Biomicrofluidics · 2016 · 11 citations · 26 references
EngineeringPathogen DetectionMicrobial PathogensWaterborne PathogensBacterial PathogensDrinking WaterBiosensing SystemsMultiplexed DetectionGround WaterFood MicrobiologyEnvironmental MicrobiologyInfection ControlMicrofluidicsFoodborne PathogensWaterborne DiseasesClinical MicrobiologyEnteric BacteriaMicrobial ContaminationMicrobial Risk AssessmentMicrobiologyMedicineQuantitative MicrobiologyDiagnostic Microbiology
Waterborne pathogens pose significant threat to the global population and early detection plays an important role both in making drinking water safe, as well as in diagnostics and treatment of water-borne diseases. We present an innovative centrifugal sedimentation immunoassay platform for detection of bacterial pathogens in water. Our approach is based on binding of pathogens to antibody-functionalized capture particles followed by sedimentation of the particles through a density-media in a microfluidic disk. Beads at the distal end of the disk are imaged to quantify the fluorescence and determine the bacterial concentration. Our platform is fast (20 min), can detect as few as ∼10 bacteria with minimal sample preparation, and can detect multiple pathogens simultaneously. The platform was used to detect a panel of enteric bacteria (Escherichia coli, Salmonella typhimurium, Shigella, Listeria, and Campylobacter) spiked in tap and ground water samples.
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Diarrhoea: why children are still dying and what can be done
Tessa Wardlaw, Peter Salama, Clarissa Brocklehurst et al. · The Lancet · 2009 · 1.1K citations
Preventive Medicine, Preventive Pediatrics, Global Health +10