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An outbreak of Pseudomonas cepacia bacteremia associated with a contaminated intra-aortic balloon pump
W A Rutala1, D J Weber, C A Thomann
1Department of Medicine, University of North Carolina, School of Medicine, Chapel Hill 27514.
Abstract:
In January 1983, symptomatic Pseudomonas cepacia bacteremia developed in two patients in the cardiothoracic intensive care unit within 3 days after cardiac operation and insertion of an intra-aortic balloon pump. An epidemiologic and microbiologic investigation revealed that both patients required intra-aortic balloon pumping for circulatory support and that the water reservoir of the intra-aortic balloon pump (SMEC, Inc., Cookeville, Tenn.) contained more than 10(5) Pseudomonas cepacia per milliliter. This organism was also recovered from the purge button and on-off switch of the pump and from the hands of a health care worker who manipulated the water reservoir of the intra-aortic balloon pump. Agarose gel electrophoresis of lysates of Pseudomonas cepacia with rapid methods of deoxyribonucleic acid preparation revealed three identical plasmids of the Pseudomonas cepacia from the water reservoir of the intra-aortic balloon pump and from the infected patients. Transmission from the worker's hands to patients presumably occurred by inoculation of the intravascular lines during management. No additional cases of Pseudomonas cepacia bacteremia were observed after the unit was replaced with a nonwater reservior intra-aortic balloon pump. This report substantiates the ability of Pseudomonas cepacia to multiply in water and to cause epidemic bacteremia, identifies the water reservoir of the SMEC intra-aortic balloon pump as a previously unrecognized hazard for the patient requiring intra-aortic balloon pumping, and documents the value of plasmid analysis in elucidating the mode of transmission of nosocomial Pseudomonas cepacia infections.
Insights
Pseudomonas cepacia bacteremia outbreaks in intensive care units can be linked to contaminated intra-aortic balloon pumps. Replacing the water reservoir pump prevented further cases, highlighting a critical infection control risk.
Area of Science:
- Infectious Diseases
- Microbiology
- Public Health
Background:
- Nosocomial infections pose significant risks to patients in intensive care units.
- Intra-aortic balloon pumps are used for circulatory support in critically ill patients.
Observation:
- Two patients developed Pseudomonas cepacia bacteremia within days of cardiac surgery and intra-aortic balloon pump insertion.
- The water reservoir of the intra-aortic balloon pump was heavily contaminated with Pseudomonas cepacia.
- The organism was also found on the pump's controls and a healthcare worker's hands.
Findings:
- Identical Pseudomonas cepacia plasmids were recovered from the pump reservoir and infected patients, indicating a common source.
- Transmission likely occurred via healthcare worker contamination of intravascular lines.
- Replacing the contaminated pump with a non-water reservoir model halted the outbreak.
Implications:
- Water reservoirs in intra-aortic balloon pumps can harbor and disseminate Pseudomonas cepacia, posing a serious patient hazard.
- This study underscores the importance of vigilant infection control practices in healthcare settings.
- Plasmid analysis is a valuable tool for tracing the transmission routes of nosocomial infections.