Related Experiment Videos
Antibiotics delivered by an implantable drug pump. A new application for treating osteomyelitis
Abstract:
Osteomyelitis is usually treated with wide surgical debridement and prolonged intravenous antibiotics. The advent of the implantable drug pump has led us to evaluate this therapeutic modality for the treatment of osteomyelitis. We have previously shown that amikacin retains microbiologic activity in an implantable drug pump over a six-week period when incubated at 37 degrees C. We have also demonstrated in rabbits that high local levels and low systemic levels of antibiotic can be achieved using an implantable drug pump as a delivery system and that this method can be used to sterilize infected wounds. This method was applied in the treatment of osteomyelitis in 14 patients whose duration of symptoms ranged from one month to 22 years. In 13 patients, active drainage had been present for more than six months, and all patients had undergone one or more attempts at eradication of their infection. Prior therapy included surgical debridement alone (one patient), one or more attempts at debridement and extended intravenous antibiotic therapy (13 patients), debridement and local flap procedures (four patients), and extended oral antibiotic therapy (two patients). The bones involved were the tibia (six patients), femur (four patients), and elbow, shoulder, hip, and radius (one patient each). Intra-operative cultures indicated that the infecting organism was Staphylococcus aureus alone (seven patients), S. aureus in combination with gram-negative bacteria (five patients), or gram-negative organisms alone (two patients). Debridement and pump implantation were performed in one stage. On an outpatient basis, the pumps were filled with amikacin in a concentration determined by each patient's serum level. Duration of therapy was based upon cessation of drainage and erythrocyte sedimentation rate. During therapy, serum amikacin levels ranged from less than 2.5 micrograms/ml to 8.2 micrograms/ml. The amikacin concentration in the wound drainage was always greater than the upper limits of what could be measured (greater than 55 micrograms/ml to greater than 5,000 micrograms/ml). There were no cases of ototoxicity and one case of minimal renal toxicity (posttreatment creatinine clearance of 66 ml per minute; normal equal to 70 ml per minute). Length of therapy ranged from 32 to 140 days (mean equal to 63 days). Length of hospitalization ranged from five to 52 days (mean equal to 24 days). Drainage in all patients stopped during therapy, but resumed in three patients after pump removal--in two patients, for brief periods of time, and in one patient, it continues. Twelve patients have posttreatment erythrocyte sedimentation rates less than or equal to 20 mm per hour.(ABSTRACT TRUNCATED AT 400 WORDS)
Insights
This study shows implantable drug pumps effectively treat osteomyelitis by delivering high local amikacin levels, reducing hospital stays and toxicity. This method offers a promising alternative for chronic bone infections.
Area of Science:
- Orthopedics
- Infectious Diseases
- Pharmacology
Background:
- Osteomyelitis treatment typically involves surgical debridement and prolonged intravenous antibiotics.
- Chronic osteomyelitis presents significant challenges, often requiring multiple treatment attempts.
- Implantable drug pumps offer a novel approach for targeted antibiotic delivery.
Purpose of the Study:
- To evaluate the efficacy and safety of implantable drug pumps for treating osteomyelitis.
- To assess the pharmacokinetic profile of amikacin delivered via implantable drug pumps in osteomyelitis patients.
- To compare outcomes with traditional treatment methods.
Main Methods:
- A prospective study involving 14 patients with chronic osteomyelitis.
- One-stage surgical debridement and implantable drug pump placement.
- Outpatient administration of amikacin via the pump, with dosage adjusted based on serum levels.
- Monitoring of wound drainage, serum drug levels, and erythrocyte sedimentation rate.
Main Results:
- Successful cessation of drainage in all patients during therapy.
- High amikacin concentrations in wound drainage ( > 55 µg/ml) and low systemic levels (< 8.2 µg/ml).
- Minimal toxicity observed, with no ototoxicity and one case of mild renal toxicity.
Conclusions:
- Implantable drug pumps provide effective local delivery of amikacin for osteomyelitis treatment.
- This method significantly reduces hospitalization duration compared to conventional therapies.
- The approach demonstrates a favorable safety profile for managing chronic bone infections.