Harris Orthopaedic Laboratory, Massachusetts General Hospital, Boston, Massachusetts, USA.
Harvard Medical School, Harvard University, Boston, Massachusetts, USA.
Bone Joint J. 2020 Jun;102-B(6_Supple_A):151-157. doi: 10.1302/0301-620X.102B6.BJJ-2019-1593.R1.
We propose a state-of-the-art temporary spacer, consisting of a cobalt-chrome (CoCr) femoral component and a gentamicin-eluting ultra-high molecular weight polyethylene (UHMWPE) tibial insert, which can provide therapeutic delivery of gentamicin, while retaining excellent mechanical properties. The proposed implant is designed to replace conventional spacers made from bone cement.
Gentamicin-loaded UHMWPE was prepared using phase-separated compression moulding, and its drug elution kinetics, antibacterial, mechanical, and wear properties were compared with those of conventional gentamicin-loaded bone cement.
Gentamicin-loaded UHMWPE tibial components not only eradicated planktonic , but also prevented colonization of both femoral and tibial components. The proposed spacer possesses far superior mechanical and wear properties when compared with conventional bone cement spacers.
The proposed gentamicin-eluting UHMWPE spacer can provide antibacterial efficacy comparable with currently used bone cement spacers, while overcoming their drawbacks. The novel spacer proposed here has the potential to drastically reduce complications associated with currently used bone cement spacers and substantially improve patients' quality of life during the treatment. Cite this article: 2020;102-B(6 Supple A):151-157.
我们提出了一种最先进的临时间隔器,由钴铬(CoCr)股骨部件和庆大霉素洗脱超高分子量聚乙烯(UHMWPE)胫骨插入物组成,它可以提供庆大霉素的治疗输送,同时保持优异的机械性能。拟议的植入物旨在替代传统的骨水泥制成的间隔物。
使用相分离压缩成型法制备庆大霉素负载的 UHMWPE,并将其药物洗脱动力学、抗菌、机械和磨损性能与传统的庆大霉素负载骨水泥进行比较。
庆大霉素负载的 UHMWPE 胫骨部件不仅消除了浮游生物,而且还防止了股骨和胫骨部件的定植。与传统的骨水泥间隔物相比,所提出的间隔物具有优异得多的机械和磨损性能。
所提出的庆大霉素洗脱 UHMWPE 间隔物可以提供与目前使用的骨水泥间隔物相当的抗菌功效,同时克服了它们的缺点。这里提出的新型间隔物有可能大大减少与目前使用的骨水泥间隔物相关的并发症,并显著提高患者在治疗过程中的生活质量。
2020;102-B(6 增刊 A):151-157。