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. The patient sample analyses include state-of-the-art technologies (e.g. -omics, flow cytometry, and others) and related bioinformatics workflows. In vitro models, including cell type and tissue specific cell
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technologies (e.g. -omics, flow cytometry, and others) and related bioinformatics workflows. In vitro models, including cell type and tissue specific cell models, will be utilized to address specific aspects
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and cell models to address different aspects of the targeted hypothesis. Focus areas include mechanisms leading to impaired microcirculation, and possible roles of vascular cells, tissue hypoxia and
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. The candidate will work with state-of-the-art analytical instrumentation, generate extensive experimental data sets and analyze them using advanced bioinformatics methods. The work tasks include to: Design cell
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them using advanced bioinformatics methods. The work tasks include to: Design cell culture experiments suitable for investigating mechanistic principles of how small molecules, such as NAD, CoA or FAD
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to the production of NOx and HOx gases, which in turn can reduce the ozone concentration. Ozone is important in the energy budget at these altitudes. Hence changing the concentration of ozone at 50 km affects
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products, their potential controlling reactions and the resulting energy landscape will be investigated using a combination of geochemical, thermodynamic and microbiological analyses of experimentally
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. These collisions initiate several chemical reactions leading to the production of NOx and HOx gases, which in turn can reduce the ozone concentration. Ozone is important in the energy budget at these altitudes
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important in the energy budget at these altitudes. Hence changing the concentration of ozone at 50 km affects temperature, winds, and wave propagation in complex feedback loops. The project seeks to study how
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or cell biology, pharmacology, biotechnology, medical nanotechnology, medicine or equivalent. Experience with relevant molecular biology or cell biology methods is required Experience from cancer research