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. or MD/Ph.D. scientist to join our team as a postdoctoral research scholar. We investigate the mechanisms behind corneal endothelial homeostasis and disease. We use mouse models, bioinformatics, and cell
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The Section on Molecular Neurophysiology and Biophysics at the Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD), National Institutes of Health (NIH), in
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to use cutting-edge tools such as single cell genomics, epigenomics, high-resolution microscopy, novel transgenic mouse models, 3D organoid in vitro models, and customized bioinformatics pipelines
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Carl von Ossietzky Universität Oldenburg | Oldenburg Oldenburg, Niedersachsen | Germany | 5 days ago
the COCH gene, which leads to progressive hearing loss and vestibular dysfunction. Using an integrated cross-model approach spanning mouse models, longitudinal patient cohorts, and human inner ear organoids
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mouse models of cancer. The project will use molecular biology, protein biochemistry, and enzyme assays to further characterise this agent and understand its mechanism of action. You will manage your own
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trafficking, and copper homeostasis in neuronal systems. This position requires a scientist with advanced technical expertise in the Hoffman laboratory’s core experimental platforms and biological models
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and animal experiments examining vascular smooth muscle cell (VSMC) phenotypic reprogramming and its role in the pathogenesis of atherosclerosis. They will execute advanced molecular and genomic
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at Michigan State University (Lansing, MI). The Rhee lab combines computational and experimental approaches to reveal molecular mechanisms underlying adaptive strategies in plants (https://www.rheelab.org
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Mechanisms and models of immune suppression and metastasis in cancer A postdoctoral research position supported by long-term federal funding is available in the laboratory of Marcus Ruscetti, Ph.D
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immunology, molecular biology, or similar Excellent written and spoken English Additional qualifications for the position are: You have worked with autoimmune models You have demonstrated ability