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further both professionally and personally in an interdisciplinary setting. Position The DWI is looking for a Postdoctoral researcher to develop new granular biomaterials for tissue engineering purposes
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PhD in Vascular Biology, Neuroscience, Molecular Biology, Computational Biology, or a related field Expertise in single-cell and spatial omics analysis (scRNA-seq, ATAC-seq, CUT&RUN, MERFISH, Visium
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researcher position is available at the Liesz-Laboratory at the Institute for Stroke and Dementia Research, Munich. Our group investigates how sterile tissue injuries such as stroke or myocardial infarction
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these emergent processes and is looking for a PhD student / PostDoc (f/m/d) The Mission Understanding how multicellular systems organize themselves into tissues is a central challenge in modern biology and
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DWI-Leibniz-Institute für Interaktive Materialien e.V. | Aachen, Nordrhein Westfalen | Germany | about 2 months ago
to develop further both professionally and personally in an interdisciplinary setting. Position The DWI is looking for a Postdoctoral researcher to develop new granular biomaterials for tissue engineering
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Deutsches Zentrum für Neurodegenerative Erkrankungen | Bonn, Nordrhein Westfalen | Germany | 2 months ago
, immunostaining of cells and tissue, genetic engineering of neurons by vector design and cloning, virus-based infection techniques, light-based manipulation of neuronal activity, and electrophysiology High degree
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characterized. Researchers investigate the factors influencing the process chain and properties. In addition, the interaction of material and tissue is studied in the laboratory and at the synchrotron
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functional and phenotypic assays on human T cells (in vitro and ex vivo) Engineer T cells using mRNA delivery platforms via lipid nanoparticles Characterize T cell subsets using multiparametric flow cytometry
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are supported by the platforms for 1) opsin engineering, 2) gene transfer, 3) disease models, 4) immune-phenotyping and 5) development of medical devices. The EKFZ relies on a close interdisciplinary
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generation of stem-cell derived models, these platforms open new avenues to systematically explore tissue self-organization and disease mechanisms. The group of Prof. Bausch is establishing an automated cell