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Validation of Inactivation Methods for Arenaviruses

Several of the human-pathogenic arenaviruses cause hemorrhagic fever and have to be handled under biosafety level 4 conditions, including Lassa virus. Rapid and safe inactivation of specimens containing these viruses is fundamental to enable downstream processing for diagnostics or research under lo...

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Autores principales: Olschewski, Silke, Thielebein, Anke, Hoffmann, Chris, Blake, Olivia, Müller, Jonas, Bockholt, Sabrina, Pallasch, Elisa, Hinzmann, Julia, Wurr, Stephanie, Neddersen, Neele, Rieger, Toni, Günther, Stephan, Oestereich, Lisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8225210/
https://www.ncbi.nlm.nih.gov/pubmed/34073735
http://dx.doi.org/10.3390/v13060968
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author Olschewski, Silke
Thielebein, Anke
Hoffmann, Chris
Blake, Olivia
Müller, Jonas
Bockholt, Sabrina
Pallasch, Elisa
Hinzmann, Julia
Wurr, Stephanie
Neddersen, Neele
Rieger, Toni
Günther, Stephan
Oestereich, Lisa
author_facet Olschewski, Silke
Thielebein, Anke
Hoffmann, Chris
Blake, Olivia
Müller, Jonas
Bockholt, Sabrina
Pallasch, Elisa
Hinzmann, Julia
Wurr, Stephanie
Neddersen, Neele
Rieger, Toni
Günther, Stephan
Oestereich, Lisa
author_sort Olschewski, Silke
collection PubMed
description Several of the human-pathogenic arenaviruses cause hemorrhagic fever and have to be handled under biosafety level 4 conditions, including Lassa virus. Rapid and safe inactivation of specimens containing these viruses is fundamental to enable downstream processing for diagnostics or research under lower biosafety conditions. We established a protocol to test the efficacy of inactivation methods using the low-pathogenic Morogoro arenavirus as surrogate for the related highly pathogenic viruses. As the validation of chemical inactivation methods in cell culture systems is difficult due to cell toxicity of commonly used chemicals, we employed filter devices to remove the chemical and concentrate the virus after inactivation and before inoculation into cell culture. Viral replication in the cells was monitored over 4 weeks by using indirect immunofluorescence and immunofocus assay. The performance of the protocol was verified using published inactivation methods including chemicals and heat. Ten additional methods to inactivate virus in infected cells or cell culture supernatant were validated and shown to reduce virus titers to undetectable levels. In summary, we provide a robust protocol for the validation of chemical and physical inactivation of arenaviruses in cell culture, which can be readily adapted to different inactivation methods and specimen matrices.
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spelling pubmed-82252102021-06-25 Validation of Inactivation Methods for Arenaviruses Olschewski, Silke Thielebein, Anke Hoffmann, Chris Blake, Olivia Müller, Jonas Bockholt, Sabrina Pallasch, Elisa Hinzmann, Julia Wurr, Stephanie Neddersen, Neele Rieger, Toni Günther, Stephan Oestereich, Lisa Viruses Article Several of the human-pathogenic arenaviruses cause hemorrhagic fever and have to be handled under biosafety level 4 conditions, including Lassa virus. Rapid and safe inactivation of specimens containing these viruses is fundamental to enable downstream processing for diagnostics or research under lower biosafety conditions. We established a protocol to test the efficacy of inactivation methods using the low-pathogenic Morogoro arenavirus as surrogate for the related highly pathogenic viruses. As the validation of chemical inactivation methods in cell culture systems is difficult due to cell toxicity of commonly used chemicals, we employed filter devices to remove the chemical and concentrate the virus after inactivation and before inoculation into cell culture. Viral replication in the cells was monitored over 4 weeks by using indirect immunofluorescence and immunofocus assay. The performance of the protocol was verified using published inactivation methods including chemicals and heat. Ten additional methods to inactivate virus in infected cells or cell culture supernatant were validated and shown to reduce virus titers to undetectable levels. In summary, we provide a robust protocol for the validation of chemical and physical inactivation of arenaviruses in cell culture, which can be readily adapted to different inactivation methods and specimen matrices. MDPI 2021-05-24 /pmc/articles/PMC8225210/ /pubmed/34073735 http://dx.doi.org/10.3390/v13060968 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Olschewski, Silke
Thielebein, Anke
Hoffmann, Chris
Blake, Olivia
Müller, Jonas
Bockholt, Sabrina
Pallasch, Elisa
Hinzmann, Julia
Wurr, Stephanie
Neddersen, Neele
Rieger, Toni
Günther, Stephan
Oestereich, Lisa
Validation of Inactivation Methods for Arenaviruses
title Validation of Inactivation Methods for Arenaviruses
title_full Validation of Inactivation Methods for Arenaviruses
title_fullStr Validation of Inactivation Methods for Arenaviruses
title_full_unstemmed Validation of Inactivation Methods for Arenaviruses
title_short Validation of Inactivation Methods for Arenaviruses
title_sort validation of inactivation methods for arenaviruses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8225210/
https://www.ncbi.nlm.nih.gov/pubmed/34073735
http://dx.doi.org/10.3390/v13060968
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