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Analysis: Utilize various cell and molecular biology techniques, including histology, microscopy, flow cytometry, RNA-seq, proteomics, Western blot, and qPCR, to analyze organoid and mouse models
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Haapaniemi group, located at NCMBM (Norwegian Centre for Molecular Biociences and Medicine) in University of Oslo & Oslo University hospital. The aim of the Haapaniemi group (www.haapaniemilab.org ) is to
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on transcription factors and analysis of mutations in diabetes genes will be highly valued, for example: experience with cell and molecular biology, cell cultivation (especially beta-cell models), cell cultures
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& Technology, NTNU. NTNU’s Department of Biology hosts internationally leading research activity in ecology, evolutionary biology, physiology, ecotoxicology and cell & molecular biology. The Biodiversity
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organismal level. Using salmon as the model, the studies will employ primary cells and established cell lines to uncover the functional potential of algal compounds. This will be achieved through in-depth
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introduces an unexplored therapeutic target in cancer. About the project/work tasks: Determine the expression of scramblases (PLSCR1, TMEM16F, Xkr8) using highly standardised GBM stem cell models. Visualize
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on chemical absorption and, more specifically, on the modelling of solvent degradation. Carbon dioxide is the primary greenhouse gas emitted through human activities, and the development and implementation
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cutting-edge miniature two-photon microscopes to model-driven systems neuroscience studies. The positions will be financed by the Research Council of Norway. Successful candidates will be offered a PhD
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gap distance should be investigated. Results from other work packages in the project, e.g. molecular modelling, high-field conductivity measurements, and small-scale breakdown, will support and