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High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation

BACKGROUND: Coxiella burnetii is the causative agent of Q-fever, a widespread zoonosis. Due to its high environmental stability and infectivity it is regarded as a category B biological weapon agent. In domestic animals infection remains either asymptomatic or presents as infertility or abortion. Cl...

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Autores principales: Panning, Marcus, Kilwinski, Jochen, Greiner-Fischer, Susanne, Peters, Martin, Kramme, Stefanie, Frangoulidis, Dimitrios, Meyer, Hermann, Henning, Klaus, Drosten, Christian
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2397412/
https://www.ncbi.nlm.nih.gov/pubmed/18489780
http://dx.doi.org/10.1186/1471-2180-8-77
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author Panning, Marcus
Kilwinski, Jochen
Greiner-Fischer, Susanne
Peters, Martin
Kramme, Stefanie
Frangoulidis, Dimitrios
Meyer, Hermann
Henning, Klaus
Drosten, Christian
author_facet Panning, Marcus
Kilwinski, Jochen
Greiner-Fischer, Susanne
Peters, Martin
Kramme, Stefanie
Frangoulidis, Dimitrios
Meyer, Hermann
Henning, Klaus
Drosten, Christian
author_sort Panning, Marcus
collection PubMed
description BACKGROUND: Coxiella burnetii is the causative agent of Q-fever, a widespread zoonosis. Due to its high environmental stability and infectivity it is regarded as a category B biological weapon agent. In domestic animals infection remains either asymptomatic or presents as infertility or abortion. Clinical presentation in humans can range from mild flu-like illness to acute pneumonia and hepatitis. Endocarditis represents the most common form of chronic Q-fever. In humans serology is the gold standard for diagnosis but is inadequate for early case detection. In order to serve as a diagnostic tool in an eventual biological weapon attack or in local epidemics we developed a real-time 5'nuclease based PCR assay with an internal control system. To facilitate high-throughput an automated extraction procedure was evaluated. RESULTS: To determine the minimum number of copies that are detectable at 95% chance probit analysis was used. Limit of detection in blood was 2,881 copies/ml [95%CI, 2,188–4,745 copies/ml] with a manual extraction procedure and 4,235 copies/ml [95%CI, 3,143–7,428 copies/ml] with a fully automated extraction procedure, respectively. To demonstrate clinical application a total of 72 specimens of animal origin were compared with respect to manual and automated extraction. A strong correlation between both methods was observed rendering both methods suitable. Testing of 247 follow up specimens of animal origin from a local Q-fever epidemic rendered real-time PCR more sensitive than conventional PCR. CONCLUSION: A sensitive and thoroughly evaluated real-time PCR was established. Its high-throughput mode may show a useful approach to rapidly screen samples in local outbreaks for other organisms relevant for humans or animals. Compared to a conventional PCR assay sensitivity of real-time PCR was higher after testing samples from a local Q-fever outbreak.
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spelling pubmed-23974122008-05-29 High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation Panning, Marcus Kilwinski, Jochen Greiner-Fischer, Susanne Peters, Martin Kramme, Stefanie Frangoulidis, Dimitrios Meyer, Hermann Henning, Klaus Drosten, Christian BMC Microbiol Methodology Article BACKGROUND: Coxiella burnetii is the causative agent of Q-fever, a widespread zoonosis. Due to its high environmental stability and infectivity it is regarded as a category B biological weapon agent. In domestic animals infection remains either asymptomatic or presents as infertility or abortion. Clinical presentation in humans can range from mild flu-like illness to acute pneumonia and hepatitis. Endocarditis represents the most common form of chronic Q-fever. In humans serology is the gold standard for diagnosis but is inadequate for early case detection. In order to serve as a diagnostic tool in an eventual biological weapon attack or in local epidemics we developed a real-time 5'nuclease based PCR assay with an internal control system. To facilitate high-throughput an automated extraction procedure was evaluated. RESULTS: To determine the minimum number of copies that are detectable at 95% chance probit analysis was used. Limit of detection in blood was 2,881 copies/ml [95%CI, 2,188–4,745 copies/ml] with a manual extraction procedure and 4,235 copies/ml [95%CI, 3,143–7,428 copies/ml] with a fully automated extraction procedure, respectively. To demonstrate clinical application a total of 72 specimens of animal origin were compared with respect to manual and automated extraction. A strong correlation between both methods was observed rendering both methods suitable. Testing of 247 follow up specimens of animal origin from a local Q-fever epidemic rendered real-time PCR more sensitive than conventional PCR. CONCLUSION: A sensitive and thoroughly evaluated real-time PCR was established. Its high-throughput mode may show a useful approach to rapidly screen samples in local outbreaks for other organisms relevant for humans or animals. Compared to a conventional PCR assay sensitivity of real-time PCR was higher after testing samples from a local Q-fever outbreak. BioMed Central 2008-05-19 /pmc/articles/PMC2397412/ /pubmed/18489780 http://dx.doi.org/10.1186/1471-2180-8-77 Text en Copyright © 2008 Panning et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology Article
Panning, Marcus
Kilwinski, Jochen
Greiner-Fischer, Susanne
Peters, Martin
Kramme, Stefanie
Frangoulidis, Dimitrios
Meyer, Hermann
Henning, Klaus
Drosten, Christian
High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation
title High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation
title_full High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation
title_fullStr High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation
title_full_unstemmed High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation
title_short High throughput detection of Coxiella burnetii by real-time PCR with internal control system and automated DNA preparation
title_sort high throughput detection of coxiella burnetii by real-time pcr with internal control system and automated dna preparation
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2397412/
https://www.ncbi.nlm.nih.gov/pubmed/18489780
http://dx.doi.org/10.1186/1471-2180-8-77
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