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Updated: Nov 19, 2025

A Novel Method to Determine the Longitudinal Antibacterial Activity of Drug-Eluting Materials
Published on: March 3, 2023
Comparative Raman study on the molecular structure and IN VIVO wear of poly(methyl methacrylate)-based devices used
Paola Taddei1, Saverio Affatato2
1Dipartimento di Scienze Biomediche e Neuromotorie, Università di Bologna, Via Belmeloro 8/2, 40126, Bologna, Italy.
Abstract:
The infection rate of total knee arthroplasty is still high, in spite of the high success of this surgical procedure. The use of an antibiotic-loaded temporary spacer made of poly(methyl methacrylate) (PMMA) has been proposed to treat infected knee arthroplasties. This study was aimed at comparatively investigating, on a molecular scale, two types of spacers from the same manufacturer (Spacer K and Vancogenx-space knee, Tecres, Italy), which differ for the added antibiotic (gentamicin sulphate in Spacer K and gentamicin sulphate + vancomycin hydrochloride in Vancogenx). Raman spectroscopy was used to gain more insights into the possible effects of the antibiotic on the spacer composition and polymer structure both in the new components and after in vivo use. Vancogenx was found to contain a lower residual MMA content than Spacer K (about 0.15% versus 0.4%). The former contained a higher amount of isotactic stereosequences than the latter, while the syndiotactic content (the prevailing component) was not significantly different in the two prostheses. The presence of vancomycin hydrochloride influenced not only the degree of polymerization and PMMA tacticity and crystallinity, but in turn also the wear behavior. Actually, Spacer K retrievals were found more affected by in vivo implantation than Vancogenx-space knee ones, revealing slight variations in polymer tacticity and crystallinity and relative radiopacifier content, besides release of MMA and additives of polymerization. However, these changes did not appear worrisome, due to the temporary nature of the prosthesis. In view of these results, the addition of vancomycin hydrochloride could offer an advantage, in spite of the higher costs requested and the potential risks of its unselective use.
Insights
Two antibiotic-loaded spacers for infected knee arthroplasty were compared. Vancogenx, with vancomycin, showed better in vivo stability and less degradation than Spacer K, suggesting an advantage despite higher costs.
Area of Science:
- Biomaterials Science
- Orthopedic Surgery
- Polymer Chemistry
Background:
- Total knee arthroplasty (TKA) has a persistent high infection rate.
- Antibiotic-loaded poly(methyl methacrylate) (PMMA) spacers are used to manage infected TKAs.
- Understanding spacer composition and in vivo behavior is crucial for treatment efficacy.
Purpose of the Study:
- To comparatively analyze the molecular-level effects of different antibiotics on PMMA spacers.
- To investigate the in vivo stability and degradation of two antibiotic-loaded TKA spacers.
- To evaluate the influence of vancomycin hydrochloride on spacer properties and wear behavior.
Main Methods:
- Raman spectroscopy was employed to examine spacer composition and polymer structure.
- Two PMMA spacers (Spacer K and Vancogenx) with different antibiotic loads were analyzed.
- New and retrieved (in vivo used) spacers were compared to assess degradation.
Main Results:
- Vancogenx spacers exhibited lower residual MMA content and higher isotactic PMMA stereosequences than Spacer K.
- Vancomycin hydrochloride influenced PMMA tacticity, crystallinity, and wear behavior.
- Spacer K retrievals showed more in vivo degradation (changes in tacticity, crystallinity, radiopacifier content) than Vancogenx.
Conclusions:
- The addition of vancomycin hydrochloride to PMMA spacers may enhance in vivo stability and reduce degradation.
- Vancogenx spacers demonstrated superior performance compared to Spacer K after implantation.
- Vancomycin-containing spacers offer potential advantages for managing infected knee arthroplasties, warranting consideration despite cost and usage risks.
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