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effects T cell ageing. This position would particularly suit a researcher with an interest in the application of complex bioinformatic analysis and machine learning to create a model of metabolic T cell
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involving the Chan Zuckerberg Initiative-funded Human Pediatric Skin Atlas which will involve recruitment of patients, patient and public engagement through the Centre of the Cell and use of cutting-edge
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) in order to realise the objectives and development of the research programme. The post holder will investigate critical survival and proliferative pathways in B-cell malignancies. The project aims
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aims to understand the biological mechanisms that underpin disease initiation, progression and the different clinical behaviours of specific B- and T-cell non-Hodgkin’s lymphomas by investigating intra
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composites. They will also have prior experience in experimental statistical design, in vitro cytotoxicity and functional osteogenic cell testing. Prior knowledge of the fields of bone tissue augmentation and
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spatial tissue patterning methodologies to control cellular and matrix microenvironments, stem cell differentiation cues and cell populations within next generation organ-chips. The PDRAs will develop
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library preparation) and bioinformatics analysis. This role offers the opportunity to study a naturally occurring feline coronavirus disease utilising archived patient samples as well as feline cell lines
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biology and cell biology would be welcomed. The successful candidate requires a PhD degree in a biological or medical sciences discipline, with a good track record in publishing their work in leading
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pathological bone formation and resorption in AS, and how relevant cytokines modulate bone cell function. This will be achieved using validated in vitro models of human disease. The successful applicant will
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effectiveness. This involves the development and parameterisation of a range of dynamic models and makes use of some of the best available data for these pathogens, including longitudinal data on B cell responses