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Job Description Are you motivated by the potential of proteomics to uncover hidden biology? Do you want to map the proteomes of circulating tumour cells and reveal novel proteins with therapeutic
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We invite applications for a fully funded 3-year PhD position focused on developing next-generation robotic grippers for biological laboratories. The project combines advances in multi-material 3D
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natural sciences, in particular, bioinformatics, microbial ecology or molecular biology (cloning). We expect you to have experience in designing and conducting laboratory experiments and to have good
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work at the intersection of palaeogenomics, bioinformatics, and evolutionary biology to overcome long-standing barriers in analysing degraded or low-quality DNA, enabling reliable genomic inference
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biology and secondary metabolism, aiming to turn these insights into commercial products such as bioherbicides, and biofungicides that benefit sustainable agriculture. A PhD position is now available within
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on the development of regulatory tools to improve CRISPR-Cas editing for neurological diseases. You will work with a wide range of methods, including molecular biology, culture and differentiation of human iPSCs
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) technology with innovative biomaterial systems and cell therapy approaches. The successful candidate will join a dynamic research team with extensive expertise in RNA biology, drug delivery, and translational
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: Develop your own PhD plan outlining experimental trials. Design and conduct in vivo trials with salmonids. Collect biological samples and observational data from lab-based studies and at real fish farming
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student with a background in biological engineering, biotechnology or similar. You will work under the supervision of Assistant Professor Raphael Ferreira on large-scale genome engineering in human T cells