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Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus

BACKGROUND: The recently developed Xpert® Ebola Assay is a novel nucleic acid amplification test for simplified detection of Ebola virus (EBOV) in whole blood and buccal swab samples. The assay targets sequences in two EBOV genes, lowering the risk for new variants to escape detection in the test. T...

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Autores principales: Pinsky, Benjamin A., Sahoo, Malaya K., Sandlund, Johanna, Kleman, Marika, Kulkarni, Medha, Grufman, Per, Nygren, Malin, Kwiatkowski, Robert, Baron, Ellen Jo, Tenover, Fred, Denison, Blake, Higuchi, Russell, Van Atta, Reuel, Beer, Neil Reginald, Carrillo, Alda Celena, Naraghi-Arani, Pejman, Mire, Chad E., Ranadheera, Charlene, Grolla, Allen, Lagerqvist, Nina, Persing, David H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643052/
https://www.ncbi.nlm.nih.gov/pubmed/26562786
http://dx.doi.org/10.1371/journal.pone.0142216
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author Pinsky, Benjamin A.
Sahoo, Malaya K.
Sandlund, Johanna
Kleman, Marika
Kulkarni, Medha
Grufman, Per
Nygren, Malin
Kwiatkowski, Robert
Baron, Ellen Jo
Tenover, Fred
Denison, Blake
Higuchi, Russell
Van Atta, Reuel
Beer, Neil Reginald
Carrillo, Alda Celena
Naraghi-Arani, Pejman
Mire, Chad E.
Ranadheera, Charlene
Grolla, Allen
Lagerqvist, Nina
Persing, David H.
author_facet Pinsky, Benjamin A.
Sahoo, Malaya K.
Sandlund, Johanna
Kleman, Marika
Kulkarni, Medha
Grufman, Per
Nygren, Malin
Kwiatkowski, Robert
Baron, Ellen Jo
Tenover, Fred
Denison, Blake
Higuchi, Russell
Van Atta, Reuel
Beer, Neil Reginald
Carrillo, Alda Celena
Naraghi-Arani, Pejman
Mire, Chad E.
Ranadheera, Charlene
Grolla, Allen
Lagerqvist, Nina
Persing, David H.
author_sort Pinsky, Benjamin A.
collection PubMed
description BACKGROUND: The recently developed Xpert® Ebola Assay is a novel nucleic acid amplification test for simplified detection of Ebola virus (EBOV) in whole blood and buccal swab samples. The assay targets sequences in two EBOV genes, lowering the risk for new variants to escape detection in the test. The objective of this report is to present analytical characteristics of the Xpert® Ebola Assay on whole blood samples. METHODS AND FINDINGS: This study evaluated the assay’s analytical sensitivity, analytical specificity, inclusivity and exclusivity performance in whole blood specimens. EBOV RNA, inactivated EBOV, and infectious EBOV were used as targets. The dynamic range of the assay, the inactivation of virus, and specimen stability were also evaluated. The lower limit of detection (LoD) for the assay using inactivated virus was estimated to be 73 copies/mL (95% CI: 51–97 copies/mL). The LoD for infectious virus was estimated to be 1 plaque-forming unit/mL, and for RNA to be 232 copies/mL (95% CI 163–302 copies/mL). The assay correctly identified five different Ebola viruses, Yambuku-Mayinga, Makona-C07, Yambuku-Ecran, Gabon-Ilembe, and Kikwit-956210, and correctly excluded all non-EBOV isolates tested. The conditions used by Xpert® Ebola for inactivation of infectious virus reduced EBOV titer by ≥6 logs. CONCLUSION: In summary, we found the Xpert® Ebola Assay to have high analytical sensitivity and specificity for the detection of EBOV in whole blood. It offers ease of use, fast turnaround time, and remote monitoring. The test has an efficient viral inactivation protocol, fulfills inclusivity and exclusivity criteria, and has specimen stability characteristics consistent with the need for decentralized testing. The simplicity of the assay should enable testing in a wide variety of laboratory settings, including remote laboratories that are not capable of performing highly complex nucleic acid amplification tests, and during outbreaks where time to detection is critical.
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spelling pubmed-46430522015-11-18 Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus Pinsky, Benjamin A. Sahoo, Malaya K. Sandlund, Johanna Kleman, Marika Kulkarni, Medha Grufman, Per Nygren, Malin Kwiatkowski, Robert Baron, Ellen Jo Tenover, Fred Denison, Blake Higuchi, Russell Van Atta, Reuel Beer, Neil Reginald Carrillo, Alda Celena Naraghi-Arani, Pejman Mire, Chad E. Ranadheera, Charlene Grolla, Allen Lagerqvist, Nina Persing, David H. PLoS One Research Article BACKGROUND: The recently developed Xpert® Ebola Assay is a novel nucleic acid amplification test for simplified detection of Ebola virus (EBOV) in whole blood and buccal swab samples. The assay targets sequences in two EBOV genes, lowering the risk for new variants to escape detection in the test. The objective of this report is to present analytical characteristics of the Xpert® Ebola Assay on whole blood samples. METHODS AND FINDINGS: This study evaluated the assay’s analytical sensitivity, analytical specificity, inclusivity and exclusivity performance in whole blood specimens. EBOV RNA, inactivated EBOV, and infectious EBOV were used as targets. The dynamic range of the assay, the inactivation of virus, and specimen stability were also evaluated. The lower limit of detection (LoD) for the assay using inactivated virus was estimated to be 73 copies/mL (95% CI: 51–97 copies/mL). The LoD for infectious virus was estimated to be 1 plaque-forming unit/mL, and for RNA to be 232 copies/mL (95% CI 163–302 copies/mL). The assay correctly identified five different Ebola viruses, Yambuku-Mayinga, Makona-C07, Yambuku-Ecran, Gabon-Ilembe, and Kikwit-956210, and correctly excluded all non-EBOV isolates tested. The conditions used by Xpert® Ebola for inactivation of infectious virus reduced EBOV titer by ≥6 logs. CONCLUSION: In summary, we found the Xpert® Ebola Assay to have high analytical sensitivity and specificity for the detection of EBOV in whole blood. It offers ease of use, fast turnaround time, and remote monitoring. The test has an efficient viral inactivation protocol, fulfills inclusivity and exclusivity criteria, and has specimen stability characteristics consistent with the need for decentralized testing. The simplicity of the assay should enable testing in a wide variety of laboratory settings, including remote laboratories that are not capable of performing highly complex nucleic acid amplification tests, and during outbreaks where time to detection is critical. Public Library of Science 2015-11-12 /pmc/articles/PMC4643052/ /pubmed/26562786 http://dx.doi.org/10.1371/journal.pone.0142216 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Pinsky, Benjamin A.
Sahoo, Malaya K.
Sandlund, Johanna
Kleman, Marika
Kulkarni, Medha
Grufman, Per
Nygren, Malin
Kwiatkowski, Robert
Baron, Ellen Jo
Tenover, Fred
Denison, Blake
Higuchi, Russell
Van Atta, Reuel
Beer, Neil Reginald
Carrillo, Alda Celena
Naraghi-Arani, Pejman
Mire, Chad E.
Ranadheera, Charlene
Grolla, Allen
Lagerqvist, Nina
Persing, David H.
Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus
title Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus
title_full Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus
title_fullStr Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus
title_full_unstemmed Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus
title_short Analytical Performance Characteristics of the Cepheid GeneXpert Ebola Assay for the Detection of Ebola Virus
title_sort analytical performance characteristics of the cepheid genexpert ebola assay for the detection of ebola virus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643052/
https://www.ncbi.nlm.nih.gov/pubmed/26562786
http://dx.doi.org/10.1371/journal.pone.0142216
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