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properties of human tissue, overcoming many of the pitfalls associated with the current state-of-the art treatments. Mediated by dynamic crosslinks, our supramolecular hydrogels are designed to deliver
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. The project will use state-of-the-art genomic technologies to identify epigenetic determinants that lead to protein misfolding in neurons. Using single-cell technologies for in vivo mouse models as
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the open literature and liaise with the sponsors. The successful candidate must have obtained or be close to obtaining a PhD in Mechanical Engineering or a related subject, have some research experience and
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-of-the-art molecular cell biology technologies, combined with in vivo mouse models, to achieve the final goal of developing novel therapeutics for neurodegeneration. You will need to hold or be close to
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, mentoring undergraduate and graduate students, delivering occasional seminars, acquiring new skills, keeping up with the scientific literature, using established procedures and developing new approaches, and
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core facility (RICS) provides access to a wide range of state-of-the-art equipment and specialised cell services. Further information on our work can be found here: https://www.cruk.cam.ac.uk/core