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molecular subtypes of CRC, and assess expression profiles via flow cytometry Perform in vitro studies using mouse- and patient-derived organoid models, as well as in vivo experiments employing state
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. The research group Molecular Modeling / Section III are currently looking for a committed PhD Student to start on 15/01/2026. PhD Student (m/f/d) The Leibniz Institute for Food Systems Biology at the Technical
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scientific support – ideally with you on board! RESEARCH PROJECT: Prof. Rutsch's research group is investigating the molecular basis, pathogenetic principles, and therapeutic options for ectopic calcifications
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–Ras signaling cascade Developing generative AI models for protein design within an existing multimodal framework integrating sequence, structure, functional, microscopy and molecular dynamics data
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systems and in vivo models in combination with cell state and mutation reporters and single-cell technologies with spatial readouts to study the impact of intestinal microbes and their metabolites on colon
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as host model (Bartfeld lab) Immune–Metabolic Adaptation in Pregnancy: Implications for Offspring Health (Diefenbach lab) Variant Surface Antigen Expression in chronic Plasmodium falciparum carriage
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, MATERIALS SCIENCE, MODELING AND SIMULATION, MOLECULAR SIMULATIONS, NUCLEAR WASTE MANAGEMENT, PLASMA PHYSICS, PHOTOVOLTAICS, SYNTHETIC FUELS AND GREEN CHEMICALS, SYSTEMS ANALYSIS, TECHNOLOGIES FOR THE HYDROGEN
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Leibniz-Institute for Food Systems Biology at the Technical University of Munich | Freising, Bayern | Germany | 30 days ago
interactions between the human organism and food components. To strengthen our research group Molecular Modeling / Section III, we are currently looking for a committed PhD Student to start on 15/01/2026
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organoid co-culture systems and in vivo models in combination with cell state and mutation reporters and single-cell technologies with spatial readouts to study the impact of intestinal microbes and their
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organoid co-culture systems and in vivo models in combination with cell state and mutation reporters and single-cell technologies with spatial readouts to study the impact of intestinal microbes and their