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Eastman Dental Institute. Research Environment: The student will join a vibrant, multidisciplinary research community within UCL’s Mechanical and Chemical Engineering departments. The project is supported
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. Synthetic analogues will be developed and screened alone and in combination with existing antimicrobials. The ultimate goal is to design novel chemotherapeutic combinations that disrupt cell wall remodelling
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, and biotechnology. Research Environment: The project is a collaboration between UCL Chemistry, Pharmacy, and Chemical Engineering departments. Students will work across multiple labs, benefiting from a
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disinfectants. With antimicrobial resistance (AMR) on the rise, there is an urgent need for non-antibiotic strategies to prevent and control biofilm formation on medical devices. This PhD project proposes a novel
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basic microbiology, immunology, and/or microscopy would be an advantage, but not essential. How to apply This project is offered as part of the Centre for Doctoral Training in Engineering Solutions
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Supervisors: Dr. Duygu Dikicioglu Prof. Eli Keshavarz-Moore Abstract: Antifungal resistance is a growing and under-recognised global health threat. Fungal infections affect over a billion people
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within a highly collaborative setting, benefiting from access to the UCL Automation Network and cutting-edge facilities for structural and biophysical analysis. The project is well-positioned to deliver
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Supervisors: Prof. Giorgio Volpe Prof. Lena Ciric Abstract Horizontal gene transfer (HGT) is a major driver of antimicrobial resistance (AMR), yet most research focuses on well-mixed lab cultures
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diagnostics, empirical antibiotic use is common, exacerbating resistance. This project aims to develop a next-generation lateral flow assay (LFA) platform for rapid, ultrasensitive detection of RTI pathogens
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PhD Studentship: Nanopore Technology for Rapid and Accurate Measurement of Antibiotic Concentrations
Supervisors: Dr. Nicholas Bell Bell Lab Website Dr. Kabir Husain Husain Lab Website Abstract: Antimicrobial resistance (AMR) is exacerbated by persistent, sub-lethal levels of antibiotics in