Fluorometric Detection of Multiple Bacteria in Water Using Cell Imprinted Polymer Thin Films Integrated into a Microfluidic Channel

dc.contributor.advisorRezai, Pouya
dc.contributor.authorMahmoud, Islam
dc.date.accessioned2026-07-24T15:31:34Z
dc.date.available2026-07-24T15:31:34Z
dc.date.copyright2025-06-06
dc.date.issued2026-07-24
dc.date.updated2026-07-24T15:31:33Z
dc.degree.disciplineMechanical Engineering
dc.degree.levelMaster's
dc.degree.nameMASc - Master of Applied Science
dc.description.abstractWaterborne pathogens threaten public health, but standard detection methods—culture plating and molecular assays—are slow, laborious, and confined to centralized labs. Biosensors promise rapid, on-site monitoring, yet antibody-based designs demand cold-chain handling and are fragile. This thesis introduces a fluorescence microfluidic sensor built on whole-cell imprinted polymers (CIPs), offering a robust, reagent-free alternative for duplex detection in water. CIP thin films were formed in situ within microchannels by polymerizing around target bacterial cells, creating selective cavities. Multiple CIP regions on a single chip enable parallel capture of different species. After trapping cells, optimized FITC injection generates a fluorescence signal proportional to bacterial concentration. In singleplex tests with Salmonella, the sensor achieved a limit of detection (LOD) of 1.47 × 10³ CFU/mL, a limit of quantification (LOQ) of 5.28 × 10³ CFU/mL, and a linear response from 10³ to 10⁷ CFU/mL. Selectivity assays showed preferential Salmonella binding over non-targets. Duplex mode captured both Salmonella and E. coli concurrently at concentrations above 10⁵ CFU/mL. Although multiplexing reduced sensitivity, the CIP-based sensor requires minimal sample volume, no complex prep, and avoids cold storage, underscoring its field-ready potential. Future work will focus on polymer optimization, signal amplification, and validation with real environmental samples.
dc.identifier.urihttps://hdl.handle.net/10315/43835
dc.languageen
dc.rightsAuthor owns copyright, except where explicitly noted. Please contact the author directly with licensing requests.
dc.subjectBiomedical engineering
dc.subjectEnvironmental engineering
dc.subjectMechanical engineering
dc.subject.keywordsImprinted polymers
dc.subject.keywordsMicrofluidic sensors
dc.subject.keywordsFluorescence biosensors
dc.subject.keywordsWhole-cell imprinting
dc.subject.keywordsDuplex detection
dc.subject.keywordsWaterborne pathogens
dc.subject.keywordsThin-film fabrication
dc.subject.keywordsEnvironmental monitoring
dc.titleFluorometric Detection of Multiple Bacteria in Water Using Cell Imprinted Polymer Thin Films Integrated into a Microfluidic Channel
dc.typeElectronic Thesis or Dissertation

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