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Updated: May 6, 2026

Colorimetric Paper-based Detection of Escherichia coli, Salmonella spp., and Listeria monocytogenes from Large Volumes of Agricultural Water
Published on: June 9, 2014
Cationic Microgel-Enhanced Paper Microfluidic Device for Rapid and Sensitive On-Site Detection of Waterborne
Saikrushna Jena1, Nidhi C Dubey2, Bijay P Tripathi1
1Functional Materials & Membranes Laboratory, Department of Materials Science & Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.
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A foldable paper-based microfluidic device is presented that seamlessly integrates the three essential stages of nucleic-acid amplification testing (NAAT), including cell lysis/DNA extraction, loop-mediated isothermal amplification (LAMP), and end-point readout by colorimetric detection. The core of the microdevice is a glass-fiber sample pad functionalized with a cationic microgel that selectively adsorbs and concentrates genomic DNA liberated from intact bacterial cells by one-step thermal lysis. LAMP reagents are predried in discrete reaction chambers, enabling on-chip amplification at 65 °C without additional reagent handling. After 45 min, amplification products are visualized colorimetrically with methylene blue (MB), allowing naked-eye discrimination of positive and negative results. The device accurately detects two major waterborne pathogens: Salmonella spp. and Escherichia coli O157:H7 in both laboratory buffer and spiked real-world samples (drinking water, pomegranate juice, and milk). Limits of detection were 10 CFU/mL (colony forming unit) for E. coli and 102 CFU/mL for Salmonella spp., achieved within 1 h 15 min total assay time. Shelf life studies show that analytical performance is retained at ∼50% of the initial signal for at least 8 days at -20 °C and 4 days at 4 °C, underscoring the platform's suitability for field deployment. Overall, this origami-style microdevice integrates high analytical sensitivity with true sample-to-answer simplicity, providing a promising platform for rapid point-of-care detection of waterborne pathogens in resource-limited settings.

