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of the project is to determine the genetic basis of antifungal drug resistance in human fungal pathogens and to evaluate the efficacy and molecular targets of a novel antifungal therapeutic. The successful
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in human fungal pathogens and to evaluate the efficacy and molecular targets of a novel antifungal therapeutic. The successful candidate will evolve drug-susceptible fungal isolates into antifungal
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significant expertise in developing and commercialising novel vaccines and delivery platforms. This project focuses on developing novel vaccines for Staphylococcus aureus and developing tissue-targeting
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. The project will utilise a range of techniques, including metagenomics, metabolomics and anaerobic isolation protocols to isolate target bacterial strains, associate their abundance and activity with disease
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to uncover novel therapeutic targets. This position offers an opportunity to work at the intersection of neurodevelopment, immunology, and cancer biology, with the goal of developing new therapeutic strategies
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a variety of areas including; RNA delivery, formulation and characterization of targeted nano-delivery systems, and gene therapy. The project is part of the GENEGUT https://genegut.eu/ consortium