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Published on: November 3, 2023
Experimental confirmation of Serratia marcescens contamination in multiple-dose vials of heparin-saline solution
Kenji Marumo1, Kazumi Taguchi, Hiroaki Oniki
1Department of Clinical Pathology, Showa University Fujigaoka Hospital, 1-30 Fujigaoka, Aoba-ku, Yokohama, 227-8501, Japan. marumok@showa-university-fujigaoka.gr.jp
Abstract:
The initial contamination of heparin-saline solution (HS) in multiple-dose vials (MDVs) by Serratia marcescens was experimentally investigated using various isolates. Isolates I2 and S1 were from blood specimens from patients with a hospital-acquired infection (HAI). Isolates I13 and FHSM9043 were from urine and blood specimens, respectively, from patients without HAI. Isolate I124, with a pulsed-field get electrophoresis pattern identical to that of isolate I2, was from the hospital environment. Viable cells of isolate I2 were carried over into the HS of MDVs when the contaminated rubber septum was pierced with a syringe needle. When the outside surface of the septum was contaminated by inoculating it with wet-cell suspensions in HS or Müller-Hinton broth, the viable cells carried over were detected at a minimum inoculum size (MIS) of 10(3) s cfu/ml. However, when the surface was contaminated by inoculating it with dry-cell suspensions, the viable cells carried over were detected at an MIS of 10(7) s cfu/ml. The viable cells in the internal lumen of the needle much more than those on its outside surface spread to the HS of MDVs. For exposures of 24 h and 72 h at 4 degrees C to HS with 1% benzyl alcohol as a preservative in MDVs, viable cells of all isolates tested were detected at MIS values of 1 s and 10 s cfu/ml, respectively, increases three orders of magnitude smaller than those of reference strain IFO3736. These results suggest that S. marcescens isolates are readily carried over into the HS of MDVs by piercing a wet, contaminated rubber septum with a syringe needle. Also, despite the sterilization action of 1% benzyl alcohol, the organism persistently survived at 4 degrees C, even when initial contamination was with a small amount of inoculum.
Insights
Serratia marcescens readily contaminates heparin-saline in multiple-dose vials through needle punctures. Even with preservatives, the bacteria survive cold temperatures, posing a risk for hospital-acquired infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Hospital Safety
Background:
- Heparin-saline (HS) in multiple-dose vials (MDVs) can become contaminated.
- Serratia marcescens is a pathogen associated with hospital-acquired infections (HAIs).
Purpose of the Study:
- To investigate the initial contamination of HS in MDVs by Serratia marcescens.
- To determine the mechanisms and conditions facilitating bacterial entry into MDVs.
Main Methods:
- Experimental inoculation of rubber septa with various Serratia marcescens isolates.
- Varying inoculum types (wet vs. dry cell suspensions) and sizes.
- Assessing bacterial transfer into HS after needle puncture.
- Evaluating bacterial survival in HS with benzyl alcohol preservative at 4°C.
Main Results:
- Viable Serratia marcescens cells were transferred into HS via needle puncture of contaminated septa.
- Wet-cell suspensions led to higher bacterial transfer (minimum inoculum size [MIS] of 10^3 CFU/ml) than dry suspensions (MIS of 10^7 CFU/ml).
- Bacteria within the needle lumen contributed more to contamination than surface contamination.
- Serratia marcescens survived at 4°C in HS with 1% benzyl alcohol, even with low initial inocula.
Conclusions:
- Serratia marcescens contamination of HS in MDVs is facilitated by needle punctures of contaminated septa.
- The presence of benzyl alcohol did not prevent bacterial survival at low temperatures.
- Findings highlight a potential route for HAIs through contaminated medication vials.

