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Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection

BACKGROUND: Cerebrospinal fluid shunt infection can be recalcitrant. Recurrence is common despite appropriate therapy for the pathogens identified by culture. Improved diagnostic and therapeutic approaches are required, and culture-independent molecular approaches to cerebrospinal fluid shunt infect...

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Autores principales: Simon, Tamara D., Pope, Christopher E., Browd, Samuel R., Ojemann, Jeffrey G., Riva-Cambrin, Jay, Mayer-Hamblett, Nicole, Rosenfeld, Margaret, Zerr, Danielle M., Hoffman, Lucas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3885436/
https://www.ncbi.nlm.nih.gov/pubmed/24421877
http://dx.doi.org/10.1371/journal.pone.0083229
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author Simon, Tamara D.
Pope, Christopher E.
Browd, Samuel R.
Ojemann, Jeffrey G.
Riva-Cambrin, Jay
Mayer-Hamblett, Nicole
Rosenfeld, Margaret
Zerr, Danielle M.
Hoffman, Lucas
author_facet Simon, Tamara D.
Pope, Christopher E.
Browd, Samuel R.
Ojemann, Jeffrey G.
Riva-Cambrin, Jay
Mayer-Hamblett, Nicole
Rosenfeld, Margaret
Zerr, Danielle M.
Hoffman, Lucas
author_sort Simon, Tamara D.
collection PubMed
description BACKGROUND: Cerebrospinal fluid shunt infection can be recalcitrant. Recurrence is common despite appropriate therapy for the pathogens identified by culture. Improved diagnostic and therapeutic approaches are required, and culture-independent molecular approaches to cerebrospinal fluid shunt infections have not been described. OBJECTIVES: To identify the bacteria and fungi present in cerebrospinal fluid from children with cerebrospinal fluid shunt infection using a high-throughput sequencing approach, and to compare those results to those from negative controls and conventional culture. METHODS: This descriptive study included eight children ≤18 years old undergoing treatment for culture-identified cerebrospinal fluid shunt infection. After routine aerobic culture of each cerebrospinal fluid sample, deoxyribonucleic acid (DNA) extraction was followed by amplification of the bacterial 16S rRNA gene and the fungal ITS DNA region tag-encoded FLX-Titanium amplicon pyrosequencing and microbial phylogenetic analysis. RESULTS: The microbiota analyses for the initial cerebrospinal fluid samples from all eight infections identified a variety of bacteria and fungi, many of which did not grow in conventional culture. Detection by conventional culture did not predict the relative abundance of an organism by pyrosequencing, but in all cases, at least one bacterial taxon was detected by both conventional culture and pyrosequencing. Individual bacterial species fluctuated in relative abundance but remained above the limits of detection during infection treatment. CONCLUSIONS: Numerous bacterial and fungal organisms were detected in these cerebrospinal fluid shunt infections, even during and after treatment, indicating diverse and recalcitrant shunt microbiota. In evaluating cerebrospinal fluid shunt infection, fungal and anaerobic bacterial cultures should be considered in addition to aerobic bacterial cultures, and culture-independent approaches offer a promising alternative diagnostic approach. More effective treatment of cerebrospinal fluid shunt infections is needed to reduce unacceptably high rates of reinfection, and this work suggests that one effective strategy may be reduction of the diverse microbiota present in infection.
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spelling pubmed-38854362014-01-13 Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection Simon, Tamara D. Pope, Christopher E. Browd, Samuel R. Ojemann, Jeffrey G. Riva-Cambrin, Jay Mayer-Hamblett, Nicole Rosenfeld, Margaret Zerr, Danielle M. Hoffman, Lucas PLoS One Research Article BACKGROUND: Cerebrospinal fluid shunt infection can be recalcitrant. Recurrence is common despite appropriate therapy for the pathogens identified by culture. Improved diagnostic and therapeutic approaches are required, and culture-independent molecular approaches to cerebrospinal fluid shunt infections have not been described. OBJECTIVES: To identify the bacteria and fungi present in cerebrospinal fluid from children with cerebrospinal fluid shunt infection using a high-throughput sequencing approach, and to compare those results to those from negative controls and conventional culture. METHODS: This descriptive study included eight children ≤18 years old undergoing treatment for culture-identified cerebrospinal fluid shunt infection. After routine aerobic culture of each cerebrospinal fluid sample, deoxyribonucleic acid (DNA) extraction was followed by amplification of the bacterial 16S rRNA gene and the fungal ITS DNA region tag-encoded FLX-Titanium amplicon pyrosequencing and microbial phylogenetic analysis. RESULTS: The microbiota analyses for the initial cerebrospinal fluid samples from all eight infections identified a variety of bacteria and fungi, many of which did not grow in conventional culture. Detection by conventional culture did not predict the relative abundance of an organism by pyrosequencing, but in all cases, at least one bacterial taxon was detected by both conventional culture and pyrosequencing. Individual bacterial species fluctuated in relative abundance but remained above the limits of detection during infection treatment. CONCLUSIONS: Numerous bacterial and fungal organisms were detected in these cerebrospinal fluid shunt infections, even during and after treatment, indicating diverse and recalcitrant shunt microbiota. In evaluating cerebrospinal fluid shunt infection, fungal and anaerobic bacterial cultures should be considered in addition to aerobic bacterial cultures, and culture-independent approaches offer a promising alternative diagnostic approach. More effective treatment of cerebrospinal fluid shunt infections is needed to reduce unacceptably high rates of reinfection, and this work suggests that one effective strategy may be reduction of the diverse microbiota present in infection. Public Library of Science 2014-01-08 /pmc/articles/PMC3885436/ /pubmed/24421877 http://dx.doi.org/10.1371/journal.pone.0083229 Text en © 2014 Simon 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
Simon, Tamara D.
Pope, Christopher E.
Browd, Samuel R.
Ojemann, Jeffrey G.
Riva-Cambrin, Jay
Mayer-Hamblett, Nicole
Rosenfeld, Margaret
Zerr, Danielle M.
Hoffman, Lucas
Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection
title Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection
title_full Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection
title_fullStr Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection
title_full_unstemmed Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection
title_short Evaluation of Microbial Bacterial and Fungal Diversity in Cerebrospinal Fluid Shunt Infection
title_sort evaluation of microbial bacterial and fungal diversity in cerebrospinal fluid shunt infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3885436/
https://www.ncbi.nlm.nih.gov/pubmed/24421877
http://dx.doi.org/10.1371/journal.pone.0083229
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