Department of Orthopaedics and Traumatology, University of Turin, Torino, Italy.
Molecular Biotechnology Center, University of Turin, Torino, Italy.
J Biol Regul Homeost Agents. 2020 Jul-Aug;34(4 Suppl. 3):405-417. Congress of the Italian Orthopaedic Research Society.
Periprosthetic osteolysis is still one of the major limitations of prosthetic joints longevity. The process of this "silent" iatrogenic disease involves both mechanical and biological factors that initiate a local immune response in the periprosthetic tissue that eventually lead to implant loosening and failure. There are many causes of the primary aseptic loosening inside the periprosthetic microenvironment, but the most important elements are the wear debris and the cell-particle interactions. Together with implant position, micromotion, bearings, joint fluid pressure, and increased load on the joints drive the pathogenesis of the disease. This narrative review aims to summarise recent studies describing the biological and mechanical factors in the pathogenesis of osteolysis and some of the current pharmacological attempts to "rescue" a failing implant.
假体周围骨溶解仍然是假体关节长期存在的主要限制因素之一。这种“无声”的医源性疾病的发生过程涉及机械和生物因素,这些因素会在假体周围组织中引发局部免疫反应,最终导致植入物松动和失效。假体周围微环境中导致原发性无菌性松动的原因有很多,但最重要的因素是磨损颗粒和细胞-颗粒相互作用。结合植入物位置、微动、关节液压力、关节负荷增加等因素,共同推动了疾病的发生发展。本综述旨在总结近期描述假体周围骨溶解发病机制中生物学和机械因素的研究,并探讨一些目前试图“挽救”失败植入物的药理学尝试。