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imaging, high-content, single-cell resolution) to assay compound activity Develop imaging assays capable of distinguishing mechanism of action (e.g. growth inhibition, biofilm/attachment disruption
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of the project is to elucidate molecular intra- and extracellular mechanisms of signaling modulating myeloid cells' immune responses. The project is supported by Innosuisse and has a translational goal aiming to
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main campus. Main duties and responsibilities In the Oricchio lab, we investigate the molecular mechanisms that drive tumor initiation and determine responses to therapy. A comprehensive understanding of
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together physicists, earth and planetary scientists, chemists and biologists to understand the conditions and the mechanisms that enable life to emerge. Developing reliable methods to detect reliable traces
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biophysics lab aiming to understand how fluid flows and mechanical properties emerge from the collective activity of molecular assemblies in living cells. We also investigate the biophysical mechanisms by
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with the mediator solution while maintaining mechanical stability, and characterize the thermal and chemical stability of components and formulations. You will apply in-situ diagnostics, in particular in
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: A PhD degree, or a PhD nearing completion, in environmental, civil, chemical, mechanical, or architectural engineering, aerosol science, atmospheric science, exposure science, or another closely
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solution while maintaining mechanical stability, and characterize the thermal and chemical stability of components and formulations. You will apply in-situ diagnostics, in particular in-flow UV-Vis
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encouraged to apply. Profile Strong candidates will have: A PhD degree, or a PhD nearing completion, in environmental, civil, chemical, mechanical, or architectural engineering, aerosol science, atmospheric
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the Department of Biomedicine at Mattenstrasse 28, 4057 Basel. Project: The aim of the project is to elucidate molecular intra- and extracellular mechanisms of signaling modulating myeloid cells’ immune