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Multiplex characterization of human pathogens including species and antibiotic-resistance gene identification
Author(s) -
Ivan Barišić,
Josefine Petzka,
Silvia Schöenthaler,
Klemens Vierlinger,
Christa Noehammer,
Herbert Wiesinger-Mayr
Publication year - 2015
Publication title -
journal of medical microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.91
H-Index - 117
eISSN - 1473-5644
pISSN - 0022-2615
DOI - 10.1099/jmm.0.000192
Subject(s) - biology , multiplex , antibiotic resistance , multiplex polymerase chain reaction , microarray , pathogen , gene , microbiology and biotechnology , bacteria , antibiotics , computational biology , human pathogen , genetics , polymerase chain reaction , gene expression
The efficient medical treatment of infections requires detailed information about the pathogens involved and potential antibiotic-resistance mechanisms. The dramatically increasing incidence of multidrug-resistant bacteria especially highlights the importance of sophisticated diagnostic tests enabling a fast patient-customized therapy. However, the current molecular detection methods are limited to either the detection of species or only a few antibiotic-resistance genes.In this work, we present a human pathogen characterization assay using a rRNA gene microarray identifying 75 species comprising bacteria and fungi. A statistical classifier was developed to facilitate the automated species identification. Additionally, the clinically most important β-lactamases were identified simultaneously in a 100-plex reaction using padlock probes and the same microarray. The specificity and sensitivity of the combined assay was determined using clinical isolates. The detection limit was 10(5) c.f.u. ml(-1), recovering 89 % of the detectable β-lactamase-encoding genes specifically. The total assay time was less than 7 hand the modular character of the antibiotic-resistance detection allows the easy integration of further genetic targets. In summary, we present a fast, highly specific and sensitive multiplex pathogen characterization assay.

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