New genotyping method discovers sustained nosocomial Pseudomonas aeruginosa outbreak in an intensive care burn unit

F Tissot1, D S Blanc1, P Basset1

  • 1Service of Hospital Preventive Medicine, Lausanne University Hospital, Lausanne, Switzerland.

Abstract

Insights

A novel double-locus sequence typing (DLST) method identified an environmental source of Pseudomonas aeruginosa outbreaks in an intensive care unit (ICU) burn unit. Continuous surveillance confirmed eradication of the P. aeruginosa clone.

Area of Science:

  • Medical Microbiology
  • Infectious Diseases
  • Epidemiology

Background:

  • Pseudomonas aeruginosa is a significant cause of healthcare-associated infections, particularly in intensive care units (ICUs).
  • An unexplained rise in P. aeruginosa cases within an ICU necessitated further investigation.

Purpose of the Study:

  • To investigate an increase in P. aeruginosa incidence in the ICU.
  • To identify the source of P. aeruginosa using a novel genotyping method.

Main Methods:

  • A double-locus sequence typing (DLST) method was employed to genotype clinical and environmental P. aeruginosa isolates.
  • Isolates were collected from patients and the ICU environment between January 2010 and July 2012.

Main Results:

  • DLST identified 35 distinct genotypic clusters among 509 clinical and 91 environmental isolates.
  • The largest cluster (DLST 1-18) was linked to 23 patients and traced to environmental contamination in the burn unit's hydrotherapy rooms.
  • Following infection control interventions, the prevalence of DLST 1-18 significantly decreased, with only sporadic occurrences during a 12-month follow-up.

Conclusions:

  • The novel DLST method effectively identified the environmental origin of a P. aeruginosa outbreak in the burn unit.
  • Continuous epidemiological surveillance of P. aeruginosa clones is crucial for confirming outbreak eradication in ICUs.

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