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other PhD students in Biology and related disciplines. The PhD student is expected to be trained in a highly valued skillset that combines molecular biology with fermentation science to fill skill gaps in
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Research Studentship in microfluidics applied to cell biology 3.5-year D.Phil. studentship Project: Microfluidics with fluid walls for cancer and neuronal research Supervisors: Prof Edmond Walsh
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work within our circadian biology research group to contribute meaningful research that addresses challenges with a deep impact in food security, for present and future generations. You’ll also develop a
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Primary supervisor - Dr Nicol Janecko Campylobacter continues to be the main cause of bacterial foodborne illness in the UK with incidence increasing. This microbe not only causes gastroenteritis but can become invasive, resulting in bloodstream infections that lead to longer illnesses and...
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Supervisory Team: Thalia Dominguez Bucio, Frederic Gardes, Rand Ismaeel, Matthew Mowlem Project description This project sheds light on ocean biology and ecosystems by developing a robust
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, chemical biology, and molecular biology. The candidate will work at the forefront of chemical and synthetic biology and will develop advanced skills in chemical synthesis, various molecular biology and
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imaging techniques and structural biology analysis. The student will learn a variety of research techniques including CRISPR genome editing, molecular biology, biochemistry, advanced fluorescent imaging
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human induced pluripotent stem cells. The successful candidate will be trained in relevant methods and procedures, including cell culture, cardiac electrophysiology, molecular biology/protein isolation
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-molecule level. You will form part of the research team core and support the wider group through outstanding technical support and research in molecular biology and biochemistry focused on DNA replication
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the urgent need for deeper insights into GIST biology. Single cell RNA sequencing studies have identified immune cells present within the GIST tumour microenvironment (TME) that vary between KIT/PDGFRA mutant