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Updated: Jul 17, 2026

Subcutaneous Infection of Methicillin Resistant Staphylococcus Aureus (MRSA)
Published on: February 9, 2011
Prevalence of toxin producing strains of Staphylococcus aureus in a pediatric burns unit
V Javid Khojasteh1, V Edwards-Jones, C Childs
1Biomedical Sciences Research Institute, School of Environment and Life Sciences, University of Salford, The Crescent, Salford M5 4WT, UK.
Abstract:
The aims of the study were to determine the sites in a pediatric burns unit that were contaminated with Staphylococcus aureus. Samples from the environment in bedrooms and the common room were taken monthly for 6 months using blood agar for total counts and Baird-Parker agar for S. aureus. The air was sampled using an air-sampling device and settle plates. Hard and soft surfaces including bed, blanket, sofa, chair, taps, bathtub, soft toys, locker and cupboard in the same rooms were sampled using contact plates. Swabs were taken from staff monthly for 3 months. S. aureus isolates were tested for production of enterotoxins A-D and toxic shock syndrome toxin-1 using a reverse passive latex agglutination test. The results showed that S. aureus was recovered more frequently using settle plates than using the air sampler. All surfaces sampled were contaminated with S. aureus and contamination was greatest in frequently occupied rooms. A variety of toxin producing isolates were found with enterotoxin C isolates, either alone or in combination with TSST-1 (toxic shock syndrome toxin-1) dominant. The staff were transiently colonised with S. aureus strains with a different toxin production pattern. The results show that airborne transmission may be a route for infection by S. aureus and is responsible for contaminating the environment.
Insights
Staphylococcus aureus contamination was widespread in a pediatric burns unit, found on surfaces and in the air. Airborne transmission is a likely route for infection and environmental spread.
Area of Science:
- Microbiology
- Environmental Health
- Pediatric Care
Background:
- Pediatric burns units are susceptible to bacterial contamination.
- Controlling Staphylococcus aureus (S. aureus) is crucial for patient safety.
- Understanding environmental reservoirs is key to infection prevention.
Purpose of the Study:
- To identify S. aureus contamination sites within a pediatric burns unit.
- To assess the role of environmental surfaces and air in S. aureus transmission.
- To characterize toxin production of S. aureus isolates.
Main Methods:
- Monthly environmental sampling (air, surfaces) over 6 months using agar plates.
- Contact plates for surfaces, air samplers, and settle plates for airborne S. aureus.
- Staff screening for S. aureus colonization over 3 months.
- Toxin analysis (enterotoxins A-D, toxic shock syndrome toxin-1) via latex agglutination.
Main Results:
- S. aureus was frequently recovered from all sampled surfaces, especially in high-traffic areas.
- Settle plates were more effective than air samplers for detecting airborne S. aureus.
- Enterotoxin C and toxic shock syndrome toxin-1 (TSST-1) were the dominant toxins produced.
- Staff showed transient colonization with S. aureus strains exhibiting different toxin profiles.
Conclusions:
- Environmental surfaces and air in pediatric burns units are significant reservoirs for S. aureus.
- Airborne transmission is a plausible route for S. aureus spread and environmental contamination.
- Effective infection control strategies must address both surface and airborne contamination.
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