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Near-Patient Sampling to Assist Infection Control-A Case Report and Discussion
Julian W Tang1,2, Elizabeth Hoyle3, Sammy Moran4
1Clinical Microbiology, University Hospitals of Leicester NHS Trust, Leicester LE1 5WW, UK. julian.tang@uhl-tr.nhs.uk.
Abstract:
Air sampling as an aid to infection control is still in an experimental stage, as there is no consensus about which air samplers and pathogen detection methods should be used, and what thresholds of specific pathogens in specific exposed populations (staff, patients, or visitors) constitutes a true clinical risk. This case report used a button sampler, worn or held by staff or left free-standing in a fixed location, for environmental sampling around a child who was chronically infected by a respiratory adenovirus, to determine whether there was any risk of secondary adenovirus infection to the staff managing the patient. Despite multiple air samples taken on difference days, coinciding with high levels of adenovirus detectable in the child's nasopharyngeal aspirates (NPAs), none of the air samples contained any detectable adenovirus DNA using a clinically validated diagnostic polymerase chain reaction (PCR) assay. Although highly sensitive, in-house PCR assays have been developed to detect airborne pathogen RNA/DNA, it is still unclear what level of specific pathogen RNA/DNA constitutes a true clinical risk. In this case, the absence of detectable airborne adenovirus DNA using a conventional diagnostic assay removed the requirement for staff to wear surgical masks and face visors when they entered the child's room. No subsequent staff infections or outbreaks of adenovirus have so far been identified.
Insights
Air sampling for infection control is experimental. Button sampling around a child with adenovirus did not detect airborne virus DNA, suggesting low transmission risk and potentially reducing PPE needs for staff.
Area of Science:
- Environmental microbiology
- Infection control
- Respiratory virus detection
Background:
- Air sampling is an emerging tool for infection control, but lacks standardized methods and risk thresholds for airborne pathogens.
- Adenovirus infections pose risks, necessitating evaluation of environmental transmission routes, especially in pediatric care.
Observation:
- A case study utilized button air samplers to assess airborne adenovirus DNA around a chronically infected child.
- Environmental samples were collected on multiple days, correlating with high viral loads in the child's nasopharyngeal aspirates (NPAs).
Findings:
- No adenovirus DNA was detected in any air samples using a clinically validated polymerase chain reaction (PCR) assay.
- Despite sensitive detection methods, the clinical significance of airborne pathogen levels remains uncertain.
Implications:
- The absence of detectable airborne adenovirus DNA may reduce the need for stringent personal protective equipment (PPE) for healthcare staff.
- This case suggests that airborne transmission risk for adenovirus in this setting might be lower than anticipated, warranting further investigation into sampling efficacy and risk assessment.
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