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cellular receptors present in target species, where in the cells the virus is located and identify species dependent differences in disease development and receptor expression. Techniques employed will
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master’s degree in molecular biology, biochemistry, cell biology, medicine or a related field and documented experience in molecular and cellular biology. Specifically, experimental expertise in RNA biology
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, Metabolic Engineering, Sustainability, Food Systems Offer Description MSCA Doctoral Network Building Predictive MultiScale Framework for Single Cell Protein BioSolutions (FrameBio) - HORIZON-MSCA-2024-DN-01
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working towards the chemical synthesis of defined oligosaccharides related to the plant cell wall glycan RG-II. We are looking for a creative mind with excellent practical lab skills to design and execute
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explore the frontiers of micro- and nano-scale 3D X-ray imaging. Our next challenge is to visualize hydrogel matrix for cell cultures using phase contrast X-ray microscopy with one of our laboratory X-ray
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information, through make-on-demand compound libraries, and in vitro based cell systems. The aim is to find specific and selective inhibitors that will change how cancer cells grow and that can eventually be
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novel pathways for efficient utilization of C1 feedstock in the environmental bacterium Pseudomonas putida . The engineered bacteria will be used as a sustainable cell factory for the biosynthesis
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well as environmental medicine specialists. The research interests of CPPEM span from pharmacoepidemiology to clinical studies and cell-based basic pharmacology and environmental medicine. Collectively, CPPEM has a
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English language skills Our group and research environment: The Muscle Growth and Metabolism Group, led by Professor Thomas Elbenhardt Jensen, investigates the cellular and molecular mechanisms underlying skeletal
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protein structures and ligand information, through make-on-demand compound libraries, and in vitro based cell systems. The aim is to find specific and selective inhibitors that will change how cancer cells