Savin Liliana, Pinteala Tudor, Mihai Dana Nicoleta, Mihailescu Dan, Miu Smaranda Stefana, Sirbu Mihnea Theodor, Veliceasa Bogdan, Popescu Dragos Cristian, Sirbu Paul Dan, Forna Norin
Department of Orthopedics and Traumatology, Faculty of Medicine, "Grigore T. Popa" University of Medicine and Pharmacy, 700115 Iasi, Romania.
Department of Orthopedics, Clinical Rehabilitation Hospital, 700661 Iasi, Romania.
Polymers (Basel). 2023 Aug 2;15(15):3278. doi: 10.3390/polym15153278.
One of the most popular and effective orthopedic surgical interventions for treating a variety of hip diseases is total hip arthroplasty. Despite being a radical procedure that involves replacing bone and cartilaginous surfaces with biomaterials, it produces excellent outcomes that significantly increase the patient's quality of life. Patient factors and surgical technique, as well as biomaterials, play a role in prosthetic survival, with aseptic loosening (one of the most common causes of total hip arthroplasty failure) being linked to the quality of biomaterials utilized. Over the years, various biomaterials have been developed to limit the amount of wear particles generated over time by friction between the prosthetic head (metal alloys or ceramic) and the insert fixed in the acetabular component (polyethylene or ceramic). An ideal biomaterial must be biocompatible, have a low coefficient of friction, be corrosion resistant, and have great mechanical power. Comprehensive knowledge regarding what causes hip arthroplasty failure, as well as improvements in biomaterial quality and surgical technique, will influence the survivability of the prosthetic implant. The purpose of this article was to assess the benefits and drawbacks of various biomaterial and friction couples used in total hip arthroplasties by reviewing the scientific literature published over the last 10 years.
全髋关节置换术是治疗各种髋关节疾病最常用且有效的骨科手术干预措施之一。尽管这是一种激进的手术,涉及用生物材料替代骨骼和软骨表面,但它能产生极佳的效果,显著提高患者的生活质量。患者因素、手术技术以及生物材料在假体存活方面都发挥着作用,无菌性松动(全髋关节置换术失败最常见的原因之一)与所使用生物材料的质量有关。多年来,已研发出各种生物材料,以限制随着时间推移假体头部(金属合金或陶瓷)与固定在髋臼组件中的衬垫(聚乙烯或陶瓷)之间摩擦产生的磨损颗粒量。理想的生物材料必须具有生物相容性、低摩擦系数、耐腐蚀且具有强大的机械性能。关于髋关节置换术失败原因的全面知识,以及生物材料质量和手术技术的改进,将影响假体植入物的存活率。本文的目的是通过回顾过去10年发表的科学文献,评估全髋关节置换术中使用的各种生物材料和摩擦副的优缺点。