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Updated: May 10, 2025

Prion Safety Laboratory Swipe Test
Published on: February 14, 2025
Development of a Procedure for Prion Surveillance in the Laboratory Setting
Damian Gorski1,2, Isaac Schauer1, Kane Spicker1
1Department of Neurology, Mitchell Center for Alzheimer's Disease and Related Brain Disorders, University of Texas McGovern Medical School at Houston, Houston, Texas, USA.
None:
Infectious prions readily adhere to common surfaces, retain infectivity, and are highly resistant to conventional decontamination, posing significant biosafety challenges in the medical and research environments. Recent occupational exposures underscore the urgency of improving safety measures. Here, we describe an approach combining foam-swab surface sampling and protein misfolding cyclic amplification to enhance prion surveillance. Our results demonstrate the ability to detect prions most relevant to human health directly from contaminated surfaces, even at 100 million-fold dilutions of the brain. We applied our method to assess the completeness of prion decontamination and show that high prion quantities can resist even approved inactivation methods. Finally, we applied our method in 2 real-world scenarios including the decommissioning and repurposing of a prion research facility and the active surveillance of residual prion contamination in an operational laboratory. Our methodology offers a robust and efficient tool for detecting residual prion contamination, enhancing laboratory safety.

