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Antibiotic exposure and room contamination among patients colonized with vancomycin-resistant enterococci
Marci Drees1, David R Snydman, Christopher H Schmid
1Tufts Medical Center, Tufts University, Boston, Massachusetts, USA. mdrees@christianacare.org
Objective:
To determine whether total and antianaerobic antibiotic exposure increases the risk of room contamination among vancomycin-resistant enterococci (VRE)-colonized patients.
Design And Setting:
A 14-month study in 2 intensive care units at an academic tertiary care hospital in Boston, Massachusetts.
Patients:
All patients who acquired VRE or were VRE-colonized on admission and who had environmental cultures performed.
Methods:
We performed weekly environmental cultures (2 sites per room) and considered a room to be contaminated if there was a VRE-positive environmental culture during the patient's stay. We determined risk factors for room contamination by use of the Cox proportional hazards model.
Results:
Of 142 VRE-colonized patients, 35 (25%) had an associated VRE-positive environmental culture. Patients who contaminated their rooms were more likely to have diarrhea than those who did not contaminate their rooms (23 [66%] of 35 vs 41 [38%] of 107; P = .005) and more likely to have received antibiotics while VRE colonized (33 [94%] of 35 vs 86 [80%] of 107; P = .02). There was no significant difference in room contamination rates between patients exposed to antianaerobic regimens and patients exposed to nonantianaerobic regimens or between patients with and patients without diarrhea, but patients without any antibiotic exposure were unlikely to contaminate their rooms. Diarrhea and antibiotic use were strongly confounded; although two-thirds of room contamination occurred in rooms of patients with diarrhea, nearly all of these patients received antibiotics. In multivariable analysis, higher mean colonization pressure in the ICU increased the risk of room contamination (adjusted hazard ratio per 10% increase, 1.44 [95% confidence interval, 1.04-2.04]), whereas no antibiotic use during VRE colonization was protective (adjusted hazard ratio, 0.21 [95% confidence interval, 0.05-0.89]).
Conclusions:
Room contamination with VRE was associated with increased mean colonization pressure in the ICU and diarrhea in the VRE-colonized patient, whereas no use of any antibiotics during VRE colonization was protective.
Insights
Antibiotic exposure and diarrhea increase the risk of room contamination by vancomycin-resistant enterococci (VRE). Not using antibiotics during VRE colonization was protective against environmental contamination.
Area of Science:
- Infectious Diseases
- Hospital Epidemiology
- Antimicrobial Stewardship
Background:
- Vancomycin-resistant enterococci (VRE) pose a significant challenge in healthcare settings.
- Environmental contamination by VRE contributes to its transmission.
- Understanding risk factors for VRE room contamination is crucial for infection control.
Purpose of the Study:
- To investigate the association between antibiotic exposure (total and antianaerobic) and the risk of room contamination among vancomycin-resistant enterococci (VRE)-colonized patients.
- To identify patient-specific and environmental factors contributing to VRE room contamination.
Main Methods:
- A 14-month prospective study was conducted in two intensive care units (ICUs) at an academic tertiary care hospital.
- Environmental cultures were performed weekly in rooms of VRE-colonized patients.
- Cox proportional hazards models were used to determine risk factors for VRE-positive environmental cultures.
Main Results:
- Of 142 VRE-colonized patients, 25% had VRE detected in their room environment.
- Patients with diarrhea (66%) and those who received antibiotics (94%) were more likely to contaminate their rooms.
- Higher ICU colonization pressure increased contamination risk (aHR 1.44), while no antibiotic use was protective (aHR 0.21).
Conclusions:
- Increased ICU colonization pressure and patient diarrhea are associated with VRE room contamination.
- Avoiding antibiotic use during VRE colonization significantly reduces the risk of environmental contamination.
- These findings highlight the importance of judicious antibiotic use in VRE-colonized patients to limit environmental spread.
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