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

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.

Related Concept Videos