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, funded by the Medical Research Council and is due to start no earlier than January 2026. If successful, you will use experimental approaches to contribute to a project that is investigating aspects
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, you will use experimental approaches to contribute to a project that is investigating aspects of synaptic inhibition and plasticity in the mammalian cortex. The research will employ studies in rodents
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application. Please do not attach any manuscripts, papers, transcripts, mark sheets or certificates as these will not be considered as part of your application. The Supporting Statement should include short
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amnio acids and growth factors to achieve a sustainable production. You will be responsible for developing engineered bacterial SimCells that are able to use ammonia and lactate to synthesis and release
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is focussed on understanding the human tumour microenvironment (TME) and its role in cancer progression, immune evasion, and therapeutic resistance. We place a strong emphasis on the use of advanced
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statistical and computational methods designed to use “big data” and to address questions of direct or indirect relevance to common complex diseases and disorders. The appointee will join the group of Professor
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to Good Clinical and Laboratory Practice standards, HTA guidelines and MHRA regulations. You will use a large variety of techniques from classical and molecular microbiology and handling and analysis
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cancer progression, immune evasion, and therapeutic resistance. We place a strong emphasis on the use of spatial biological approaches applied to human tumour models including organ/tumour perfusion, slice
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programme grant with partners across the UK to facilitate the use of hydrogen for aviation, and in particular the icing vulnerability of heat exchangers and parts of the airframe. You will work to generate
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the tree of life. The main responsibilities will be to identify ancient gene families that encode membrane proteins and then use a range of phylogenomic methods to understand their ancestry. These analyses