Abstract
© 2015 SPIE. Urinary tract infections (UTIs) are among the most common bacterial infections and pose a significant healthcare burden. The growing trend in antibiotic resistance makes it mandatory to develop diagnostic kits which allow not only the determination of a pathogen but also the antibiotic resistances. We have developed a microfluidic cartridge which takes a direct urine sample, extracts the DNA, performs an amplification using batch-PCR and flows the sample over a microarray which is printed into a microchannel for fluorescence detection. The cartridge is injection-molded out of COP and contains a set of two-component injection-molded rotary valves to switch between input and to isolate the PCR chamber during thermocycling. The hybridization probes were spotted directly onto a functionalized section of the outlet microchannel. We have been able to successfully perform PCR of E.coli in urine in this chip and perform a fluorescence detection of PCR products. An upgraded design of the cartridge contains the buffers and reagents in blisters stored on the chip.
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CITATION STYLE
Becker, H., Hlawatsch, N., Haraldsson, T., van der Wijngaart, W., Lind, A., Malhotra-Kumar, S., … Goossens, H. (2015). Microfluidic system for the identification of bacterial pathogens causing urinary tract infections. In Microfluidics, BioMEMS, and Medical Microsystems XIII (Vol. 9320, p. 93200S). SPIE. https://doi.org/10.1117/12.2077644
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