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Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa

BACKGROUND: In Africa, relapsing fever borreliae are neglected arthropod-borne pathogens causing mild to deadly septicemia and miscarriage. The closely related Borrelia crocidurae, Borrelia duttonii, Borrelia recurrentis and Borrelia hispanica are rarely diagnosed at the species level, hampering ref...

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Autores principales: Elbir, Haitham, Henry, Mireille, Diatta, Georges, Mediannikov, Oleg, Sokhna, Cheikh, Tall, Adama, Socolovschi, Cristina, Cutler, Sally J., Bilcha, Kassahum D., Ali, Jemal, Campelo, Dayana, Barker, Steven C., Raoult, Didier, Drancourt, Michel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561136/
https://www.ncbi.nlm.nih.gov/pubmed/23390560
http://dx.doi.org/10.1371/journal.pntd.0002042
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author Elbir, Haitham
Henry, Mireille
Diatta, Georges
Mediannikov, Oleg
Sokhna, Cheikh
Tall, Adama
Socolovschi, Cristina
Cutler, Sally J.
Bilcha, Kassahum D.
Ali, Jemal
Campelo, Dayana
Barker, Steven C.
Raoult, Didier
Drancourt, Michel
author_facet Elbir, Haitham
Henry, Mireille
Diatta, Georges
Mediannikov, Oleg
Sokhna, Cheikh
Tall, Adama
Socolovschi, Cristina
Cutler, Sally J.
Bilcha, Kassahum D.
Ali, Jemal
Campelo, Dayana
Barker, Steven C.
Raoult, Didier
Drancourt, Michel
author_sort Elbir, Haitham
collection PubMed
description BACKGROUND: In Africa, relapsing fever borreliae are neglected arthropod-borne pathogens causing mild to deadly septicemia and miscarriage. The closely related Borrelia crocidurae, Borrelia duttonii, Borrelia recurrentis and Borrelia hispanica are rarely diagnosed at the species level, hampering refined epidemiological and clinical knowledge of the relapsing fevers. It would be hugely beneficial to have simultaneous detection and identification of Borrelia to species level directly from clinical samples. METHODOLOGY/PRINCIPAL FINDINGS: We designed a multiplex real-time PCR protocol targeting the 16S rRNA gene detecting all four Borrelia, the glpQ gene specifically detecting B. crocidurae, the recN gene specifically detecting B. duttonii/B. recurrentis and the recC gene specifically detecting B. hispanica. Compared to combined 16S rRNA gene and flaB gene sequencing as the gold standard, multiplex real-time PCR analyses of 171 Borrelia-positive and 101 Borrelia-negative control blood specimens yielded 100% sensitivity and specificity for B. duttonii/B. recurrentis and B. hispanica and 99% sensitivity and specificity for B. crocidurae. CONCLUSIONS/SIGNIFICANCE: The multiplex real-time PCR developed in this study is a rapid technique for both molecular detection and speciation of relapsing fever borreliae from blood in Africa. It could be incorporated in point-of-care laboratory to confirm diagnosis and provide evidence of the burden of infection attributed to different species of known or potentially novel relapsing fever borreliae.
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spelling pubmed-35611362013-02-06 Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa Elbir, Haitham Henry, Mireille Diatta, Georges Mediannikov, Oleg Sokhna, Cheikh Tall, Adama Socolovschi, Cristina Cutler, Sally J. Bilcha, Kassahum D. Ali, Jemal Campelo, Dayana Barker, Steven C. Raoult, Didier Drancourt, Michel PLoS Negl Trop Dis Research Article BACKGROUND: In Africa, relapsing fever borreliae are neglected arthropod-borne pathogens causing mild to deadly septicemia and miscarriage. The closely related Borrelia crocidurae, Borrelia duttonii, Borrelia recurrentis and Borrelia hispanica are rarely diagnosed at the species level, hampering refined epidemiological and clinical knowledge of the relapsing fevers. It would be hugely beneficial to have simultaneous detection and identification of Borrelia to species level directly from clinical samples. METHODOLOGY/PRINCIPAL FINDINGS: We designed a multiplex real-time PCR protocol targeting the 16S rRNA gene detecting all four Borrelia, the glpQ gene specifically detecting B. crocidurae, the recN gene specifically detecting B. duttonii/B. recurrentis and the recC gene specifically detecting B. hispanica. Compared to combined 16S rRNA gene and flaB gene sequencing as the gold standard, multiplex real-time PCR analyses of 171 Borrelia-positive and 101 Borrelia-negative control blood specimens yielded 100% sensitivity and specificity for B. duttonii/B. recurrentis and B. hispanica and 99% sensitivity and specificity for B. crocidurae. CONCLUSIONS/SIGNIFICANCE: The multiplex real-time PCR developed in this study is a rapid technique for both molecular detection and speciation of relapsing fever borreliae from blood in Africa. It could be incorporated in point-of-care laboratory to confirm diagnosis and provide evidence of the burden of infection attributed to different species of known or potentially novel relapsing fever borreliae. Public Library of Science 2013-01-31 /pmc/articles/PMC3561136/ /pubmed/23390560 http://dx.doi.org/10.1371/journal.pntd.0002042 Text en © 2013 Elbir et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Elbir, Haitham
Henry, Mireille
Diatta, Georges
Mediannikov, Oleg
Sokhna, Cheikh
Tall, Adama
Socolovschi, Cristina
Cutler, Sally J.
Bilcha, Kassahum D.
Ali, Jemal
Campelo, Dayana
Barker, Steven C.
Raoult, Didier
Drancourt, Michel
Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa
title Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa
title_full Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa
title_fullStr Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa
title_full_unstemmed Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa
title_short Multiplex Real-Time PCR Diagnostic of Relapsing Fevers in Africa
title_sort multiplex real-time pcr diagnostic of relapsing fevers in africa
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561136/
https://www.ncbi.nlm.nih.gov/pubmed/23390560
http://dx.doi.org/10.1371/journal.pntd.0002042
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