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  3. Correlation of cross-linking as measured by the trans-vinylene index and in vitro wear of polyethylene from various acetabular liner brands

Correlation of cross-linking as measured by the trans-vinylene index and in vitro wear of polyethylene from various acetabular liner brands

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DOI
10.48620/77018
Publisher DOI
10.1302/2046-3758.1311.BJR-2024-0203.R1
PubMed ID
39588944
Abstract
Aims: Highly cross-linked polyethylene (HXLPE) greatly reduces wear in total hip arthroplasty, compared to conventional polyethylene (CPE). Cross-linking is commonly achieved by irradiation. This study aimed to compare the degree of cross-linking and in vitro wear rates across a cohort of retrieved and unused polyethylene cups/liners from various brands.

Methods: Polyethylene acetabular cups/liners were collected at one centre from 1 April 2021 to 30 April 2022. The trans-vinylene index (TVI) and oxidation index (OI) were determined by Fourier-transform infrared spectrometry. Wear was measured using a pin-on-disk test.

Results: A total of 47 specimens from ten brands were included. The TVI was independent of time in vivo. A linear correlation (R2 = 0.995) was observed between the old and current TVI standards, except for vitamin E-containing polyethylene. The absorbed irradiation dose calculated from the TVI corresponded to product specifications for all but two products. For one electron beam-irradiated HXLPE, a mean dose of 241% (SD 18%) of specifications was determined. For another, gamma-irradiated HXLPE, a mean 41% (SD 13%) of specifications was determined. Lower wear was observed for higher TVI.

Conclusion: The TVI is a reliable measure of the absorbed irradiation dose and does not alter over time in vivo. The products of various brands differ by manufacturing details and consequently cross-linking characteristics. Absorption and penetration of electron radiation and gamma radiation differ, potentially leading to higher degrees of cross-linking for electron radiation. There is a non-linear, inverse correlation between TVI and in vitro wear. The wear resistance of the HXLPE with low TVI was reduced and more comparable to CPE.
Date Issued
2024-11-26
Publication Type
Article
Language(s)
en
Author(s)
Wahl, Peter  
Heuberger, Roman  
Pascucci, Andrea
Imwinkelried, Thomas  
Fürstner, Markus  
Clinic of Radiation Oncology, Medical Radiation Physics  
Icken, Niels
Schläppi, Michel
Pourzal, Robin
Gautier, Emanuel  
Additional Credits
Clinic of Radiation Oncology, Medical Radiation Physics  
Journal
Bone & Joint Research
Publisher
British Editorial Society of Bone and Joint Surgery
ISSN
2046-3758
Access(Rights)
open.access
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