Cargando…

Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients

Members of the recently introduced fungal genus Rasamsonia (formerly included in the Geosmithia genus) have been described as emerging pathogens in immunosuppressed hosts or patients with cystic fibrosis (CF). Rasamsonia species have often been misidentified as Penicillium or Paecilomyces because of...

Descripción completa

Detalles Bibliográficos
Autores principales: Steinmann, J, Giraud, S, Schmidt, D, Sedlacek, L, Hamprecht, A, Houbraken, J, Meis, J F, Bouchara, J P, Buer, J, Rath, P-M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184661/
https://www.ncbi.nlm.nih.gov/pubmed/25356347
http://dx.doi.org/10.1002/nmi2.44
_version_ 1782337887480578048
author Steinmann, J
Giraud, S
Schmidt, D
Sedlacek, L
Hamprecht, A
Houbraken, J
Meis, J F
Bouchara, J P
Buer, J
Rath, P-M
author_facet Steinmann, J
Giraud, S
Schmidt, D
Sedlacek, L
Hamprecht, A
Houbraken, J
Meis, J F
Bouchara, J P
Buer, J
Rath, P-M
author_sort Steinmann, J
collection PubMed
description Members of the recently introduced fungal genus Rasamsonia (formerly included in the Geosmithia genus) have been described as emerging pathogens in immunosuppressed hosts or patients with cystic fibrosis (CF). Rasamsonia species have often been misidentified as Penicillium or Paecilomyces because of similar morphological characteristics. We validated a commercially available real-time PCR assay (Primerdesign™, UK) for accurate detection of species from the Rasamsonia argillacea complex. First, we tested this assay with a collection of 74 reference strains and clinical isolates and then compared the PCR with cultures of 234 respiratory samples from 152 patients with CF from two University Hospitals in Germany and France. The assay reliably detected the three main species within the Rasamsonia argillacea species complex (R. argillacea, R. piperina, R. aegroticola), which are typically encountered in CF patients. The limit of DNA detection was between 0.01 and 1 pg/μL. Analysis of the DNA extracts from respiratory specimens of CF patients revealed that four out of the 153 patients studied (2.6%) were colonized with R. argillacea species complex. Two species from the R. argillacea complex grew in the parallel cultures from the same patients. In one patient the PCR was positive 5 months before culture. The real-time PCR assay is a sensitive and specific method for detecting the three most important species of the R. argillacea species complex encountered in the CF context. Detection of these emerging pathogens in respiratory secretions from CF patients by this novel assay may increase our understanding of the occurrence and epidemiology of the R. argillacea species complex.
format Online
Article
Text
id pubmed-4184661
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BlackWell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-41846612014-10-29 Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients Steinmann, J Giraud, S Schmidt, D Sedlacek, L Hamprecht, A Houbraken, J Meis, J F Bouchara, J P Buer, J Rath, P-M New Microbes New Infect New Microbes in Humans – New Resistant Microbes in Humans Members of the recently introduced fungal genus Rasamsonia (formerly included in the Geosmithia genus) have been described as emerging pathogens in immunosuppressed hosts or patients with cystic fibrosis (CF). Rasamsonia species have often been misidentified as Penicillium or Paecilomyces because of similar morphological characteristics. We validated a commercially available real-time PCR assay (Primerdesign™, UK) for accurate detection of species from the Rasamsonia argillacea complex. First, we tested this assay with a collection of 74 reference strains and clinical isolates and then compared the PCR with cultures of 234 respiratory samples from 152 patients with CF from two University Hospitals in Germany and France. The assay reliably detected the three main species within the Rasamsonia argillacea species complex (R. argillacea, R. piperina, R. aegroticola), which are typically encountered in CF patients. The limit of DNA detection was between 0.01 and 1 pg/μL. Analysis of the DNA extracts from respiratory specimens of CF patients revealed that four out of the 153 patients studied (2.6%) were colonized with R. argillacea species complex. Two species from the R. argillacea complex grew in the parallel cultures from the same patients. In one patient the PCR was positive 5 months before culture. The real-time PCR assay is a sensitive and specific method for detecting the three most important species of the R. argillacea species complex encountered in the CF context. Detection of these emerging pathogens in respiratory secretions from CF patients by this novel assay may increase our understanding of the occurrence and epidemiology of the R. argillacea species complex. BlackWell Publishing Ltd 2014-05 2014-04-20 /pmc/articles/PMC4184661/ /pubmed/25356347 http://dx.doi.org/10.1002/nmi2.44 Text en © 2014 The Authors. New Microbes and New Infections published by John Wiley & Sons Ltd on behalf of the European Society of Clinical Microbiology and Infectious Disease. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle New Microbes in Humans – New Resistant Microbes in Humans
Steinmann, J
Giraud, S
Schmidt, D
Sedlacek, L
Hamprecht, A
Houbraken, J
Meis, J F
Bouchara, J P
Buer, J
Rath, P-M
Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
title Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
title_full Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
title_fullStr Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
title_full_unstemmed Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
title_short Validation of a novel real-time PCR for detecting Rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
title_sort validation of a novel real-time pcr for detecting rasamsonia argillacea species complex in respiratory secretions from cystic fibrosis patients
topic New Microbes in Humans – New Resistant Microbes in Humans
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184661/
https://www.ncbi.nlm.nih.gov/pubmed/25356347
http://dx.doi.org/10.1002/nmi2.44
work_keys_str_mv AT steinmannj validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT girauds validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT schmidtd validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT sedlacekl validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT hamprechta validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT houbrakenj validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT meisjf validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT boucharajp validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT buerj validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients
AT rathpm validationofanovelrealtimepcrfordetectingrasamsoniaargillaceaspeciescomplexinrespiratorysecretionsfromcysticfibrosispatients