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research. We study the fundamental molecular, cellular, and physiological processes that underly normal and abnormal cardiovascular and metabolic function and drive the translation of this strong basic
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downstream signalling components such as SHP1 and SHP2 phosphatases, these receptors exhibit strikingly different signalling capacities in disease settings. While these receptors are well known for their roles
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mechanisms by which co-inhibitory receptors, including PD-1, BTLA, TIGIT, and CD200R, regulate T cell function in autoimmune settings. Despite sharing common downstream signalling components such as SHP1 and
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to the clinic The post holder will be based in the Department of Biomedical Computing as part of the School of Biomedical Engineering & Imaging Sciences, King’s College London, a vibrant community of engineers
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THIS VACANCY IS OPEN TO INTERNAL APPLICANTS ONLY About Us The Faculty of Life Science & Medicine at King's College London is one of Europe's largest centres for biomedical research and teaching. The
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will be involved in processing and analysing tissue collected from patients undergoing surgery, using whole genome sequencing, transcriptomics and proteomics. You will be heavily involved in designing
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Project The Adaptive Design for AI-Driven Processes in Transforming Dynamic Landscapes (ADAPT) project develops scalable, data-driven design methodologies that transform dynamic environmental processes
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and function in a collection of maize germplasm exhibiting diverse levels of yield stability under drought stress. The high-level objective of the research is to characterize the processes of water
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abundant signal of the innate immune response. This position is a fixed-term appointment until 16th January 2029. The goal of the Swatek lab is to understand the immunomodulatory roles of a ubiquitin-like
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the processes of water movement through the soil-root-stem-leaf-atmosphere system and reveal those traits at each point in the system that contribute to enhanced yield stability in maize. The successful candidate