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manipulation in ovarian cancer cell lines. Small molecular inhibitor studies and molecular biological investigations will complement gene manipulation studies. The Clinical Research Fellowship will be suitable
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. Small molecular inhibitor studies and molecular biological investigations will complement gene manipulation studies. The Clinical Research Fellowship will be suitable for a current specialty trainee in
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manipulation of Pseudomonas aeruginosa and bacterial biofilms, including molecular biology such as the construction of reporter fusions, mutagenesis and transcriptomic analysis. Extensive experience in the study
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to adapt to transient water stress conditions. This position is especially suited for candidates with an interest in root development and molecular cell biology. All the technologies required for the project
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signalling (e.g. calcium fluxes/signalling), root development, and molecular cell biology. Applicants must be highly motivated and self-driven, with a PhD in molecular biology or a related area of biological
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volunteer pilot-study in healthy participants involving intake of sugar and alcohol, neuroimaging, collection of biological samples and subsequent analysis using molecular biology techniques. You will be
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conduct the research activities into the computational fluid dynamics simulation and optimisation of vortex reactors. You will develop physical and numerical models for the three-dimensional simulation
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utilize preclinical tumour models, high dimensional techniques including spatial mass spectrometry and immunocytochemistry, alongside complementary state-of-the-art molecular biology approaches to identify
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project is a collaboration between researchers in the UK, Spain and Ecuador, it builds directly on our previous work identifying and characterising the molecular mechanism of altitude adaptation through
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scientific boundaries and overcome hurdles. They will have experience in stem cell culture, imaging, molecular biology, genetic engineering and/or bioinformatics analysis. This will enable new approaches