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Susceptibility of enterococci to trimethoprim and trimethoprim-sulfamethoxazole
Abstract:
The in vitro activities of trimethoprim (TMP), alone and in combination with sulfamethoxazole (SMX), against 131 clinical isolates of enterococci, 126 Streptococcus faecalis isolates, and 5 Streptococcus faecium isolates were determined by a broth microdilution method with Mueller-Hinton broth that was substantially free of inhibitory substances. The geometric mean MIC of TMP for strains of S. faecalis was 0.164 micrograms/ml (range, 0.03 to 8 micrograms/ml), with a geometric mean MBC of 0.298 micrograms/ml (range, 0.063 to 8 micrograms/ml). Although all strains were resistant to the sulfonamide alone, the inhibitory and bactericidal activities of TMP against strains of S. faecalis were markedly potentiated when TMP was combined in a fixed ratio of 1:19 with SMX; the geometric mean MIC of TMP was reduced to 0.016 micrograms/ml (range, 0.002 to 0.25 micrograms/ml), with a geometric mean MBC of 0.031 micrograms/ml (range, 0.004 to 0.25 micrograms/ml). The combination had no synergistic effect against strains of S. faecium; the geometric mean MICs and MBCs of both agents were ca. 0.06 micrograms/ml. The MBC/MIC ratios for TMP and TMP-SMX were less than or equal to 16 for all 131 strains. MICs and MBCs for TMP-SMX were unchanged, and for TMP they decreased when performed in broth supplemented with 50% heat-inactivated pooled human serum. For TMP and TMP-SMX, the susceptibilities of isolates with high-level resistance to gentamicin or streptomycin were the same as those of isolates susceptible to less than or equal to 2,000 micrograms of aminoglycoside per ml. These results suggest that TMP-SMX and TMP alone could prove useful in the treatment of serious enterococcal infections, including infections by strains with high-level resistance to aminoglycosides.
Insights
Trimethoprim-sulfamethoxazole (TMP-SMX) demonstrated potent activity against Streptococcus faecalis, significantly enhancing trimethoprim
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Enterococci are significant human pathogens, often exhibiting resistance to common antibiotics.
- Aminoglycoside resistance in enterococci poses a challenge for treating severe infections.
- Trimethoprim (TMP) and sulfamethoxazole (SMX) are commonly used antibiotics, often in combination.
Purpose of the Study:
- To evaluate the in vitro antimicrobial activity of trimethoprim (TMP) alone and in combination with sulfamethoxazole (SMX) against clinical isolates of enterococci.
- To determine the efficacy of TMP-SMX against strains with high-level aminoglycoside resistance (HLAR).
Main Methods:
- Broth microdilution method using Mueller-Hinton broth.
- Tested 131 clinical enterococcal isolates, including Streptococcus faecalis and Streptococcus faecium.
- Determined Minimum Inhibitory Concentrations (MIC) and Minimum Bactericidal Concentrations (MBC).
Main Results:
- TMP demonstrated significant activity against S. faecalis (geometric mean MIC: 0.164 µg/ml).
- TMP-SMX combination markedly potentiated TMP's activity against S. faecalis (geometric mean MIC: 0.016 µg/ml), with synergistic effects.
- TMP-SMX showed no synergistic effect against S. faecium, with geometric mean MICs and MBCs around 0.06 µg/ml for both agents.
Conclusions:
- TMP-SMX exhibits potent in vitro activity against S. faecalis, including strains with HLAR.
- The combination therapy of TMP-SMX is a promising option for treating serious enterococcal infections.
- Further clinical investigation is warranted to confirm the utility of TMP-SMX in treating enterococcal infections.