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will uncover the interfacial solvation structure, validated through comparison between computed and experimental sum-frequency vibrational spectroscopies, as well as the mechanism of chemical
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challenging. This project aims to develop an ultrasound-assisted nanoparticle-based drug delivery system for targeted, controlled release of antimicrobials within these hard-to-reach oral microenvironments. By
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of the following UCL EEE academics: Dr Laura Toni Dr Francesca Boem Professor Miguel Rodriguez Dr Eduardo Pignatelli Applicants are encouraged to review these supervisors’ profiles and research outputs, and may
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nanoparticles can protect them and help deliver them precisely where they are needed. However, designing suitable AMP-nanoparticle combinations is complicated. Many formulation ingredients, concentration ratios
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. Experience with computational modelling would also be valued. This work aims to understand the interoceptive mechanisms that help us perceive, understand and regulate our emotions. About you We are looking
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, and participate in applying for domestic and international patents. Assist in supervising PhD and Master's students, and participate in the center's collaborative projects with industry partners
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with experimental virologists to validate computational predictions Impact and Outlook: This project will uncover the untapped structural and functional potential of bovine UL-CDRs, laying the groundwork
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Develop an active learning-driven platform for compound selection and optimisation Integrate robotic sample preparation, automated data acquisition, and computational analysis Advance five existing
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. Desirable Prior Experience Previous experience working in the field of microbial genomics, bioinformatics or computational biology would be desirable How to apply This project is offered as part of the Centre
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for Antimicrobial Resistance. Further details about the CDT and programme can be found at AMR CDT webiste Applications should be submitted by 12th January 2026.