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Evaluation of multiplex tandem PCR (MT-PCR) assays for the detection of bacterial resistance genes among Enterobacteriaceae in clinical urines.

Authors :
Schmidt, K
Stanley, K K
Hale, R
Smith, L
Wain, J
O'Grady, J
Livermore, D M
Source :
Journal of Antimicrobial Chemotherapy (JAC); Feb2019, Vol. 74 Issue 2, p349-356, 8p
Publication Year :
2019

Abstract

<bold>Background: </bold>Increasing resistance drives empirical use of less potent and previously reserved antibiotics, including for urinary tract infections (UTIs). Molecular profiling, without culture, might better guide early therapy.<bold>Objectives: </bold>To explore the potential of AusDiagnostics multiplex tandem (MT) PCR UTI assays.<bold>Methods: </bold>Two MT-PCR assays were developed successively, seeking 8 or 16 resistance genes. Amplification was tracked in real time, with melting temperatures used to confirm product identity. Assays were variously performed on: (i) extracted DNA; (ii) cultured bacteria; (iii) urine spiked with reference strains; and (iv) bacteria harvested from clinical urines. Results were compared with those from sequencing, real-time SybrGreen PCR or phenotypic susceptibility.<bold>Results: </bold>Performance was similar irrespective of whether DNA, cultures or urines were used, with >90% sensitivity and specificity with respect to common β-lactamases, dfr genes and aminoglycoside resistance determinants except aadA1/A2/A3, for which carriage correlated poorly with streptomycin resistance. Fluoroquinolone-susceptible and -resistant Escherichia coli (but not other species) were distinguished by the melting temperatures of their gyrA PCR products. The time from urine to results was <3 h.<bold>Conclusions: </bold>The MT-PCR assays rapidly identified resistance genes from Gram-negative bacteria in urines as well as from cultivated bacteria. Used directly on urines, this assay has the potential to guide early therapy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03057453
Volume :
74
Issue :
2
Database :
Complementary Index
Journal :
Journal of Antimicrobial Chemotherapy (JAC)
Publication Type :
Academic Journal
Accession number :
134213776
Full Text :
https://doi.org/10.1093/jac/dky419