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Molecular epidemiology of microbial contamination in the operating room environment: Is there a risk for infection?
Charles E Edmiston1, Gary R Seabrook, Robert A Cambria
1Department of Surgery, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA. edmiston@mcw.edu
Background:
Modern operating rooms are considered to be aseptic environments. The use of surgical mask, frequent air exchanges, and architectural barriers are used to reduce airborne microbial populations. Breaks in surgical technique, host contamination, or hematogenous seeding are suggested as causal factors in these infections. This study implicates contamination of the operating room air as an additional etiology of infection.
Methods:
To investigate the potential sources of perioperative contamination, an innovative in situ air-sampling analysis was conducted during an 18-month period involving 70 separate vascular surgical procedures. Air-sample cultures were obtained from multiple points within the operating room, ranging from 0.5 to 4 m from the surgical wound. Selected microbial clonality was determined by pulse-field gel electrophoresis. In a separate series of studies microbial nasopharyngeal shedding was evaluated under controlled environmental conditions in the presence and absence of a surgical mask.
Results:
Coagulase-negative staphylococci were recovered from 86% of air samples, 51% from within 0.5 m of the surgical wound, whereas Staphylococcus aureus was recovered from 64% of air samples, 39% within 0.5 m from the wound. Anterior nares swabs were obtained from 11 members of the vascular team, clonality was observed between 8 strains of S epidermidis, and 2 strains of S aureus were recovered from selected team members and air-samples collected throughout the operating room environment. Miscellaneous Gram-negative isolates were recovered less frequently (<33%); however, 7 isolates expressed multiple patterns of antimicrobial resistance. The traditional surgical mask demonstrated limited effectiveness at curtailing microbial shedding, especially during symptomatic periods of rhinorrhea.
Conclusions:
Gram-positive staphylococcal isolates were frequently isolated from air samples obtained throughout the operating room, including areas adjacent to the operative field. Nasopharyngeal shedding from person participating in the operation was identified as the source of many of these airborne contaminants. Failure of the traditional surgical mask to prevent microbial shedding is likely associated with an increased risk of perioperative contamination of biomedical implants, especially in procedures lasting longer than 90 minutes.
Insights
Operating room air contamination by Staphylococcus species is a significant risk factor for surgical site infections. Nasal shedding from surgical teams, not fully prevented by masks, contributes to this airborne microbial load.
Area of Science:
- Microbiology
- Infectious Diseases
- Surgical Safety
Background:
- Operating rooms aim for asepsis using masks, air exchange, and barriers.
- Surgical site infections are attributed to technique breaks, host factors, or seeding.
- This study investigates operating room air contamination as a potential infection source.
Purpose of the Study:
- To identify sources of perioperative contamination in vascular surgery.
- To assess the role of airborne microbes in surgical site infections.
- To evaluate the efficacy of surgical masks in preventing microbial shedding.
Main Methods:
- Conducted in situ air-sampling analysis during 70 vascular surgeries over 18 months.
- Collected air samples from multiple points within the operating room.
- Determined microbial clonality using pulse-field gel electrophoresis and evaluated nasopharyngeal shedding with and without masks.
Main Results:
- Coagulase-negative staphylococci and Staphylococcus aureus were frequently recovered from air samples near surgical wounds.
- Microbial clonality confirmed nasopharyngeal shedding from surgical team members as a source.
- Surgical masks showed limited effectiveness in preventing microbial shedding, particularly during rhinorrhea.
Conclusions:
- Gram-positive staphylococci are common airborne contaminants in operating rooms.
- Nasopharyngeal shedding by personnel is a primary source of operating room airborne contaminants.
- Inadequate mask efficacy increases perioperative contamination risk for implants, especially in long procedures.
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