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Updated: Jan 30, 2026

Subcutaneous Infection of Methicillin Resistant Staphylococcus Aureus MRSA
Published on: February 9, 2011
The effects of iclaprim on exotoxin production in methicillin-resistant and vancomycin-intermediate Staphylococcus
Amy E Bryant1, Sumiko Gomi2, Eva Katahira2
11 University of Washington School of Medicine, Seattle, WA, USA.
Purpose:
Extracellular protein toxins contribute to the pathogenesis of Staphylococcus aureus infections. The present study compared the effects of iclaprim and trimethoprim - two folic acid synthesis inhibitors - with nafcillin and vancomycin on production of Panton-Valentine leukocidin (PVL), alpha haemolysin (AH) and toxic-shock syndrome toxin I (TSST-1) in methicillin-resistant and vancomycin-intermediate S. aureus (MRSA and VISA, respectively).
Methodology:
Northern blotting and RT-PCR were used to assess gene transcription; toxin-specific bioassays were used to measure protein toxin production.
Results:
As shown previously, sub-inhibitory concentrations (sub-MIC) of nafcillin increased and prolonged MRSA toxin gene transcription and enhanced PVL, TSST-1 and AH production. Sub-inhibitory doses of iclaprim and trimethoprim delayed maximal AH gene (hla) transcription and suppressed AH production; both drugs delayed, but neither reduced, maximal TSST-1 production. Trimethoprim significantly increased lukF-PV expression and PVL production compared to both untreated and iclaprim-treated cultures. Higher concentrations of iclaprim and trimethoprim markedly suppressed MRSA growth, mRNA synthesis and toxin production. In VISA, iclaprim, vancomycin and nafcillin variably increased tst and hla expression, but only nafcillin increased toxin production. Despite its ability to increase hla expression, iclaprim was the most potent inhibitor of AH production.
Conclusions:
We conclude that, due to its ability to suppress toxin production, iclaprim should be effective against severe staphylococcal infections caused by toxin-producing MRSA and VISA strains, especially given its ability to concentrate at sites of infection such as skin and skin structures and the lung.
Insights
Iclaprim effectively suppresses Staphylococcus aureus toxins like Panton-Valentine leukocidin (PVL) and alpha haemolysin (AH) in MRSA and VISA strains, unlike trimethoprim. This makes iclaprim a promising treatment for severe staphylococcal infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Extracellular protein toxins are key in Staphylococcus aureus pathogenesis.
- Methicillin-resistant S. aureus (MRSA) and vancomycin-intermediate S. aureus (VISA) pose significant treatment challenges.
- Folic acid synthesis inhibitors are investigated for their impact on toxin production.
Purpose of the Study:
- To compare the effects of iclaprim and trimethoprim with nafcillin and vancomycin on key S. aureus toxin production.
- To evaluate toxin gene transcription and protein production in MRSA and VISA strains.
- To assess the efficacy of iclaprim and trimethoprim against specific toxins: PVL, AH, and TSST-1.
Main Methods:
- Gene transcription assessed via Northern blotting and RT-PCR.
- Protein toxin production quantified using toxin-specific bioassays.
- Comparative analysis of drug effects at sub-inhibitory and higher concentrations.
Main Results:
- Sub-inhibitory nafcillin enhanced MRSA toxin production (PVL, TSST-1, AH).
- Iclaprim and trimethoprim suppressed AH production and delayed TSST-1 production; trimethoprim increased PVL production.
- Higher iclaprim and trimethoprim concentrations inhibited MRSA growth, mRNA synthesis, and toxin production.
- In VISA strains, iclaprim potently inhibited AH production despite increased hla expression.
Conclusions:
- Iclaprim demonstrates potent suppression of S. aureus toxin production, particularly AH.
- Iclaprim's efficacy against toxin-producing MRSA and VISA strains suggests its potential in treating severe staphylococcal infections.
- Iclaprim's favorable pharmacokinetic profile, including concentration at infection sites, supports its therapeutic potential.
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