Key result
Treatment with formaldehyde, beta-propriolactone, or Virkon S completely inactivated the PEMS-associated astrovirus in an embryonated egg model, whereas other common disinfectants did not.
Why the study?
Does treatment with specific disinfectants inactivate the PEMS-associated astrovirus in an embryonated egg model?
Does treatment with specific disinfectants inactivate the PEMS-associated astrovirus in an embryonated egg model?
Formaldehyde, beta-propriolactone, and Virkon S completely inactivate the PEMS-associated astrovirus, offering a potential method for disease control in commercial turkey houses.
May guide disinfectant selection in poultry; leaves open translation from embryonated egg inactivation to commercial PEMS control.
Outbreaks of poult enteritis mortality syndrome (PEMS) continue to cause financial losses to the turkey industry. Clinically, PEMS is defined by mortality profiles, diarrhea, flock unevenness, and immunosuppression. PEMS is a very difficult disease to control and prevent. Depopulation of PEMS-affected flocks and thorough cleaning of the contaminated housing have failed to prevent infection (disease) in subsequent flock placements. The relationship of PEMS to other enteric disease complexes of young turkeys is unknown, partly because the causative agent of PEMS remains unknown. Recently, we isolated a unique astrovirus strain from the thymus and intestines of PEMS-infected poults. This strain is molecularly and serologically distinct from the astrovirus that circulated in turkeys in the 1980s. Mammalian astroviruses are very resistant to inactivation. In these studies, we examined the stability of partially purified PEMS-associated astrovirus to inactivation with heat, laboratory disinfectants, and commercial disinfectants used in commercial turkey houses in an embryonated egg model system. Similar to mammalian astroviruses, the PEMS-associated astrovirus is resistant to inactivation by heat, acidification, detergent treatment, and treatment with phenolic, quaternary ammonium, or benzalkonium chloride-based products. Only treatment with formaldehyde, beta-propriolactone, or the peroxymonosulfate-based product Virkon S completely inactivated the astrovirus in the embryo model. These studies provide an alternate means to potentially control at least one virus associated with PEMS through the use of specific disinfectants.
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Schultz‐Cherry et al. (2001) studied Poult enteritis mortality syndrome (PEMS) associated astrovirus. Disinfectants (formaldehyde, beta-propriolactone, Virkon S) vs. Heat, acidification, detergent, phenolic, quaternary ammonium, or benzalkonium chloride-based products was evaluated on Inactivation of the astrovirus in the embryo model. Treatment with formaldehyde, beta-propriolactone, or Virkon S completely inactivated the PEMS-associated astrovirus in an embryonated egg model, whereas other common disinfectants did not.
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