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Post-traumatic osteoarthritis: improved understanding and opportunities for early intervention.

机译:创伤后骨关节炎:增进了解并进行早期干预。

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摘要

Even with current treatments of acute joint injuries, more than 40% of people who suffer significant ligament or meniscus tears, or articular surface injuries, will develop osteoarthritis (OA). Correspondingly, 12% or more of all patients with lower extremity OA have a history of joint injury. Recent research suggests that acute joint damage that occurs at the time of an injury initiates a sequence of events that can lead to progressive articular surface damage. New molecular interventions, combined with evolving surgical methods, aim to minimize or prevent progressive tissue damage triggered by joint injury. Seizing the potential for progress in the treatment of joint injuries to forestall OA will depend on advances in (1) quantitative methods of assessing the injury severity, including both structural damage and biologic responses, (2) understanding of the pathogenesis of post-traumatic OA, taking into account potential interactions among the different tissues and the role of post-traumatic incongruity and instability, and (3) application of engineering and molecular research to develop new methods of treating injured joints. This paper highlights recent advances in understanding of the structural damage and the acute biological response following joint injury, and it identifies important directions for future research.
机译:即使采用当前的急性关节损伤治疗方法,仍有超过40%的人遭受严重的韧带或半月板撕裂或关节表面损伤,仍会发展成骨关节炎(OA)。相应地,所有下肢OA患者中有12%或更多有关节损伤史。最近的研究表明,在受伤时发生的急性关节损伤会引发一系列事件,这些事件可能导致进行性关节表面损伤。新的分子干预措施,结合不断发展的外科手术方法,旨在最大程度地减少或预防由关节损伤引发的进行性组织损伤。把握在预防先天性关节炎的关节损伤治疗中取得进展的潜力将取决于(1)评估损伤严重程度的定量方法的进展,包括结构损伤和生物学反应,(2)了解创伤后OA的发病机理,考虑到不同组织之间的潜在相互作用以及创伤后不一致性和不稳定性的作用,以及(3)应用工程和分子研究来开发治疗受伤关节的新方法。本文重点介绍了在了解结构损伤和关节损伤后的急性生物学反应方面的最新进展,并确定了未来研究的重要方向。

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