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High-throughput, multiplex microfluidic test strip for the determination of antibiotic susceptibility in uropathogenic E. coli with smartphone detection

View ORCID ProfileSarah H. Needs, Zara Rafaque, Wajiha Imtiaz, Partha Ray, Simon Andrews, View ORCID ProfileAlexander D. Edwards
doi: https://doi.org/10.1101/2021.05.28.446184
Sarah H. Needs
1School of Pharmacy, University of Reading, RG6 6DX, UK
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  • For correspondence: s.h.needs@reading.ac.uk a.d.edwards@reading.ac.uk
Zara Rafaque
2Department of Microbiology, Faculty of Health Sciences, Hazara University, Mansehra, Pakistan
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Wajiha Imtiaz
3School of Biological Sciences, University of Reading, RG6 6DX, UK
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Partha Ray
4School of Agriculture, Policy and Development, University of Reading RG6 6DX, UK
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Simon Andrews
3School of Biological Sciences, University of Reading, RG6 6DX, UK
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Alexander D. Edwards
1School of Pharmacy, University of Reading, RG6 6DX, UK
5CFT Ltd, Daux Road, Billingshurst, RH14 9SJ, UK
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  • For correspondence: s.h.needs@reading.ac.uk a.d.edwards@reading.ac.uk
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Abstract

Antibiotic resistance in urinary tract infections is a major global challenge and improved cost-effective and high throughput antibiotic susceptibility tests (AST) are urgently needed to inform correct antibiotic selection. We evaluated a high throughput microfluidic test strip for AST and minimum inhibitory concentration (MIC) determination in 20 urinary pathogenic E. coli (UPEC) isolates using six commonly prescribed or therapeutically beneficial antibiotics. The microfluidic MIC performs broth microdilution in 1 microliter volume capillaries, 100 X smaller than standard broth microdilution. Each test strip contains 10 parallel capillaries which are dipped into a single well of a 96 well plate, significantly increasing throughput over a microtitre plate. When tested with clinical UPEC isolates at standardised inoculum density, these devices gave 100% essential agreement (+/- 1 doubling dilution of antibiotic) to the gold standard microplate broth microdilution method described by CLSI. Although for some antibiotic/isolate combinations an earlier endpoint readout reduced accuracy, MIC test strips read at a 6h endpoint still gave 69 – 100 % essential agreement depending on the antibiotic. Growth could be detected significantly earlier than 6h, but with a trade-off between speed vs accuracy. These high-throughput, multiplexed test strips could be used to increase throughput and give faster results than microplates while retaining the core broth microdilution methodology of gold standard techniques for AST and MIC determination.

Competing Interest Statement

ADE is one of the inventors of patent application protecting aspects of the novel microfluidic devices tested in this study and is a director and shareholder in Capillary Film Technology Ltd, a company holding a commercial license to this patent application: WO2016012778. Capillary assay device with internal hydrophilic coating. AD Edwards, NM Reis.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted June 16, 2021.
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High-throughput, multiplex microfluidic test strip for the determination of antibiotic susceptibility in uropathogenic E. coli with smartphone detection
Sarah H. Needs, Zara Rafaque, Wajiha Imtiaz, Partha Ray, Simon Andrews, Alexander D. Edwards
bioRxiv 2021.05.28.446184; doi: https://doi.org/10.1101/2021.05.28.446184
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High-throughput, multiplex microfluidic test strip for the determination of antibiotic susceptibility in uropathogenic E. coli with smartphone detection
Sarah H. Needs, Zara Rafaque, Wajiha Imtiaz, Partha Ray, Simon Andrews, Alexander D. Edwards
bioRxiv 2021.05.28.446184; doi: https://doi.org/10.1101/2021.05.28.446184

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