Is Wear Still a Concern in TKA With Contemporary Conventional and Highly Crosslinked Polyethylene Tibial Inserts in the Mid- to Long-Term?

Author:

Asher Devin P.,Wright Jennifer L.,Hall Deborah J.ORCID,Lundberg Hannah J.ORCID,Van Citters Douglas W.ORCID,Jacobs Joshua J.ORCID,Levine Brett R.ORCID,Pourzal RobinORCID

Abstract

AbstractBackgroundModern literature has brought into question if wear of tibial inserts made from conventional or highly-crosslinked polyethylene (HXL PE) is still a factor limiting longevity of total knee arthroplasty (TKA) in the mid- to long-term. It is the objective of this study to determine: 1) most common causes of mid- to long-term TKA failure, 2) the prevalence of delamination, and 3) the medial/lateral linear wear rates of conventional and HXL PE tibial inserts retrieved in the mid- to long-term.MethodsA tibial insert retrieval cohort of 107 inserts (79 conventional, 28 HXL PE) with a minimum timein situof 6.5 years (mean 11.7±4) was studied. Failure causes were determined from chart-review, delamination presence was assessed microscopically, and medial/lateral linear wear was determined by minimal thickness changes measured with a dial-indicator.ResultsThe most common mid-to long-term etiologies for failure were instability (44.9%), PE wear 15%), aseptic loosening (14%) and infection (13.1%). Delamination occurred in 70% of inserts (72.1% conventional, 64.3% HXLPE). Gross material loss due to delamination appeared to be the underlying reason for at least 33.3% of cases exhibiting instability. Of the cases removed for infection, 75% exhibited no histopathological hallmarks of acute infection. The medial/lateral wear rates were 0.054/0.051 (conventional) and 0.014/0.011 (HXL) mm/year, respectively.ConclusionsPolyethylene wear still appears to be a major primary and secondary cause for TKA revision in the mid- to long-term. Wear may manifest as destabilizing delamination or as continuous release of fine wear particles potentially resulting in inflammatory responses and subsequent failure.

Publisher

Cold Spring Harbor Laboratory

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