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synergistic, resistance-proof infection prevention technologies. Approach and Methods: Select, clone, and purify a library of antibiofilm enzymes (e.g., quorum-quenching oxidoreductases, acylases, lactonases
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tracking. • Quantitative image analysis to assess spatial dynamics of gene transfer. Impact and Outlook This project will: Establish proof of concept for surface-based AMR control. • Inform the design of
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PhD Studentship: Nanopore Technology for Rapid and Accurate Measurement of Antibiotic Concentrations
conditions and characterise the dynamic range and sensitivity of the nanopore sensors Develop multiplexing strategies for simultaneous detection of multiple antibiotic classes Perform proof-of-principle
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06th February 2026. The institutional application will require references to be submitted and check you meet minimum entry requirements to be admitted to the doctoral study programme. About the funder