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Medicine (https://www.irem.uzh.ch/en.html) combines cutting-edge stem cell and bioengineering research to advance regenerative therapies. Based on bio-inspired principles and novel biomimetic technologies
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independently as well as in collaborative research efforts. Required Qualifications PhD in Cell Biology, Developmental Biology, Biomedical Engineering, or a related field Proficiency in cell culture techniques
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in mice subjected to high-fat diets and sepsis models. Metabolic characterization of colonies. ➢ Flow cytometry and spectral cytometry: Preparation of primary samples and/or cell lines and animal
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of miniplectins in cultured cardiomyocytes. Using advanced fluorescence microscopy and biochemical approaches, the project will assess the ability of mini-plectins to reconstitute cytoskeletal networks, cell–cell
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one of the drivers of cellular transformation and cancer development. Tumor suppressor p53 prevents proliferation of cells with damaged DNA and eliminates them either by programmed cell death or by
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experience with existing single-cell methods and software would represent a strong advantage. Excellent communication skills and team spirit, and an ability to work in autonomy are essential. Fluent English
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tissue using genetic mouse models, functional screens, and single cell and spatial omics technologies. More details about the laboratory: https://www.ibt.cas.cz/en/research-laboratories/laboratory
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cell lines for assaying neuronal activity in response to pharmacologic reagents Maintain mammalian cell cultures and stocks Perform quantitative analyses and communicate findings through reports and
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Lymphoid-myeloid crosstalk and cooperation are essential for host protection against infection. Involving multiple signaling pathways, this communication is thought to involve sensing of infection by myeloid
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The Ohio State University Wexner Medical Center is committed to enhancing the quality of the experience provided to our patients. Education, communication and training is led by the Lead Mobility Aid