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class of hybrid antimicrobial materials with potential for real-world application in healthcare settings. By addressing the limitations of current antibiofilm strategies, the research could lead to safer
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nanoparticle formulation, polymer chemistry, or cell culture is advantageous Interest in vaccine delivery, AMR, and translational biomedical research How to apply This project is offered as part of the Centre
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. Atomistic Simulation of electronically excited processes in molecules and materials is essential for our understanding of the working principles of emerging energy conversion technologies, e.g. solar cells
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engineering and nano/microfabrication Materials characterisation techniques Microbiology and cell culture Translational research and clinical collaboration Regulatory considerations for medical devices
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leveraging acoustic streaming and cavitation effects induced by ultrasound, the system will enhance drug transport and biofilm disruption. This interdisciplinary project builds on prior EPSRC-funded research
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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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pharmaceutical R&D Application of AI in process development and materials discovery Antimicrobial testing and biological evaluation Workflow integration and data management for self-driven laboratories Project
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to “trick” resistant strains into becoming drug-sensitive. This interdisciplinary research combines synthetic biology, molecular biology, and biochemical engineering to pioneer sustainable, non
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learning and machine learning for biological data Sequence and structure analysis of large-scale datasets Functional annotation and evolutionary analysis Collaborative research with experimental virology
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reasoning and interdisciplinary communication Research Environment The project will be hosted in two collaborative, interdisciplinary labs with expertise in: Evolutionary microbial genomics and phylogenetics