Related Experiment Video
Updated: May 9, 2026

Microbial Control and Monitoring Strategies for Cleanroom Environments and Cellular Therapies
Published on: March 17, 2023
Surveillance of bacterial colonization in operating rooms
J Wesley Alexander1, Heather Van Sweringen, Katherine Vanoss
1Department of Surgery, University of Cincinnati, Cincinnati, Ohio 45267-0558, USA. jwesley.alexander@uc.edu
Background:
Surgical site infections (SSIs) continue to occur at an unacceptably high rate, incurring direct costs of up to $10 billion per year in the United States and far more than that in total economic costs. There is a continued need to identify potential sources of microbial contamination that lead to surgical infections.
Methods:
Using contact culture plates, we randomly took a total of 517 samples of various surfaces in 33 operating rooms (ORs) over a 6-mo period.
Results:
Flat surfaces treated with decontamination techniques (floors, anesthesia carts, operating tables, and other flat surfaces) grew small numbers of bacterial colonies, as did other surfaces that were decontaminated less often. Personal items, especially the tops of shoes and personal hats, had much higher contamination than the surfaces just described, which in the case of these two items averaged 50-60 CFU/20 cm(2). The outsides of face masks contained slightly more organisms than did floors, but the insides had almost 100 times more organisms, which was of concern because of high leakage rates at the mask-face interface.
Conclusions:
The culture system used in our study can be used as a simplified and cost-effective method of identifying the comparative densities of organisms on different surfaces for surveillance of microbial contamination in the OR. To reduce bacterial contamination, shoe covers and disposable hair coverings should be worn at every operation in which there are substantial risks of SSI. Masks that reduce leakage at the mask-face interface should be worn and discarded after each operation.
Insights
Personal items like shoes and masks are significant sources of operating room contamination, increasing surgical site infection risks. Wearing shoe covers, hair coverings, and better masks can reduce bacterial spread.
Area of Science:
- Microbiology
- Infection Control
- Public Health
Background:
- Surgical site infections (SSIs) pose a significant healthcare burden, with substantial economic costs.
- Identifying microbial contamination sources in operating rooms (ORs) is crucial for prevention.
Purpose of the Study:
- To assess microbial contamination levels on various surfaces within ORs.
- To identify high-risk items contributing to bacterial spread in the surgical environment.
Main Methods:
- Contact culture plates were used to sample 517 surfaces across 33 ORs over six months.
- Surface sampling focused on decontaminated areas, personal items, and protective equipment.
Main Results:
- Decontaminated flat surfaces showed low bacterial growth.
- Personal items, particularly shoe tops and hats, exhibited high contamination levels (50-60 CFU/20 cm²).
- Inside surgical masks showed significantly higher contamination than outside surfaces, indicating leakage concerns.
Conclusions:
- A cost-effective culture system can monitor OR microbial contamination.
- Implementing shoe covers, hair coverings, and improved masks is recommended to reduce SSIs.
- Reducing mask leakage and ensuring proper mask disposal are critical for infection control.
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