Inactivation of template-directed misfolding of infectious prion protein by Ozone

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Abstract

Misfolded prions (PrP Sc) are well known for their resistance to conventional decontamination processes. The potential risk of contamination of the water environment, as a result of disposal of specified risk materials (SRM), has raised public concerns. Ozone is commonly utilized in the water industry for inactivation of microbial contaminants and was tested in this study for its ability to inactivate prions (263K hamster scrapie = PrP Sc). Treatment variables included initial ozone dose (7.6 to 25.7 mg/liter), contact time (5 s and 5 min), temperature (4°C and 20°C), and pH (pH 4.4, 6.0, and 8.0). Exposure of dilute suspensions of the infected 263K hamster brain homogenates (IBH) (0.01%) to ozone resulted in the in vitro destruction of the templating properties of PrPSc, as measured by the protein misfolding cyclic amplification (PMCA) assay. The highest levels of prion inactivation (>4 log10) were observed with ozone doses of 13.0 mg/liter, at pH 4.4 and 20°C, resulting in a CT (the product of residual ozone concentration and contact time) value as low as 0.59 mg · liter -1 min. A comparison of ozone CT requirements among various pathogens suggests that prions are more susceptible to ozone degradation than some model bacteria and protozoa and that ozone treatment may be an effective solution for inactivating prions in water and wastewater. © 2012, American Society for Microbiology.

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Ding, N., Neumann, N. F., Price, L. M., Braithwaite, S. L., Balachandran, A., Belosevic, M., & El-Din, M. G. (2012). Inactivation of template-directed misfolding of infectious prion protein by Ozone. Applied and Environmental Microbiology, 78(3), 613–620. https://doi.org/10.1128/AEM.06791-11

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