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添加维生素E的高度交联聚乙烯可降低体内关节置换模型中骨溶解的风险。

Vitamin E-added Highly Cross-Linked Polyethylene Decreases the Risk of Osteolysis in an In Vivo Arthroplasty Model.

作者信息

Bildik Celaleddin, Kahraman Hamit Çağlayan, Saygı Baransel

机构信息

Orthopaedics and Traumatology, Ataşehir Florence Nightingale Hospital, Istanbul, TUR.

Orthopaedics and Traumatology, Fatih Sultan Mehmet Training and Research Hospital, İstanbul, TUR.

出版信息

Cureus. 2023 Feb 14;15(2):e34955. doi: 10.7759/cureus.34955. eCollection 2023 Feb.

Abstract

Introduction Aseptic loosening is one of the most important complications of arthroplasty surgery. It is known that immune response against particles plays role in the pathogenesis of aseptic loosening. Polyethylene (PE) has an important place in these particles. There are limited in vivo studies examining aseptic loosening caused by PE residues. Objective The aim of the present study is to evaluate the aseptic loosening created by highly cross-linked PE (HXLPE) and vitamin E-added PE particles in an in vivo knee prosthesis model. Materials and methods Thirty-nine male Sprague-Dawley rats, which were randomized into three groups, were included in the study. After surgical exposure of knee joints of rats, femoral intramedullary canals were drilled and instilled with isolated saline solution and saline solution that contained standard PE or vitamin E-added PE particles according to their groups. Afterwards, a titanium implant was placed on the femoral articular surface of each animal. Rats received intraarticular injections weekly of the same solution, which was initially instilled into their femoral canal. The rats were sacrificed at the end of the third week and then underwent radiological and histopathological evaluations. Result In histopathological evaluation, periprosthetic membrane formation, inflammatory cell change, and cellular damage of cartilage and bone tissue around the implant were assessed. There was a statistically lesser amount of cellular damage and periprosthetic membrane formation in the vitamin-E/HXLPE group compared to the HXLPE group (p=0.04, p=0.001). No significant difference was found between the PE groups with respect to inflammatory cells (p=0.715). Conclusions HXLPE caused more significant osteolysis compared to VE-HXLPE. Antioxidants in PE could provide a reduction in osteolysis and aseptic loosening.

摘要

引言

无菌性松动是关节置换手术最重要的并发症之一。已知针对颗粒的免疫反应在无菌性松动的发病机制中起作用。聚乙烯(PE)在这些颗粒中占有重要地位。目前关于PE残留物引起无菌性松动的体内研究有限。

目的

本研究旨在评估在体内膝关节假体模型中,高交联聚乙烯(HXLPE)和添加维生素E的PE颗粒所造成的无菌性松动情况。

材料与方法

本研究纳入了39只雄性Sprague-Dawley大鼠,随机分为三组。在手术暴露大鼠膝关节后,钻入股骨髓腔,并根据分组向其中注入单独的生理盐水以及含有标准PE或添加维生素E的PE颗粒的生理盐水。之后,在每只动物的股骨关节表面放置一个钛植入物。大鼠每周接受一次关节内注射,注射的是最初注入其股骨髓腔的相同溶液。在第三周结束时处死大鼠,然后进行放射学和组织病理学评估。

结果

在组织病理学评估中,评估了假体周围膜的形成、炎性细胞变化以及植入物周围软骨和骨组织的细胞损伤情况。与HXLPE组相比,维生素E/HXLPE组的细胞损伤和假体周围膜形成在统计学上数量更少(p = 0.04,p = 0.001)。PE组之间在炎性细胞方面未发现显著差异(p = 0.715)。

结论

与维生素E-HXLPE相比,HXLPE引起的骨溶解更显著。PE中的抗氧化剂可减少骨溶解和无菌性松动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fac/10018446/de00b08957c2/cureus-0015-00000034955-i01.jpg

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