On-chip spectroscopic assessment of microbial susceptibility to antibiotics within 3.5 hours

Schroeder UC, Kirchhoff J, Huebner U, Mayer G, Glaser U, Henkel T, Pfister W, Fritzsche W, Popp J, Neugebauer U (2017)


Publication Type: Journal article

Publication year: 2017

Journal

Book Volume: 10

Pages Range: 1547-1557

Journal Issue: 11

DOI: 10.1002/jbio.201600316

Abstract

In times of rising antibiotic resistances, there is a high need for fast, sensitive and specific methods to determine antibiotic susceptibilities of bacterial pathogens. Here, we present an integrated microfluidic device in which bacteria from diluted suspensions are captured in well-defined regions using on-chip dielectrophoresis and further analyzed in a label-free and non-destructive manner using Raman spectroscopy. Minimal sample preparation and automated sample processing ensure safe handling of infectious material with minimal hands-on time for the operator. Clinical applicability of the presented device is demonstrated by antibiotic susceptibility testing of Escherichia coli towards the commonly prescribed second generation fluoroquinolone ciprofloxacin. Ciprofloxacin resistant E. coli were differentiated from sensitive E. coli with high accuracy within roughly three hours total analysis time paving the way for future point-of-care devices. Spectral changes leading to the discrimination between sensitive and resistant bacteria are in excellent agreement with expected metabolic changes in the bacteria due to the mode of action of the drug. The robustness of the method was confirmed with experiments involving different chip devices with different designs, both electrode as well as microfluidics design, and material. Furthermore, general applicability was demonstrated with different operators over an extended time period of half a year.

Involved external institutions

How to cite

APA:

Schroeder, U.-C., Kirchhoff, J., Huebner, U., Mayer, G., Glaser, U., Henkel, T.,... Neugebauer, U. (2017). On-chip spectroscopic assessment of microbial susceptibility to antibiotics within 3.5 hours. Journal of Biophotonics, 10(11), 1547-1557. https://doi.org/10.1002/jbio.201600316

MLA:

Schroeder, Ulrich-Christian, et al. "On-chip spectroscopic assessment of microbial susceptibility to antibiotics within 3.5 hours." Journal of Biophotonics 10.11 (2017): 1547-1557.

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