Effects of vitamin E incorporation in polyethylene on oxidative degradation, wear rates, immune response, and infections in total joint arthroplasty: a review of the current literature

被引:0
作者
Bart Lambert
Daniëlle Neut
Hugo C. van der Veen
Sjoerd K. Bulstra
机构
[1] University of Groningen,Department of Orthopedic Surgery
[2] University Medical Center Groningen,Department of Biomedical Engineering
[3] University of Groningen,undefined
[4] University Medical Center Groningen,undefined
来源
International Orthopaedics | 2019年 / 43卷
关键词
Vitamin E; UHMWPE; Highly cross-linked polyethylene; Arthroplasty; Wear rates; Infection;
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中图分类号
学科分类号
摘要
Highly cross-linked ultrahigh molecular weight polyethylene (UHMWPE) was introduced to decrease wear debris and osteolysis. During cross-linking, free radicals are formed, making highly cross-linked polyethylene vulnerable to oxidative degradation. In order to reduce this process, anti-oxidant vitamin E can be incorporated in polyethylene. This review provides an overview of the effects of vitamin E incorporation on major complications in total joint arthroplasty: material failure due to oxidative degradation, wear debris and subsequent periprosthetic osteolysis, and prosthetic joint infections. Secondly, this review summarizes the first clinical results of total hip and knee arthroplasties with vitamin E incorporated highly cross-linked polyethylene. Based on in vitro studies, incorporation of vitamin E in polyethylene provides good oxidative protection and preserves low wear rates. Incorporation of vitamin E may have the beneficial effect of reduced inflammatory response to its wear particles. Some microorganisms showed reduced adherence to vitamin E–incorporated UHMWPE; however, clinical relevance is doubtful. Short-term clinical studies of total hip and knee arthroplasties with vitamin E–incorporated highly cross-linked UHMWPE reported good clinical results and wear rates similar to highly cross-linked UHMWPE without vitamin E.
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页码:1549 / 1557
页数:8
相关论文
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[1]  
Heckmann ND(2018)Total hip arthroplasty bearing surface trends in the United States from 2007 to 2014: the rise of ceramic on polyethylene J Arthroplast 33 1757-1763.e1
[2]  
Sivasundaram L(2006)The central role of wear debris in periprosthetic osteolysis HSS J 2 102-113
[3]  
Stefl MD(2000)Effect of sterilization method and other modifications on the wear resistance of acetabular cups made of ultra-high molecular weight polyethylene. A hip-simulator study J Bone Joint Surg Am 82-A 1708-1725
[4]  
Kang HP(2013)The 2012 John Charnley Award: clinical multicenter studies of the wear performance of highly crosslinked remelted polyethylene in THA Clin Orthop Relat Res 471 393-402
[5]  
Basler ET(2009)Wear rate of highly cross-linked polyethylene in total hip arthroplasty. A randomized controlled trial J Bone Joint Surg Am 91 773-782
[6]  
Lieberman JR(2011)The seven-year wear of highly cross-linked polyethylene in total hip arthroplasty: a double-blind, randomized controlled trial using radiostereometric analysis J Bone Joint Surg Am 93 716-722
[7]  
Purdue PE(2008)Update on UHMWPE research: from the bench to the bedside Acta Orthop 79 832-840
[8]  
Koulouvaris P(2014)Biotribology of a vitamin E-stabilized polyethylene for hip arthroplasty - influence of artificial ageing and third-body particles on wear Acta Biomater 10 3068-3078
[9]  
Nestor BJ(2014)Wear of a sequentially annealed polyethylene acetabular liner Acta Orthop 85 470-473
[10]  
Sculco TP(2002)Comparison of the properties of annealed crosslinked (crossfire) and conventional polyethylene as hip bearing materials Bull Hosp Jt Dis 61 17-26