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Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver

Background: In the last years, the number of notified hepatitis E cases in humans has continuously increased in Europe. Foodborne infection with the zoonotic hepatitis E virus (HEV) genotype 3 is considered the major cause of this disease. Undercooked liver and raw sausages containing the liver of p...

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Autores principales: Trojnar, Eva, Contzen, Matthias, Moor, Dominik, Carl, Anja, Burkhardt, Sabine, Kilwinski, Jochen, Berghof-Jäger, Kornelia, Mormann, Sascha, Schotte, Ulrich, Kontek, Anne, Althof, Nadine, Mäde, Dietrich, Johne, Reimar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7598171/
https://www.ncbi.nlm.nih.gov/pubmed/32977593
http://dx.doi.org/10.3390/microorganisms8101460
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author Trojnar, Eva
Contzen, Matthias
Moor, Dominik
Carl, Anja
Burkhardt, Sabine
Kilwinski, Jochen
Berghof-Jäger, Kornelia
Mormann, Sascha
Schotte, Ulrich
Kontek, Anne
Althof, Nadine
Mäde, Dietrich
Johne, Reimar
author_facet Trojnar, Eva
Contzen, Matthias
Moor, Dominik
Carl, Anja
Burkhardt, Sabine
Kilwinski, Jochen
Berghof-Jäger, Kornelia
Mormann, Sascha
Schotte, Ulrich
Kontek, Anne
Althof, Nadine
Mäde, Dietrich
Johne, Reimar
author_sort Trojnar, Eva
collection PubMed
description Background: In the last years, the number of notified hepatitis E cases in humans has continuously increased in Europe. Foodborne infection with the zoonotic hepatitis E virus (HEV) genotype 3 is considered the major cause of this disease. Undercooked liver and raw sausages containing the liver of pigs and wild boar are at high risk of containing HEV. However, so far, no standardized method for the detection of HEV-RNA in pig liver is available. Methods: An international collaborative study on method reproducibility involving 11 laboratories was performed for an HEV-RNA detection method, which consists of steps of sample homogenization, RNA extraction and real-time RT-PCR detection, including a process control. Naturally contaminated pork liver samples containing two different amounts of HEV and a HEV-negative pork liver sample were tested by all laboratories using the method. Results: Valid results were retrieved from 10 laboratories. A specificity of 100% and a sensitivity of 79% were calculated for the method. False negative results were only retrieved from the sample containing very low HEV amounts near the detection limit. Conclusions: The results show that the method is highly specific, sufficiently sensitive and robust for use in different laboratories. The method can, therefore, be applied to routine food control as well as in monitoring studies.
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spelling pubmed-75981712020-10-31 Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver Trojnar, Eva Contzen, Matthias Moor, Dominik Carl, Anja Burkhardt, Sabine Kilwinski, Jochen Berghof-Jäger, Kornelia Mormann, Sascha Schotte, Ulrich Kontek, Anne Althof, Nadine Mäde, Dietrich Johne, Reimar Microorganisms Article Background: In the last years, the number of notified hepatitis E cases in humans has continuously increased in Europe. Foodborne infection with the zoonotic hepatitis E virus (HEV) genotype 3 is considered the major cause of this disease. Undercooked liver and raw sausages containing the liver of pigs and wild boar are at high risk of containing HEV. However, so far, no standardized method for the detection of HEV-RNA in pig liver is available. Methods: An international collaborative study on method reproducibility involving 11 laboratories was performed for an HEV-RNA detection method, which consists of steps of sample homogenization, RNA extraction and real-time RT-PCR detection, including a process control. Naturally contaminated pork liver samples containing two different amounts of HEV and a HEV-negative pork liver sample were tested by all laboratories using the method. Results: Valid results were retrieved from 10 laboratories. A specificity of 100% and a sensitivity of 79% were calculated for the method. False negative results were only retrieved from the sample containing very low HEV amounts near the detection limit. Conclusions: The results show that the method is highly specific, sufficiently sensitive and robust for use in different laboratories. The method can, therefore, be applied to routine food control as well as in monitoring studies. MDPI 2020-09-23 /pmc/articles/PMC7598171/ /pubmed/32977593 http://dx.doi.org/10.3390/microorganisms8101460 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Trojnar, Eva
Contzen, Matthias
Moor, Dominik
Carl, Anja
Burkhardt, Sabine
Kilwinski, Jochen
Berghof-Jäger, Kornelia
Mormann, Sascha
Schotte, Ulrich
Kontek, Anne
Althof, Nadine
Mäde, Dietrich
Johne, Reimar
Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver
title Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver
title_full Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver
title_fullStr Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver
title_full_unstemmed Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver
title_short Interlaboratory Validation of a Detection Method for Hepatitis E Virus RNA in Pig Liver
title_sort interlaboratory validation of a detection method for hepatitis e virus rna in pig liver
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7598171/
https://www.ncbi.nlm.nih.gov/pubmed/32977593
http://dx.doi.org/10.3390/microorganisms8101460
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