Successful Inactivation of High-Consequence Pathogens in PrimeStore Molecular Transport Media

Briana Spruill-Harrell1, Gregory Kocher1, Maurice Boda1

  • 1Integrated Research Facility at Fort Detrick, National Institute of Allergy and Infectious Diseases, National Institutes of Health, B-8200 Research Plaza, Fort Detrick, Frederick, MD 21702, USA.

Viruses
|May 28, 2025
PubMed

Insights

PrimeStore Molecular Transport Medium (PS-MTM) effectively inactivates high-titer Risk Group 4 viruses within 20-60 minutes. This solution enhances biosafety for handling dangerous pathogens in diagnostics and surveillance.

Area of Science:

  • Virology
  • Biosafety
  • Public Health

Background:

  • Handling Risk Group 3 and 4 pathogens poses significant biosafety risks, often necessitating specialized high-containment facilities.
  • Current methods for sample processing and transport require extensive logistical planning and resources.

Purpose of the Study:

  • To evaluate the efficacy of PrimeStore Molecular Transport Medium (PS-MTM) in inactivating a panel of high-risk viruses.
  • To assess PS-MTM's potential to enhance biosafety during sample handling and transport.

Main Methods:

  • Human whole blood samples spiked with Crimean-Congo hemorrhagic fever, eastern equine encephalitis, Ebola, Hendra, Japanese encephalitis, Lassa, Marburg, Nipah, Rift Valley fever, and West Nile viruses were incubated with PS-MTM for 20, 30, or 60 minutes.
  • Infectivity was assessed using plaque assays and tissue culture infectious dose (TCID50) assays.

Main Results:

  • PS-MTM completely inactivated all tested viruses at titers up to 10^7 PFU/mL and 10^7 TCID50/mL after incubation periods of 20-60 minutes.
  • A 30-minute incubation provided a 50% safety margin, demonstrating robust inactivation.

Conclusions:

  • PS-MTM reliably inactivates a broad spectrum of high-risk viruses, significantly improving biosafety for diagnostic and surveillance applications.
  • The medium offers a safe and efficient method for handling infectious samples at ambient temperatures, reducing reliance on high-containment facilities.