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Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Identification and control of a gentamicin resistant, meticillin susceptible Staphylococcus aureus outbreak on a
Jonathan A Otter1,2, Bethany Davies3, Esse Menson4
1Centre for Clinical Infection and Diagnostics Research (CIDR), Department of Infectious Diseases, King's College London and Guy's and St Thomas NHS Foundation Trust, London,UK.
Abstract:
We describe the identification and control of an outbreak of gentamicin resistant, meticillin susceptible Staphylococcus aureus (GR-MSSA) on a 36-bed neonatal unit (NNU) in London. Control measures included admission and weekly screening for GR-MSSA, cohorting affected babies, environmental and staff screening, hydrogen peroxide vapour (HPV) for terminal disinfection of cohort rooms, and reinforcement of hand hygiene. Seventeen babies were affected by the outbreak strain over ten months; seven were infected and ten were asymptomatic carriers. The outbreak strain was gentamicin resistant and all isolates were indistinguishable by pulsed-field gel electrophoresis. The outbreak strains spread rapidly and were associated with a high rate of bacteraemia (35% of 17 affected patients had bacteraemia vs. 10% of 284 patients with MSSA prior to the outbreak, p=0.007). None of 113 staff members tested were colonised with GR-MSSA. GR-MSSA was recovered from 11.5% of 87 environmental surfaces in cohort rooms, 7.1% of 28 communal surfaces and 4.1% of 74 surfaces after conventional terminal disinfection. None of 64 surfaces sampled after HPV decontamination yielded GR-MSSA. Recovery of GR-MSSA from two high level sites suggested that the organism could have been transmitted via air. Occasional breakdown in hand hygiene compliance and contaminated environmental surfaces probably contributed to transmission.
Insights
An outbreak of gentamicin-resistant, meticillin-susceptible Staphylococcus aureus (GR-MSSA) affected 17 babies in a London neonatal unit. Hydrogen peroxide vapor disinfection effectively eliminated GR-MSSA from surfaces, aiding outbreak control.
Area of Science:
- Infectious Diseases
- Microbiology
- Hospital Epidemiology
Background:
- Gentamicin-resistant, meticillin-susceptible Staphylococcus aureus (GR-MSSA) poses a threat in neonatal units.
- Outbreaks require rapid identification and effective control strategies.
Purpose of the Study:
- To describe the identification and control of a GR-MSSA outbreak in a neonatal unit.
- To evaluate the effectiveness of control measures, including hydrogen peroxide vapor (HPV) disinfection.
Main Methods:
- Implementation of admission and weekly screening for GR-MSSA.
- Cohorting affected neonates, environmental and staff screening.
- Terminal disinfection using hydrogen peroxide vapor (HPV) and reinforcement of hand hygiene.
Main Results:
- Seventeen neonates were affected over ten months (7 infected, 10 carriers).
- The outbreak strain showed rapid spread and a higher rate of bacteraemia compared to pre-outbreak MSSA.
- HPV decontamination successfully eliminated GR-MSSA from environmental surfaces, unlike conventional disinfection.
Conclusions:
- GR-MSSA outbreaks can spread rapidly in neonatal units, necessitating stringent control measures.
- Hydrogen peroxide vapor (HPV) is an effective terminal disinfection method for eliminating GR-MSSA.
- Environmental contamination and occasional lapses in hand hygiene likely contributed to transmission.
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