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attractive and modern workplace with access to the excellent equipment of the KIT and of the Fraunhofer IOSB, a varied work, a wide range of training opportunities, flexible working time models, an allowance
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Immunology and Computational Biology Reference number: 2025-0105 We are deploying advanced in vitro and in vivo model systems, genetic perturbations and single cell technologies with spatial readouts to study
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of a DFG-funded project. The project involves state-of-the-art preclinical cancer models and access to patient samples and primary cell cultures to elucidate the sex-biased differences in response
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' prognosis or treatment decisions. For modeling, we use both public and proprietary clinical and research data greatly enriched by our own repository of digital pathology images. A further focus lies on
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marine realms. For this, a suite of thematic VREs will be developed that allow an easy-to-use application of models on available and harmonized biodiversity and environmental data. Both projects provide
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Your Job: Synthesis and physicochemical characterization of energy materials or representative model systems Characterization of the structure of energy materials on the atomic, molecular and
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prescise molecular mechanisms underlying the tumorigenic effects of mutant IDH1 remain elusive. The successful candidate will use established in vitro and in vivo models of mutant IDH1 to assess the early
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-specific protein components, which are subsequently tested in relevant model systems. This includes plasmid design and cloning, as well as potential screening in cell lines or yeast and validation in primary
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to bridge the candidate’s interest and expertises with our current programs. Our current research programs intersect large-scale genetic analysis utilizing experimental models, spatial biology, single
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Your Job: Synthesis and physicochemical characterization of energy materials or representative model systems Characterization of the dynamical and structural properties of energy materials with a