Engineered reporter phages for detection of Escherichia coli, Enterococcus, and Klebsiella in urine

Author:

Meile SusanneORCID,Du JieminORCID,Staubli SamuelORCID,Grossmann SebastianORCID,Koliwer-Brandl HendrikORCID,Piffaretti Pietro,Leitner Lorenz,Matter Cassandra I.ORCID,Baggenstos Jasmin,Hunold Laura,Milek Sonja,Guebeli ChristianORCID,Kozomara-Hocke Marko,Neumeier Vera,Botteon Angela,Klumpp Jochen,Marschall Jonas,McCallin Shawna,Zbinden Reinhard,Kessler Thomas M.ORCID,Loessner Martin J.ORCID,Dunne MatthewORCID,Kilcher SamuelORCID

Abstract

AbstractThe rapid detection and species-level differentiation of bacterial pathogens facilitates antibiotic stewardship and improves disease management. Here, we develop a rapid bacteriophage-based diagnostic assay to detect the most prevalent pathogens causing urinary tract infections: Escherichia coli, Enterococcus spp., and Klebsiella spp. For each uropathogen, two virulent phages were genetically engineered to express a nanoluciferase reporter gene upon host infection. Using 206 patient urine samples, reporter phage-induced bioluminescence was quantified to identify bacteriuria and the assay was benchmarked against conventional urinalysis. Overall, E. coli, Enterococcus spp., and Klebsiella spp. were each detected with high sensitivity (68%, 78%, 87%), specificity (99%, 99%, 99%), and accuracy (90%, 94%, 98%) at a resolution of ≥103 CFU/ml within 5 h. We further demonstrate how bioluminescence in urine can be used to predict phage antibacterial activity, demonstrating the future potential of reporter phages as companion diagnostics that guide patient-phage matching prior to therapeutic phage application.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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