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Transmissible spongiform encephalopathies (TSE) are fatal infectious neurodegenerative disorders that affect wildlife, domestic animals, and humans. The infectious agent of TSE diseases appears to be misfolded or pathogenic isoforms (PrPRes) of prion proteins1. Animal TSE diseases include chronic wasting disease (CWD) in mule deer (Odocoileus hemionus), white-tailed deer (Odocoileus virginianus), elk (Cervus elaphus), and moose (Alces alces); scrapie in sheep and goats; bovine spongiform encephalopathy (BSE) in domestic cattle; transmissible mink encephalopathy in farmed mink; feline spongiform encephalopathy in cats; exotic ungulate spongiform encephalopathy in exotic zoo ruminates of the family Bovidae; and spongiform encephalopathy in nonhuman primates8. The single human TSE disease, variant Creutzfeldt-Jakob disease, is rare and thought to be acquired by consuming PrPRes-contaminated food9. Similarly, BSE can infect humans if contaminated beef is consumed10. Of all the TSE diseases, scrapie and CWD are the only two with self-sustaining epidemics and sources for infection are presumed to be from animal to animal2,3,11 as well as from environmental sources4-6. Research suggests that most TSE diseases require notable extended incubation periods from natural exposure events of PrPRes material to manifestation of clinical signs2-4,6,8 and apparent species barriers minimize, but do not eliminate the potential for, interspecies transmission12-14.
Identifying mechanisms for the spread of infectious prion (PrPRes) material is extremely important for answering questions about how TSE diseases move across the landscape. Experimental investigations have suggested that insects15,16, poultry and pigs17, and American crows (Corvus brachyrhynchos)7,18 are passive carriers or dispersers of PrPRes material. Passage of PrPRes material through the digestive system of crows has recently been documented, demonstrating the role they may play in dispersal of TSE diseases7. These results make it plausible that crows, a scavenger, could encounter, consume, and transport infectious material via feces deposition, to disease-free areas.
The procedures we demonstrate here were used to document passage of PrPRes material through the digestion system of crows and will greatly facilitate the application of these methods to other scavenger and carnivore species-specific models in related future research. In this study conventional methods were used to investigate an unconventional means of trafficking PrPRes material, which could contribute to the spread and overall burden of PrPRes material.