Department of Biomedical Sciences for Health, Università degli Studi di Milano, Milan, Italy; IRCCS Galeazzi Orthopedic Institute, Milan, Italy.
Research and Develpoment Department, Permedica S.P.A., via Como 38, Merate, LC, Italy.
Clin Chim Acta. 2018 Nov;486:18-25. doi: 10.1016/j.cca.2018.07.012. Epub 2018 Jul 10.
UHMWPE doped with vitamin E was introduced to provide oxidation resistance upon sterilization, without affecting UHMWPE's mechanical properties. Particle-induced macrophage activation leads to periprosthetic bone resorption, requiring total joint replacements. During osteolysis, osteoblasts produce osteoimmunological factors such as RANKL and OPG, and the inhibitors of the Wnt pathway DKK-1 and Sclerostin. This study investigated in vitro how vitamin E-blended-UHMWPE wear debris might affect osteoblast-mediated osteolysis and the production of RANKL, OPG, Sclerostin and DKK-1, compared to conventional UHMWPE wear debris. Human osteoblastic SaOS2 cells were incubated with wear particles from Vitamin E doped and conventional UHMWPE and the gene expression and protein production of IL-6, RANKL, OPG, DKK-1, and Sclerostin was evaluated, RANKL, a bone erosion marker, was reduced, while OPG, a bone protective marker, were increased by the vitamin E-blended UHMWPE compared to conventional UHMWPE. Vitamin E doped UHMWPE reduced Sclerostin level, and partially affected DKK-1 production, thereby protecting against bone erosion. In conclusion, Vitamin E-blended UHMWPE induced an osteoimmunological response in bone cells that had positive effects on the osteolysis induced by wear debris, reducing aseptic loosening of the implants. In conclusion, this is the first study showing that Vitamin E-blended UHMWPE induced an osteoimmunological response in bone cells that positively affect the osteolysis induced by wear debris, thereby reducing the aseptic loosening of the implants.
PE 中添加维生素 E 是为了在消毒时提供抗氧化性,而不影响 PE 的机械性能。颗粒诱导巨噬细胞活化导致假体周围骨吸收,需要进行全关节置换。在骨溶解过程中,成骨细胞产生破骨免疫因子,如 RANKL 和 OPG,以及 Wnt 通路抑制剂 DKK-1 和 Sclerostin。本研究体外探讨了维生素 E 混合 UHMWPE 磨损颗粒如何影响成骨细胞介导的骨溶解以及 RANKL、OPG、Sclerostin 和 DKK-1 的产生,与传统 UHMWPE 磨损颗粒相比。将人成骨细胞 SaOS2 与维生素 E 掺杂和传统 UHMWPE 的磨损颗粒共培养,评估 IL-6、RANKL、OPG、DKK-1 和 Sclerostin 的基因表达和蛋白产生,维生素 E 混合 UHMWPE 降低了骨侵蚀标志物 RANKL 的表达,而增加了骨保护标志物 OPG 的表达。与传统 UHMWPE 相比。维生素 E 掺杂 UHMWPE 降低了 Sclerostin 水平,并部分影响了 DKK-1 的产生,从而保护骨免受侵蚀。总之,维生素 E 混合 UHMWPE 诱导了破骨细胞的骨免疫反应,对磨损颗粒诱导的骨溶解有积极影响,从而减少了植入物的无菌性松动。总之,这是第一项表明维生素 E 混合 UHMWPE 诱导破骨细胞骨免疫反应,对磨损颗粒诱导的骨溶解有积极影响,从而减少植入物无菌性松动的研究。