第一跖趾关节。虽然植入物能减轻疼痛并改善临床症状,但许多患者会出现对侧软骨的渐进性退行性改变。导致这种损伤的机制尚未完全明确。本方案描述了一项摩擦学实验,用于模拟金属与软骨的配对,并对关节软骨进行全面分析。以金属植入材料与牛骨软骨圆柱体进行测试,后者作为人类关节软骨的模型。通过施加不同的载荷和滑动速度,可以模拟生理载荷条件。为了全面分析对关节软骨的影响,本方案介绍了组织学、代谢活性和基因表达分析方法。摩擦学测试的主要优点是可以自由调整加载参数以模拟体内条件。此外,可以使用不同的测试溶液来研究润滑或促炎剂的影响。通过对软骨特异性基因和分解代谢基因进行基因表达分析,可以检测关节软骨细胞代谢对机械载荷的早期变化。

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