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Portable Differential Detection of CTX-M ESBL Gene Variants from Escherichia coli Isolates and Animal Fecal Samples Using Loop-Primer Endonuclease Cleavage Loop-Mediated Isothermal Amplification

Authors :
Felipe F. Tuon
Higgins, Owen
Chueiri, Alexandra
O'Connor, Louise
Lahiff, Sinéad
Burke, Liam
Morris, Dearbhaile
Pfeifer, Nicola Maria
González Santamarina, Belén
Berens, Christian
Menge, Christian
Caniça, Manuela
Manageiro, Vera
Kisand, Veljo
Hassan, Marwa M.
Gardner, Brian
van Vliet, Arnoud H. M.
La Ragione, Roberto M.
González Zorn, Bruno
Smith, Terry J.
Felipe F. Tuon
Higgins, Owen
Chueiri, Alexandra
O'Connor, Louise
Lahiff, Sinéad
Burke, Liam
Morris, Dearbhaile
Pfeifer, Nicola Maria
González Santamarina, Belén
Berens, Christian
Menge, Christian
Caniça, Manuela
Manageiro, Vera
Kisand, Veljo
Hassan, Marwa M.
Gardner, Brian
van Vliet, Arnoud H. M.
La Ragione, Roberto M.
González Zorn, Bruno
Smith, Terry J.
Publication Year :
2023

Abstract

SUPPLEMENTARY MATERIAL Supplemental material is available online only. Supplemental file 1 Supplemental material. Download spectrum.03316-22-s0001.pdf, PDF file, 0.4 MB<br />Cefotaximase-Munich (CTX-M) extended-spectrum beta-lactamase (ESBL) enzymes produced by Enterobacteriaceae confer resistance to clinically relevant third-generation cephalosporins. CTX-M group 1 variants, CTX-M-1 and CTX-M-15, are the leading ESBL-producing Enterobacteriaceae associated with animal and human infection, respectively, and are an increasing antimicrobial resistance (AMR) global health concern. The blaCTX-M-1 and blaCTX-M-15 genes encoding these variants have an approximate nucleotide sequence similarity of 98.7%, making effective differential diagnostic monitoring difficult. Loop-primer endonuclease cleavage loop-mediated isothermal amplification (LEC-LAMP) enables rapid real-time multiplex pathogen detection with single-base specificity and portable on-site testing. We have developed an internally controlled multiplex CTX-M-1/15 LEC-LAMP assay for the differential detection of blaCTX-M-1 and blaCTX-M-15. Assay analytical specificity was established using a panel of human, animal, and environmental Escherichia coli isolates positive for blaCTX-M-1 (n = 18), blaCTX-M-15 (n = 35), and other closely related blaCTX-Ms (n = 38) from Ireland, Germany, and Portugal, with analytical sensitivity determined using probit regression analysis. Animal fecal sample testing using the CTX-M-1/15 LEC-LAMP assay in combination with a rapid DNA extraction protocol was carried out on porcine fecal samples previously confirmed to be PCR-positive for E. coli blaCTX-M. Portable instrumentation was used to further analyze each fecal sample and demonstrate the on-site testing capabilities of the LEC-LAMP assay with the rapid DNA extraction protocol. The CTX-M-1/15 LEC-LAMP assay demonstrated complete analytical specificity for the differential detection of both variants with sensitive low-level detection of 8.5 and 9.8 copies per reaction for blaCTX-M-1 and blaCTX-M-15, respectively, and E. coli blaCTX-M-1 was identified in all blaCTX-M positive porcine fecal samples tested. IM<br />European Union<br />Depto. de Sanidad Animal<br />Centro de Vigilancia Sanitaria Veterinaria (VISAVET)<br />TRUE<br />pub

Details

Database :
OAIster
Notes :
application/pdf, 2165-0497, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1457228419
Document Type :
Electronic Resource