Related Experiment Video
Updated: May 6, 2026

Novel Diagnostics in Revision Arthroplasty: Implant Sonication and Multiplex Polymerase Chain Reaction
Published on: December 3, 2017
Sonication of antibiotic-loaded cement spacers in a two-stage revision protocol for infected joint arthroplasty
Massimo Mariconda1, Tiziana Ascione, Giovanni Balato
1Department of Orthopaedic Surgery, "Federico II" University, Policlinico Federico II, Via S, Pansini 5, bd, 12, 80128, Naples, Italy. maricond@unina.it.
Background:
Culturing of the sonication fluid of removed implants has proven to be more sensitive than conventional periprosthetic tissue culture for the microbiological diagnosis of prosthetic joint infection. Since bacteria surviving on antibiotic-loaded cement spacers used in a two-stage exchange protocol for infected arthroplasties may cause the persistence of infection, in this study we asked whether the sonication also could be used to identify bacteria on antibiotic-loaded cement spacers removed at the second surgical stage during a two-stage exchange procedure to confirm whether or not the prosthetic joint infection had been eradicated.
Methods:
We cultured the sonication fluid of cement spacers that had been originally implanted in a two-stage exchange protocol in 21 patients (mean age, 66 years) affected by prosthetic joint infection (16 total knee prostheses and 5 hip prostheses). The cement spacers were vortexed for 30 seconds and then subjected to sonication (frequency 35-40 KHz). The resulting sonicate fluid was cultured for aerobic and anaerobic bacteria.
Results:
The sonication fluid culture of the removed spacer was positive in six patients (29%), with isolation of methicillin-sensible Staphylococcus Aureus (MSSA) in three cases, methicillin-resistant Staphylococcus Aureus (MRSA) in one case and Pseudomonas Aeruginosa in two cases. In three of these positive cases, the traditional culture of periprosthetic tissue was negative. Two patients with positive sonication culture of the spacer were successfully treated by early debridement of the revision prosthesis and systemic antibiotic therapy. In three patients a knee arthrodesis was planned and performed as the second surgical stage. In two of them the infection was caused by highly resistant Pseudomonas Aeruginosa. The other patient with a MSSA infection had been poorly compliant with the systemic antibiotic therapy due to her mental impairment. The patient originally affected by MRSA infection of his primary hip arthroplasty developed recurrent infection of his revision prosthesis and eventually underwent Girdlestone arthroplasty.
Conclusions:
The sonication culture can be used to discover any bacteria on the antibiotic-loaded cement spacer during a two-stage exchange protocol, thus permitting the adoption of timely treatment options, such as the early prosthetic debridment.
Insights
Sonication fluid culture of antibiotic-loaded cement spacers can detect persistent prosthetic joint infection (PJI). This method aids in timely treatment decisions, improving outcomes for patients undergoing two-stage exchange procedures.
Area of Science:
- Orthopedic Surgery
- Infectious Diseases
- Microbiology
Background:
- Prosthetic joint infection (PJI) diagnosis relies on periprosthetic tissue culture.
- Antibiotic-loaded cement spacers are used in two-stage exchange for PJI.
- Persistent bacteria on spacers can lead to treatment failure.
Purpose of the Study:
- Evaluate sonication fluid culture of removed cement spacers.
- Determine if sonication can identify bacteria missed by traditional methods.
- Assess sonication's utility in confirming PJI eradication.
Main Methods:
- Sonication fluid from 21 removed antibiotic-loaded cement spacers was cultured.
- Spacers were from patients undergoing two-stage exchange for PJI.
- Sonication involved vortexing followed by 35-40 KHz sonication.
Main Results:
- Sonication culture was positive in 6/21 patients (29%).
- Identified bacteria included MSSA, MRSA, and Pseudomonas Aeruginosa.
- Traditional periprosthetic tissue culture was negative in 3 of these positive cases.
Conclusions:
- Sonication culture effectively detects bacteria on cement spacers in PJI.
- This method supports timely interventions like early debridment.
- Sonication aids in managing persistent infections during two-stage exchange.

