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A method to detect low levels of enteric viruses in contaminated oysters

Y C Shieh1, K R Calci, R S Baric

  • 1Gulf Coast Seafood Laboratory, U.S. Food and Drug Administration, Dauphin Island, Alabama 36528, USA. ycs@vm.cfsan.fda.gov

Insights

This study developed a rapid oyster processing method for sensitive virus detection using PCR. The improved technique enhances outbreak response by quickly identifying viral agents in implicated oysters.

Area of Science:

  • Food Safety
  • Virology
  • Molecular Biology

Background:

  • Gastroenteritis outbreaks linked to oysters pose public health risks.
  • Current methods for detecting viruses in oysters are inefficient due to low viral loads and PCR inhibitors.

Purpose of the Study:

  • To develop rapid and efficient oyster processing procedures for sensitive PCR detection of viruses.
  • To improve the methodology for virus recovery and removal of PCR inhibitors from raw oysters.

Main Methods:

  • Evaluated virus recovery and PCR inhibitor removal using Poliovirus type 3 (PV3).
  • Compared acid adsorption-elution (glycine buffer pH 7.5) with direct elution (glycine buffer pH 9.5).
  • Assessed RNA extraction methods, including silica gel membrane versus single-step precipitation.

Main Results:

  • Acid adsorption-elution with glycine buffer (pH 7.5) retained fewer inhibitors than direct elution.
  • Silica gel membrane RNA extraction was more effective at removing PCR inhibitors.
  • The optimized method achieved a detection sensitivity of 1 PFU/g of oyster tissue.
  • Identified genogroup II Norwalk-like virus in oyster samples from a 1998 outbreak.

Conclusions:

  • The developed oyster processing method enables rapid and sensitive PCR detection of viruses.
  • This approach enhances the response to foodborne viral outbreaks linked to oyster consumption.
  • The method is crucial for identifying viral agents in outbreak-implicated oysters.

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