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polymer additive chemistry. A more recent focus of the group is the development of sustainable polymer and additives. To strengthen activities in this area, we investigate development of functional covalent
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background Prof. Dr. Nicola Zamboni’s team studies how metabolism functions and is regulated. The group focuses on systems in which metabolism or metabolites influence phenotypic differentiation and biomedical
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biology. The project aims to uncover how mechanical properties, forces, and physical phenotypes integrate with molecular networks to regulate the function of complex cellular systems across multiple
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. Our group is interested in the mechanisms which contribute to the pathogenesis of chronic intestinal inflammation and colorectal cancer (CRC). A particular focus of our work are host-microbial
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design (TCAD) tools should operate at the ab-initio and quantum mechanical level. Moreover, they should capture the interplay between electrical (voltage-induced currents), thermal (excitation of crystal
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assays, typically based on fluorescence mediated by biosensors or (bio)chemicals Characterization of assay performance using lead strains Execution of large-scale screening campaigns with up to 1E6 variant
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candidate will work closely with wet-lab scientists and will play a central role in the development, implementation and application of bioinformatics pipelines for gene expression analysis, with a particular
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. Recent breakthroughs in cancer neuroscience have revealed that tumor cells integrate into neuronal circuits, forming functional synaptic connections that drive proliferation, invasion, and therapy
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We offer you You will have access to state-of-the-art research equipment in metabolomics, cell biology, time-lapse microscopy. You will work in a dynamic and highly interdisciplinary team including
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performance across development. Possible research topics within this position include, among others, “Embodied Learning", physical activity and sport in Developmental Disorders, and the cognitive effects