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维生素E稳定的超高分子量聚乙烯对人成骨细胞氧化应激反应和骨免疫学反应的影响

Effects of Vitamin E-Stabilized Ultra High Molecular Weight Polyethylene on Oxidative Stress Response and Osteoimmunological Response in Human Osteoblast.

作者信息

Massaccesi Luca, Ragone Vincenza, Papini Nadia, Goi Giancarlo, Corsi Romanelli Massimiliano Marco, Galliera Emanuela

机构信息

Department of Biomedical Sciences for Health, Università degli Studi di Milano, Milan, Italy.

Research and Develpoment Department, Permedica S.p.A, Merate, Italy.

出版信息

Front Endocrinol (Lausanne). 2019 Apr 3;10:203. doi: 10.3389/fendo.2019.00203. eCollection 2019.

Abstract

High Crosslink process was introduced in the development of joint prosthetic devices, in order to decrease the wear rate of ultrahigh molecular weight polyethylene (UHMWPE), but it also triggers the formation of free radicals and oxidative stress, which affects the physiological bone remodeling, leading to osteolysis. Vitamin E stabilization of UHMWPE was proposed to provide oxidation resistance without affecting mechanical properties and fatigue strength. The aim of this study is to evaluate the antioxidant effect of vitamin E added to UHMWPE on oxidative stress induced osteolysis, focusing in particular on the oxidative stress response in correlation with the production of osteoimmunological markers, Sclerostin and DKK-1, and the RANKL/OPG ratio compared to conventional UHMWPE wear debris. Human osteoblastic cell line SaOS2 were incubated for 96 h with wear particles derived from crosslinked and not crosslinked Vitamin E-stabilized, UHMWPE without Vitamin E, and growth medium as control. Cellular response to oxidative stress, compared to not treat cells, was evaluated in terms of proteins O-GlcNAcylation, cellular levels of OGA, and OGT proteins by immunoblotting. O-GlcNAcylation and its positive regulator OGT levels are increased in the presence of Vitamin E blended UHMWPE, in particular with not crosslinked Vit E stabilized UHMWPE. Conversely, the negative regulator OGA increased in the presence of UHMWPE not blended with Vitamin E. Vitamin E-stabilized UHMWPE induced a decrease of RANKL/OPG ratio compared to UHMWPE without Vitamin E, and the same effect was observed for Sclerostin, while DKK-1 was not significantly affected. In conclusion, Vitamin E stabilization of UHMWPE increased osteoblast response to oxidative stress, inducing a cellular mechanism aimed at cell survival. Vitamin E antioxidant effect influences the secretion of osteoimmunological factors, shifting the bone turnover balance toward bone protection stimuli. This suggests that Vitamin E-Stabilization of UHMWPE could contribute to reduction of oxidation-induced osteolysis and the consequent loosening of the prosthetic devices, therefore improving the longevity of total joint replacements.

摘要

在关节假体装置的研发中引入了高交联工艺,以降低超高分子量聚乙烯(UHMWPE)的磨损率,但这也会引发自由基的形成和氧化应激,进而影响生理性骨重塑,导致骨溶解。有人提出对UHMWPE进行维生素E稳定化处理,以提供抗氧化性能,同时不影响其机械性能和疲劳强度。本研究的目的是评估添加到UHMWPE中的维生素E对氧化应激诱导的骨溶解的抗氧化作用,特别关注与骨免疫标志物硬化蛋白和DKK-1的产生以及与传统UHMWPE磨损颗粒相比的RANKL/OPG比值相关的氧化应激反应。将人成骨细胞系SaOS2与交联和未交联的、添加维生素E稳定化的、未添加维生素E的UHMWPE产生的磨损颗粒以及作为对照的生长培养基一起孵育96小时。通过免疫印迹法,相对于未处理的细胞,从蛋白质O-糖基化、OGA细胞水平和OGT蛋白方面评估细胞对氧化应激的反应。在添加维生素E的UHMWPE存在下,尤其是未交联的维生素E稳定化的UHMWPE存在下,O-糖基化及其正调节因子OGT水平会升高。相反,在未与维生素E混合的UHMWPE存在下,负调节因子OGA会升高。与未添加维生素E的UHMWPE相比,维生素E稳定化的UHMWPE诱导RANKL/OPG比值降低,硬化蛋白也观察到相同的效果,而DKK-1没有受到显著影响。总之,UHMWPE的维生素E稳定化增强了成骨细胞对氧化应激的反应,诱导了一种旨在细胞存活的细胞机制。维生素E的抗氧化作用影响骨免疫因子的分泌,使骨转换平衡向骨保护刺激方向转变。这表明UHMWPE的维生素E稳定化有助于减少氧化诱导的骨溶解以及随之而来的假体装置松动,从而提高全关节置换的使用寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2640/6457167/4b06c819b957/fendo-10-00203-g0001.jpg

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