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extracellular matrix components and growth factors. Perform 2D and 3D cell culture experiments using intestinal cell lines and organoid models. Conduct cell biology, immunofluorescence and microscopy experiments
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partial and total reduction processes of the films, with or without capping layers; • Performing structural and electronic characterization using X-ray diffraction and synchrotron-based experiments, in
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treatment and reaction conditions. The work will involve the use of state-of-the-art transmission electron microscopes, together with advanced data acquisition and analysis methodologies, to achieve high
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microenvironment). - Perform xenografts of murine melanoma cells in isogenic immunocompetent mice. - Evaluate tumor growth and collect tumor samples for histological and molecular analysis. - Analyze high-throughput
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motifs; - establish, optimize, and apply quantitative protein-interaction assays; - perform mammalian cell culture, molecular cloning, mutational analysis, recombinant protein work, and fluorescence
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over a very large area, using sputtering deposition techniques. The overall objective of the project is to define the parameters of this technology (integration of high-performance phase-change materials
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and fabricating transparent and flexible microelectrode arrays (MEAs) based on conductive polymers for recording the electrical activity of enteric neuronal networks, as well as for performing cellular
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networks). • Compare different strategies (topology, tensor order…) to seek for an optimally compressed representation of turbulent velocity fields and of relevant operators in tensor network form. • Perform