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Updated: Aug 21, 2026

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Clustering of Serratia marcescens infections in a neonatal intensive care unit
Emmi Sarvikivi1, Outi Lyytikäinen, Saara Salmenlinna
1Hospital for Children and Adolescents, Helsinki, Finland.
Objectives:
To study clusters of infections caused by Serratia marcescens in a neonatal intensive care unit (NICU) and to determine risk factors for S. marcescens infection or colonization.
Design:
Genotyping of S. marcescens isolates was performed by pulsed-field gel electrophoresis (PFGE). A retrospective case-control study was conducted.
Setting:
A tertiary-care pediatric hospital with a 16-bed NICU.
Patients:
All neonates with at least one culture positive for S. marcescens in the NICU during December 1999 to July 2002. Case-patients (n = 11) treated in the NICU during December 1999 to February 2000 were included in the case-control study. Neonates treated in the NICU for at least 72 hours during the same period with cultures negative for S. marcescens were used as control-patients (n = 27).
Results:
S. marcescens was cultured from 19 neonates; 9 were infected and 10 were colonized. PFGE analysis identified three epidemic strains; each cluster consisted of identical isolates, except one isolate in the first cluster that was different. The risk factors identified were low birth weight, prematurity, prolonged respiratory therapy, prolonged use of antibiotics, and maternal infection prior to delivery. Overcrowding and understaffing were recorded simultaneously with the clusters.
Conclusions:
PFGE analysis showed three independent clusters. Several factors contributed to spread of the epidemic strains: (1) there were many severely premature and susceptible neonates, (2) the NICU was overcrowded during the clusters, and (3) transmission was likely to occur via the hands of staff. Cohorting and improvement of routine infection control measures led to the cessation of each cluster.
Insights
Serratia marcescens outbreaks in a NICU were studied using genotyping. Risk factors included prematurity and overcrowding, with staff hands identified as a likely transmission route. Improved infection control stopped the clusters.
Area of Science:
- Neonatal Intensive Care Unit (NICU) infections
- Infectious Disease Epidemiology
- Microbial Genotyping
Background:
- Neonatal intensive care units (NICUs) are vulnerable to hospital-acquired infections.
- Serratia marcescens is a potential pathogen in vulnerable infant populations.
- Understanding transmission dynamics is crucial for infection control.
Purpose of the Study:
- To investigate clusters of Serratia marcescens infections in a NICU.
- To identify risk factors associated with S. marcescens infection or colonization in neonates.
- To determine the genetic relatedness of S. marcescens isolates during outbreaks.
Main Methods:
- Pulsed-field gel electrophoresis (PFGE) for genotyping S. marcescens isolates.
- Retrospective case-control study design.
- Analysis of clinical data from neonates in a 16-bed NICU.
Main Results:
- Three distinct epidemic strains of S. marcescens were identified via PFGE.
- Identified risk factors included low birth weight, prematurity, prolonged respiratory therapy, and antibiotic use.
- Overcrowding and understaffing coincided with infection clusters.
Conclusions:
- PFGE revealed three independent S. marcescens clusters.
- Factors contributing to spread included susceptible neonates, NICU overcrowding, and potential staff-to-patient transmission.
- Cohorting and enhanced infection control measures successfully halted the outbreaks.
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