AO Research Institute Davos, Davos Platz, Switzerland.
Department of Trauma Surgery, University Hospitals Leuven, Leuven, Belgium.
Expert Opin Biol Ther. 2024 Sep;24(9):973-991. doi: 10.1080/14712598.2024.2391491. Epub 2024 Aug 13.
With the introduction and continuous improvement in operative fracture fixation, even the most severe bone fractures can be treated with a high rate of successful healing. However, healing complications can occur and when healing fails over prolonged time, the outcome is termed a fracture non-union. Non-union is generally believed to develop due to inadequate fixation, underlying host-related factors, or infection. Despite the advancements in fracture fixation and infection management, there is still a clear need for earlier diagnosis, improved prediction of healing outcomes and innovation in the treatment of non-union.
This review provides a detailed description of non-union from a clinical perspective, including the state of the art in diagnosis, treatment, and currently available biomaterials and orthobiologics.Subsequently, recent translational development from the biological, mechanical, and infection research fields are presented, including the latest in smart implants, osteoinductive materials, and modeling.
The first challenge for future innovations is to refine and to identify new clinical factors for the proper definition, diagnosis, and treatment of non-union. However, integration of , , and research will enable a comprehensive understanding of non-union causes and correlations, leading to the development of more effective treatments.
随着手术骨折固定技术的引入和不断改进,即使是最严重的骨折也可以实现高愈合率。然而,仍可能出现愈合并发症,如果长时间愈合失败,则称之为骨折不愈合。一般认为,骨折不愈合是由于固定不充分、潜在的宿主相关因素或感染引起的。尽管骨折固定和感染管理取得了进展,但仍迫切需要更早地诊断、改善愈合结果的预测,并在不愈合的治疗方面进行创新。
本综述从临床角度详细描述了骨折不愈合,包括目前在诊断、治疗以及现有的生物材料和骨生物制剂方面的最新进展。随后,介绍了生物、力学和感染研究领域的最新转化进展,包括智能植入物、诱导成骨材料和建模方面的最新进展。
未来创新的首要挑战是改进并确定新的临床因素,以正确定义、诊断和治疗骨折不愈合。然而,整合生物学、力学和感染学研究将使我们能够全面了解骨折不愈合的原因和相关性,从而开发出更有效的治疗方法。