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Viable bacterial communities on hospital window components in patient rooms
Patrick F Horve1, Leslie G Dietz1, Suzanne L Ishaq1,2
1Biology and the Built Environment Center, University of Oregon, Eugene, OR, United States of America.
Abstract:
Previous studies demonstrate an exchange of bacteria between hospital room surfaces and patients, and a reduction in survival of microorganisms in dust inside buildings from sunlight exposure. While the transmission of microorganisms between humans and their local environment is a continuous exchange which generally does not raise cause for alarm, in a hospital setting with immunocompromised patients, these building-source microbial reservoirs may pose a risk. Window glass is often neglected during hospital disinfection protocols, and the microbial communities found there have not previously been examined. This pilot study examined whether living bacterial communities, and specifically the pathogens Methicillin-resistant Staphylococcus aureus (MRSA) and Clostridioides difficile (C. difficile), were present on window components of exterior-facing windows inside patient rooms, and whether relative light exposure (direct or indirect) was associated with changes in bacterial communities on those hospital surfaces. Environmental samples were collected from 30 patient rooms in a single ward at Oregon Health & Science University (OHSU) in Portland, Oregon, USA. Sampling locations within each room included the window glass surface, both sides of the window curtain, two surfaces of the window frame, and the air return grille. Viable bacterial abundances were quantified using qPCR, and community composition was assessed using Illumina MiSeq sequencing of the 16S rRNA gene V3/V4 region. Viable bacteria occupied all sampled locations, but was not associated with a specific hospital surface or relative sunlight exposure. Bacterial communities were similar between window glass and the rest of the room, but had significantly lower Shannon Diversity, theorized to be related to low nutrient density and resistance to bacterial attachment of glass compared to other surface materials. Rooms with windows that were facing west demonstrated a higher abundance of viable bacteria than those facing other directions, potentially because at the time of sampling (morning) west-facing rooms had not yet been exposed to sunlight that day. Viable C. difficile was not detected and viable MRSA was detected at very low abundance. Bacterial abundance was negatively correlated with distance from the central staff area containing the break room and nursing station. In the present study, it can be assumed that there is more human traffic in the center of the ward, and is likely responsible for the observed gradient of total abundance in rooms along the ward, as healthcare staff both deposit more bacteria during activities and affect microbial transit indoors. Overall, hospital window components possess similar microbial communities to other previously identified room locations known to act as reservoirs for microbial agents of hospital-associated infections.
Insights
Hospital windows harbor diverse bacteria, similar to other surfaces, but with lower diversity on glass. Bacterial abundance varied by window direction and proximity to staff areas, highlighting potential infection reservoirs.
Area of Science:
- Environmental microbiology
- Hospital-associated infections
- Surface microbial ecology
Background:
- Microbial exchange between patients and hospital environments is known.
- Sunlight exposure can reduce microorganism survival in indoor dust.
- Hospital window surfaces are often overlooked in disinfection, and their microbial communities are unstudied.
Purpose of the Study:
- To investigate the presence of viable bacteria, including Methicillin-resistant Staphylococcus aureus (MRSA) and Clostridioides difficile (C. difficile), on hospital window components.
- To determine if light exposure influences bacterial communities on these surfaces.
- To compare microbial communities on window surfaces with other room locations.
Main Methods:
- Environmental sampling from window glass, curtains, frames, and air return grilles in 30 patient rooms.
- Quantification of viable bacteria using qPCR.
- Assessment of bacterial community composition via 16S rRNA gene sequencing (Illumina MiSeq).
Main Results:
- Viable bacteria were present on all sampled surfaces, with no specific association to surface type or light exposure.
- Bacterial communities on window glass showed lower Shannon Diversity compared to other surfaces.
- Higher bacterial abundance was found in west-facing rooms and rooms closer to the central staff area; viable MRSA and C. difficile were detected at very low levels or not at all.
Conclusions:
- Hospital window components harbor bacterial communities similar to other known microbial reservoirs.
- Window glass may present a less hospitable surface for bacterial colonization compared to other materials.
- Bacterial abundance on window surfaces is influenced by factors like sunlight exposure and human traffic patterns within the ward.
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