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Adjunctive Rifampicin Increases Antibiotic Efficacy in Group A Streptococcal Tissue Infection Models
H Bergsten1, L M Palma Medina1, M Morgan2
1Center for Infectious Medicine, Karolinska Institutet, Karolinska University Hospital Huddinge, Stockholm, Sweden.
Abstract:
Biofilm has recently been highlighted as a complicating feature of necrotizing soft tissue infections (NSTI) caused by Streptococcus pyogenes (i.e., group A Streptococcus [GAS]) contributing to a persistence of bacteria in tissue despite prolonged antibiotic therapy. Here, we assessed the standard treatment of benzylpenicillin and clindamycin with or without rifampin in a tissue-like setting. Antibiotic efficacy was evaluated by CFU determination in a human organotypic skin model infected for 24 or 48 h with GAS strains isolated from NSTI patients. Antibiotic effect was also evaluated by microcalorimetric metabolic assessment in in vitro infections of cellular monolayers providing continuous measurements over time. Adjunctive rifampin resulted in enhanced antibiotic efficacy of bacterial clearance in an organotypic skin tissue model, 97.5% versus 93.9% (P = 0.006). Through microcalorimetric measurements, adjunctive rifampin resulted in decreased metabolic activity and extended lag phase for all clinical GAS strains tested (P < 0.05). In addition, a case report is presented of adjunctive rifampin treatment in an NSTI case with persistent GAS tissue infection. The findings of this study demonstrate that adjunctive rifampin enhances clearance of GAS biofilm in an in vitro tissue infection model.
Insights
Adding rifampin to standard antibiotics significantly improves bacterial clearance in necrotizing soft tissue infections (NSTI). This study shows rifampin enhances antibiotic effectiveness against Streptococcus pyogenes biofilms.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Necrotizing soft tissue infections (NSTI) caused by Streptococcus pyogenes (group A Streptococcus [GAS]) are complicated by bacterial biofilms.
- Biofilms contribute to persistent GAS infections despite antibiotic treatment.
Observation:
- This study evaluated benzylpenicillin and clindamycin, with or without rifampin, in a human organotypic skin model and in vitro cellular monolayers.
- GAS strains were isolated from NSTI patients and infected tissues for 24 or 48 hours.
Findings:
- Adjunctive rifampin significantly enhanced bacterial clearance in the skin model (97.5% vs. 93.9%, P=.006).
- Microcalorimetry revealed rifampin decreased metabolic activity and extended the lag phase in GAS strains (P<.05).
- A case report demonstrated successful adjunctive rifampin treatment for persistent GAS NSTI.
Implications:
- Adjunctive rifampin shows promise for improving treatment outcomes in GAS-related NSTI.
- Rifampin may be a valuable addition to standard antibiotic therapy for biofilm-associated infections.
- Further clinical studies are warranted to confirm these findings in patients.
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