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biochemical screening/characterization, and quantitative cellular delivery assays in cancer cells. Secondments: The successful candidate would have the opportunity to undertake potential secondments in
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in the live organism to study e.g. immune responses or cancer development. Moreover, using molecular sensors we also aim to read out cellular functionality in vivo e.g. metabolic reprogramming in
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molecular tools. For example, single cell in flow measurements of optoacoustic signals. The job In flow probing of absorption profiles of medically relevant cell types is a critical diagnostic asset. Our
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diseases (e.g., Zhang et al., Nature Microbiology, 2025; Li et al., Nature Metabolism, 2024; Ni et al., Cell Metabolism, 2023; Leung et al., Science Translational Medicine, 2022; Seelbinder et al., Nature
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bacterial fitness Analyse the formation of clusters among bacteria using fluorescence microscopy Investigate bacteria on a single-cell level using microfluidics and flow-cytometry Quantify the amino acids
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requirements are Experience in working with large-scale spatial-temporal traffic and/or travel behavior data, e.g., loop detector, floating car data, GPS data, cellphone data. Experience with transport
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technology development. 2) Single-cell NMR spectroscopy. Our group aims to develop NV-based NMR spectroscopy on the single-cell level [2, 3] within an ERC starting grant. In order to achieve the necessary