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Published on: February 9, 2011
Clindamycin treatment of osteomyelitis and septic arthritis in children
Insights
Clindamycin effectively treated pediatric bone and soft tissue infections, including osteomyelitis and septic arthritis. Excellent drug concentrations in serum and tissues indicate its suitability for children sensitive to penicillin.
Area of Science:
- Pediatric Infectious Diseases
- Pharmacology
- Orthopedic Surgery
Background:
- Bacterial infections like osteomyelitis and septic arthritis are serious concerns in children.
- Penicillin-resistant bacteria necessitate alternative antibiotic treatments.
Purpose of the Study:
- To evaluate the efficacy and safety of clindamycin in treating pediatric bone and soft tissue infections.
- To assess clindamycin's pharmacokinetic profile in children with these infections.
Main Methods:
- A study involving 48 children (1 month to 14 years) with osteomyelitis, septic arthritis, or soft tissue infections.
- Treatment with intravenous then oral clindamycin, with varying durations based on diagnosis.
- Measurement of serum, bone, and synovial fluid clindamycin concentrations.
Main Results:
- Excellent clinical and bacteriologic responses were observed in most patients.
- Achieved serum clindamycin concentrations were 8- to 32-fold above minimal inhibitory concentrations.
- Bone and synovial fluid concentrations were 60%-85% of serum levels.
Conclusions:
- Clindamycin is an effective alternative treatment for pediatric osteomyelitis and septic arthritis.
- Favorable drug concentrations support its use in children with infections caused by susceptible organisms.
- This study highlights clindamycin's role for children with penicillin sensitivity.
Abstract:
Forty-eight children, 1 month to 14 years of age, including 11 patients with untreated acute osteomyelitis, 8 with pretreated acute osteomyelitis, 12 with septic arthritis, and 11 with cellulitis or soft tissue abscess, were treated with clindamycin. Staphylococcus aureus was isolated from the blood, synovial fluid, bone, or soft tissues of 27 of these individuals while group A, beta-hemolytic streptococci or Clostridia were isolated from 9 patients. Clindamycin was provided intravenously until patients were afebrile for three days followed by orally administered clindamycin for one week in patients with cellulitis to as long as six months in patients with chronic osteomyelitis. Clinical and bacteriologic responses to treatment generally were excellent, most likely reflecting the excellent serum and tissue concentrations of clindamycin which were achieved. Serum concentrations of clindamycin following intravenous infusion at 20 to 30 mg/kg/day in three divided doses were 8- to 32-fold in excess of the minimal inhibitory concentrations of all organisms isolated in this study. Bone and synovial fluid concentrations of clindamycin were 60% to 85% of the serum concentrations measured concomitantly. Clindamycin provides an effective alternative treatment of osteomyelitis and septic arthritis in children who are sensitive to penicillin.
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