A novel method of cross-linking ultra-high-molecular-weight polyethylene to improve wear, reduce oxidation, and retain mechanical properties

J Arthroplasty · 2001 · Classic · cited 640 times

Orhun K. Muratoglu, C.R. Bragdon, Daniel O’Connor, Murali Jasty, William H. Harris

Orthopaedic Biomechanics and Biomaterials Laboratory, Massachusetts General Hospital, GRJ 1206

Adult Reconstruction

SUMMARY — THE REDUCTIONA novel high-dose electron beam irradiation and melt-annealing process markedly improves UHMWPE wear resistance and oxidation resistance while preserving mechanical properties, offering a better bearing material for joint implants.
Abstract, as published

Increasing cross-linking has been shown in vitro and in vivo to improve markedly the wear resistance of ultra-high-molecular-weight polyethylene (UHMWPE). The reduction in the mechanical properties of polyethylene under certain methods used to produce cross-linking has been a concern, however. These reductions are known to result from the processes used to increase the cross-link density and could affect the device performance in vivo. We present a novel method of increasing the cross-link density of UHMWPE in which UHMWPE is irradiated in air at an elevated temperature with a high-dose-rate electron beam and subsequently is melt-annealed. This treatment improves markedly the wear resistance of the polymer as tested in a hip simulator, while maintaining the mechanical properties of the material within national and international standards. This method leads to the absence of detectable free radicals in the polymer and, as a result, excellent resistance to oxidation of the polymer.

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