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: James et al. 2024 REVEILLE2 thermosensitive splicing: a molecular basis for the integration of nocturnal temperature information by the Arabidopsis circadian clock. https://pubmed.ncbi.nlm.nih.gov
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highly relevant to the study of inflammatory disease, as well as the development of new therapies such as vaccines and immunotherapies. Summary aim: This project will investigate the regulation of human
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that contribute to the development and maintenance of these conditions. These projects will use a variety of molecular, cellular and systems level techniques to study somatosensory circuits in rodent models and
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salmonid aquaculture [1-3] and there is an urgent need to mitigate the impact parasitic infections have on both fish welfare and sustainable growth in the sector. Development of vaccine technology over
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purification, biochemical and cellular assays Reconstitution of multi-protein and protein:RNA complexes Assay development Cryo-electron Microscopy SAXS FRET; FRET-FLIM Super-resolution microscopy The control
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-019-1398-3 Extracellular vesicles in clinical trials : https://pubmed.ncbi.nlm.nih.gov/39330928/ Developing novel, combined strategies for peripheral nerve repair Supervisor: Mathis Riehle Outline & aim
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, Johansson KA, Haala Developing Therapeutic approaches for haemorrhagic stroke Supervisor: Prof. Tom Van Agtmael Research area: Mouse genetics, haemorrhagic stroke, molecular cell biology, extracellular matrix
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, metabolism, development, regenerative biology, and behavioural science. MSc (Research): 1 year full-time; 2 years part-time; Apply now Please note: our Online Application Form and Applicant Self Service will