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16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa

BACKGROUND: The quality of microbiological diagnostic procedures depends on pre-analytic conditions. We compared the results of 16S rRNA gene PCR and sequencing from automatically incubated blood culture materials from tropical Ghana with the results of cultural growth after automated incubation. ME...

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Autores principales: Frickmann, Hagen, Dekker, Denise, Schwarz, Norbert Georg, Hahn, Andreas, Boahen, Kennedy, Sarpong, Nimako, Adu-Sarkodie, Yaw, Halbgewachs, Eva, Marks, Florian, von Kalckreuth, Vera, Poppert, Sven, Loderstaedt, Ulrike, May, Jürgen, Hagen, Ralf Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4535881/
https://www.ncbi.nlm.nih.gov/pubmed/26270631
http://dx.doi.org/10.1371/journal.pone.0135923
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author Frickmann, Hagen
Dekker, Denise
Schwarz, Norbert Georg
Hahn, Andreas
Boahen, Kennedy
Sarpong, Nimako
Adu-Sarkodie, Yaw
Halbgewachs, Eva
Marks, Florian
von Kalckreuth, Vera
Poppert, Sven
Loderstaedt, Ulrike
May, Jürgen
Hagen, Ralf Matthias
author_facet Frickmann, Hagen
Dekker, Denise
Schwarz, Norbert Georg
Hahn, Andreas
Boahen, Kennedy
Sarpong, Nimako
Adu-Sarkodie, Yaw
Halbgewachs, Eva
Marks, Florian
von Kalckreuth, Vera
Poppert, Sven
Loderstaedt, Ulrike
May, Jürgen
Hagen, Ralf Matthias
author_sort Frickmann, Hagen
collection PubMed
description BACKGROUND: The quality of microbiological diagnostic procedures depends on pre-analytic conditions. We compared the results of 16S rRNA gene PCR and sequencing from automatically incubated blood culture materials from tropical Ghana with the results of cultural growth after automated incubation. METHODS: Real-time 16S rRNA gene PCR and subsequent sequencing were applied to 1500 retained blood culture samples of Ghanaian patients admitted to a hospital with an unknown febrile illness after enrichment by automated culture. RESULTS: Out of all 1500 samples, 191 were culture-positive and 98 isolates were considered etiologically relevant. Out of the 191 culture-positive samples, 16S rRNA gene PCR and sequencing led to concordant results in 65 cases at species level and an additional 62 cases at genus level. PCR was positive in further 360 out of 1309 culture-negative samples, sequencing results of which suggested etiologically relevant pathogen detections in 62 instances, detections of uncertain relevance in 50 instances, and DNA contamination due to sample preparation in 248 instances. In two instances, PCR failed to detect contaminants from the skin flora that were culturally detectable. Pre-analytical errors caused many Enterobacteriaceae to be missed by culture. CONCLUSIONS: Potentially correctable pre-analytical conditions and not the fastidious nature of the bacteria caused most of the discrepancies. Although 16S rRNA gene PCR and sequencing in addition to culture led to an increase in detections of presumably etiologically relevant blood culture pathogens, the application of this procedure to samples from the tropics was hampered by a high contamination rate. Careful interpretation of diagnostic results is required.
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spelling pubmed-45358812015-08-20 16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa Frickmann, Hagen Dekker, Denise Schwarz, Norbert Georg Hahn, Andreas Boahen, Kennedy Sarpong, Nimako Adu-Sarkodie, Yaw Halbgewachs, Eva Marks, Florian von Kalckreuth, Vera Poppert, Sven Loderstaedt, Ulrike May, Jürgen Hagen, Ralf Matthias PLoS One Research Article BACKGROUND: The quality of microbiological diagnostic procedures depends on pre-analytic conditions. We compared the results of 16S rRNA gene PCR and sequencing from automatically incubated blood culture materials from tropical Ghana with the results of cultural growth after automated incubation. METHODS: Real-time 16S rRNA gene PCR and subsequent sequencing were applied to 1500 retained blood culture samples of Ghanaian patients admitted to a hospital with an unknown febrile illness after enrichment by automated culture. RESULTS: Out of all 1500 samples, 191 were culture-positive and 98 isolates were considered etiologically relevant. Out of the 191 culture-positive samples, 16S rRNA gene PCR and sequencing led to concordant results in 65 cases at species level and an additional 62 cases at genus level. PCR was positive in further 360 out of 1309 culture-negative samples, sequencing results of which suggested etiologically relevant pathogen detections in 62 instances, detections of uncertain relevance in 50 instances, and DNA contamination due to sample preparation in 248 instances. In two instances, PCR failed to detect contaminants from the skin flora that were culturally detectable. Pre-analytical errors caused many Enterobacteriaceae to be missed by culture. CONCLUSIONS: Potentially correctable pre-analytical conditions and not the fastidious nature of the bacteria caused most of the discrepancies. Although 16S rRNA gene PCR and sequencing in addition to culture led to an increase in detections of presumably etiologically relevant blood culture pathogens, the application of this procedure to samples from the tropics was hampered by a high contamination rate. Careful interpretation of diagnostic results is required. Public Library of Science 2015-08-13 /pmc/articles/PMC4535881/ /pubmed/26270631 http://dx.doi.org/10.1371/journal.pone.0135923 Text en © 2015 Frickmann 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
Frickmann, Hagen
Dekker, Denise
Schwarz, Norbert Georg
Hahn, Andreas
Boahen, Kennedy
Sarpong, Nimako
Adu-Sarkodie, Yaw
Halbgewachs, Eva
Marks, Florian
von Kalckreuth, Vera
Poppert, Sven
Loderstaedt, Ulrike
May, Jürgen
Hagen, Ralf Matthias
16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa
title 16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa
title_full 16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa
title_fullStr 16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa
title_full_unstemmed 16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa
title_short 16S rRNA Gene Sequence-Based Identification of Bacteria in Automatically Incubated Blood Culture Materials from Tropical Sub-Saharan Africa
title_sort 16s rrna gene sequence-based identification of bacteria in automatically incubated blood culture materials from tropical sub-saharan africa
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4535881/
https://www.ncbi.nlm.nih.gov/pubmed/26270631
http://dx.doi.org/10.1371/journal.pone.0135923
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