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campus. The research focuses on elucidating mechanisms underlying human trophectoderm development. The aim of this project is to test the functional requirement for signalling pathways in trophectoderm
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COVID-19 on these processes. This project is part of the Brain Health in Gen2020 programme, and will aim to characterise the cell behaviour of early human cortical progenitors and the effect of COVID-19
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. Our team focuses on understanding the immune system's role in autoimmune and inflammatory diseases and exploring immunotherapy to treat them. This exciting project involves characterising samples from a
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and/or flow cytometry-based readouts of infection Experience with biochemical assays (e.g. Western blotting) Experience handling/processing samples in vivo infection models and/or human samples
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foldamer catalysts, and their application towards a variety of stereoselective processes, including organocatalytic and photocatalytic reactions. Applicants should have extensive experience in both small
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biology capabilities within a dynamic, multidisciplinary research environment at King’s College London. The successful candidate will bring deep expertise in tissue processing, digital pathology, spatial
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will be made at Grade 5, spine point 30 with the title of Research Assistant. Upon confirmation of the award of the PhD, the job title will become Research Associate and the salary will increase to Grade
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are awaiting award of their PhDs will be considered. In these circumstances the appointment will be made at Grade 5, spine point 30 with the title of Research Assistant. Upon confirmation of the award
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opportunity to collaborate with leading experts in research on foetuses/neonates/infants led by Prof Grainne McAlonan, Professor David Edwards, and Dr Dafnis Batalle; research on sensory processing by Dr Nick
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” of the brain is genetically determined, it is also influenced by environmental experience. We are still far from a complete understanding of how these processes work. CDN is one of four departments in the School