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Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform

Capripoxviruses, comprising sheep pox virus, goat pox virus and lumpy skin disease virus cause serious diseases of domesticated ruminants, notifiable to The World Organization for Animal Health. This report describes the evaluation of a mobile diagnostic system (Enigma Field Laboratory) that perform...

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Autores principales: Armson, B., Fowler, V. L., Tuppurainen, E. S. M., Howson, E. L. A., Madi, M., Sallu, R., Kasanga, C. J., Pearson, C., Wood, J., Martin, P., Mioulet, V., King, D. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5434827/
https://www.ncbi.nlm.nih.gov/pubmed/26608662
http://dx.doi.org/10.1111/tbed.12447
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author Armson, B.
Fowler, V. L.
Tuppurainen, E. S. M.
Howson, E. L. A.
Madi, M.
Sallu, R.
Kasanga, C. J.
Pearson, C.
Wood, J.
Martin, P.
Mioulet, V.
King, D. P.
author_facet Armson, B.
Fowler, V. L.
Tuppurainen, E. S. M.
Howson, E. L. A.
Madi, M.
Sallu, R.
Kasanga, C. J.
Pearson, C.
Wood, J.
Martin, P.
Mioulet, V.
King, D. P.
author_sort Armson, B.
collection PubMed
description Capripoxviruses, comprising sheep pox virus, goat pox virus and lumpy skin disease virus cause serious diseases of domesticated ruminants, notifiable to The World Organization for Animal Health. This report describes the evaluation of a mobile diagnostic system (Enigma Field Laboratory) that performs automated sequential steps for nucleic acid extraction and real‐time PCR to detect capripoxvirus DNA within laboratory and endemic field settings. To prepare stable reagents that could be deployed into field settings, lyophilized reagents were used that employed an established diagnostic PCR assay. These stabilized reagents demonstrated an analytical sensitivity that was equivalent, or greater than the established laboratory‐based PCR test which utilizes wet reagents, and the limit of detection for the complete assay pipeline was approximately one log(10) more sensitive than the laboratory‐based PCR assay. Concordant results were generated when the mobile PCR system was compared to the laboratory‐based PCR using samples collected from Africa, Asia and Europe (n = 10) and experimental studies (n = 9) representing clinical cases of sheep pox, goat pox and lumpy skin disease. Furthermore, this mobile assay reported positive results in situ using specimens that were collected from a dairy cow in Morogoro, Tanzania, which was exhibiting clinical signs of lumpy skin disease. These data support the use of mobile PCR systems for the rapid and sensitive detection of capripoxvirus DNA in endemic field settings.
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spelling pubmed-54348272017-06-01 Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform Armson, B. Fowler, V. L. Tuppurainen, E. S. M. Howson, E. L. A. Madi, M. Sallu, R. Kasanga, C. J. Pearson, C. Wood, J. Martin, P. Mioulet, V. King, D. P. Transbound Emerg Dis Short Communications Capripoxviruses, comprising sheep pox virus, goat pox virus and lumpy skin disease virus cause serious diseases of domesticated ruminants, notifiable to The World Organization for Animal Health. This report describes the evaluation of a mobile diagnostic system (Enigma Field Laboratory) that performs automated sequential steps for nucleic acid extraction and real‐time PCR to detect capripoxvirus DNA within laboratory and endemic field settings. To prepare stable reagents that could be deployed into field settings, lyophilized reagents were used that employed an established diagnostic PCR assay. These stabilized reagents demonstrated an analytical sensitivity that was equivalent, or greater than the established laboratory‐based PCR test which utilizes wet reagents, and the limit of detection for the complete assay pipeline was approximately one log(10) more sensitive than the laboratory‐based PCR assay. Concordant results were generated when the mobile PCR system was compared to the laboratory‐based PCR using samples collected from Africa, Asia and Europe (n = 10) and experimental studies (n = 9) representing clinical cases of sheep pox, goat pox and lumpy skin disease. Furthermore, this mobile assay reported positive results in situ using specimens that were collected from a dairy cow in Morogoro, Tanzania, which was exhibiting clinical signs of lumpy skin disease. These data support the use of mobile PCR systems for the rapid and sensitive detection of capripoxvirus DNA in endemic field settings. John Wiley and Sons Inc. 2015-11-25 2017-06 /pmc/articles/PMC5434827/ /pubmed/26608662 http://dx.doi.org/10.1111/tbed.12447 Text en © 2015 The Authors. Transboundary and Emerging Diseases published by Blackwell Verlag GmbH This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Communications
Armson, B.
Fowler, V. L.
Tuppurainen, E. S. M.
Howson, E. L. A.
Madi, M.
Sallu, R.
Kasanga, C. J.
Pearson, C.
Wood, J.
Martin, P.
Mioulet, V.
King, D. P.
Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform
title Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform
title_full Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform
title_fullStr Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform
title_full_unstemmed Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform
title_short Detection of Capripoxvirus DNA Using a Field‐Ready Nucleic Acid Extraction and Real‐Time PCR Platform
title_sort detection of capripoxvirus dna using a field‐ready nucleic acid extraction and real‐time pcr platform
topic Short Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5434827/
https://www.ncbi.nlm.nih.gov/pubmed/26608662
http://dx.doi.org/10.1111/tbed.12447
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