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关节软骨的创伤性负荷:力学和生物学反应及损伤后治疗

Traumatic loading of articular cartilage: Mechanical and biological responses and post-injury treatment.

作者信息

Natoli Roman M, Athanasiou Kyriacos A

机构信息

MSTP, Baylor College of Medicine, Houston, TX, USA.

出版信息

Biorheology. 2009;46(6):451-85. doi: 10.3233/BIR-2009-0554.

Abstract

This review discusses a framework for studying injurious loading of articular cartilage, which can lead to post-traumatic osteoarthritis. The framework separates the mechanical from the biological response of the tissue to injury. The mechanical response is governed by the tissue's biomechanical behavior and sets off mechano-transductive pathways. These pathways then determine the biological response. The mechanical response of cartilage to injury has been studied by analytical and computational models of injurious loading, joint contact, and surface fissuring. These models have identified shear and tensile stresses as important parameters governing articular cartilage failure in response to mechanical injury. Further, measurement of cartilage's material properties during impact loading has shown that the tissue is significantly stiffer than predicted from quasi-static testing. In terms of the biological response, cell death and sulfated glycosaminoglycan (sGAG) loss from the tissue are early degradative changes that lead to decreased tissue function. These biological sequelae have also been the subject of targeted intervention strategies post-injury. Some success has been found for decreasing cell death and sGAG loss using various bioactive agents. The framework and treatments reviewed here may be useful starting points in the study of mechanical injury to other tissues.

摘要

本综述讨论了一个用于研究关节软骨损伤性负荷的框架,这种负荷可能导致创伤后骨关节炎。该框架将组织对损伤的机械反应与生物反应区分开来。机械反应受组织的生物力学行为支配,并引发机械转导途径。这些途径随后决定生物反应。软骨对损伤的机械反应已通过损伤性负荷、关节接触和表面裂隙的分析模型及计算模型进行了研究。这些模型已确定剪切应力和拉伸应力是控制关节软骨对机械损伤反应失效的重要参数。此外,在冲击负荷期间对软骨材料特性的测量表明,该组织比准静态测试预测的要硬得多。就生物反应而言,组织中的细胞死亡和硫酸化糖胺聚糖(sGAG)损失是导致组织功能下降的早期降解变化。这些生物后遗症也是损伤后靶向干预策略的研究对象。使用各种生物活性剂减少细胞死亡和sGAG损失已取得了一些成功。这里所综述的框架和治疗方法可能是研究其他组织机械损伤的有用起点。

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