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Cathodic voltage-controlled electrical stimulation and betadine decontaminate nosocomial pathogens from implant
Tripti Thapa Gupta1, Bernadette Zumpano1, Jacob Opalinski1
1Garwood Medical Devices, LLC, Buffalo, New York, USA.
Abstract:
Periprosthetic joint infection (PJI) after total joint arthroplasty is a major concern requiring multiple surgeries and antibiotic interventions. Staphylococcus aureus, Pseudomonas aeruginosa, and Escherichia coli are the predominant causes of these infections. Due to biofilm formation, antibiotic treatment for patients with PJI can prolong resistance, further complicating the use of current treatments. Previous research has shown that cathodic voltage-controlled electrical stimulation (CVCES) is an effective technique to prevent/treat implant-associated biofilm infections on titanium (Ti) surfaces. This study thus evaluated the efficacy of CVCES via the use of 10% betadine alone and in combination with CVCES to eradicate lab-grown biofilms on cemented and cementless cobalt-chromium (CoCr) and Ti surfaces. CVCES treatment alone for 24 hours demonstrated no detectable CFU for E. coli and P. aeruginosa biofilms on cementless CoCr implants. In the presence of cement, E. coli biofilms had 106 CFUs/implant remaining after CVCES treatment alone; however, P. aeruginosa biofilms on cemented implants were reduced to below detectable limits. The use of 10% betadine treatment for 3 minutes followed by 24-hour CVCES treatment brought CFU levels to below detectable limits in E. coli and P. aeruginosa. The same was true for S. aureus biofilms on cementless patellofemoral implants as well as femoral and tibial implants. These treatment methods were not sufficient for eradication of S. aureus biofilms on cemented implants. These results suggest that CVCES alone and CVCES with 10% betadine are effective approaches to treating biofilms formed by certain bacterial species potentially leading to the treatment of PJI.IMPORTANCEPeriprosthetic joint infections (PJIs) are problematic due to requiring multiple surgeries and antibiotic therapies that are responsible for increased patient morbidity and healthcare costs. These infections become resistant to antibiotic treatment due to the formation of biofilms on the orthopedic surfaces. Cathodic voltage-controlled electrical stimulation (CVCES) has previously been shown to be an effective technique to prevent and treat biofilm infections on different surfaces. This study shows that CVCES can increase the efficacy of 10% betadine irrigation used in debridement, antibiotics, and implant retention by 99.9% and clear infection to below detection limits. PJI treatments are at times limited, and CVCES could be a promising technology to improve patient outcomes.
Insights
Cathodic voltage-controlled electrical stimulation (CVCES) combined with betadine effectively eradicates common periprosthetic joint infection (PJI) biofilms on orthopedic implants. This approach shows promise for treating resistant PJI, potentially reducing the need for multiple surgeries and extensive antibiotic use.
Area of Science:
- Biomedical Engineering
- Infectious Diseases
- Materials Science
Background:
- Periprosthetic joint infections (PJIs) are a significant complication of total joint arthroplasty, often requiring complex treatment regimens.
- Biofilm formation by bacteria like *Staphylococcus aureus*, *Pseudomonas aeruginosa*, and *Escherichia coli* complicates antibiotic efficacy in PJIs.
- Current treatments for PJIs are often limited by antibiotic resistance and the need for repeated surgical interventions.
Purpose of the Study:
- To evaluate the efficacy of cathodic voltage-controlled electrical stimulation (CVCES) in eradicating bacterial biofilms on orthopedic implant materials.
- To assess the combined effect of CVCES and 10% betadine irrigation on biofilm reduction.
- To investigate the performance of these treatments on both cemented and cementless cobalt-chromium (CoCr) and titanium (Ti) surfaces.
Main Methods:
- Lab-grown biofilms of *E. coli*, *P. aeruginosa*, and *S. aureus* were established on cemented and cementless CoCr and Ti implant surfaces.
- CVCES treatment was applied for 24 hours to assess its standalone efficacy.
- A combination therapy of 3-minute 10% betadine treatment followed by 24-hour CVCES was evaluated.
Main Results:
- CVCES alone eliminated *E. coli* and *P. aeruginosa* biofilms on cementless CoCr implants.
- Combined 10% betadine and CVCES treatment reduced CFU levels to below detectable limits for *E. coli*, *P. aeruginosa*, and *S. aureus* on cementless implants.
- The combination therapy was highly effective but insufficient for eradicating *S. aureus* biofilms on cemented implants.
Conclusions:
- CVCES, particularly when combined with 10% betadine, demonstrates significant potential for treating biofilm infections on orthopedic implants.
- This approach may offer a novel strategy to enhance current debridement, antibiotics, and implant retention protocols for PJIs.
- CVCES represents a promising technology to improve patient outcomes in managing challenging periprosthetic joint infections.
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