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on the laboratory’s expertise in conditionally active small molecules, we aim to develop antibacterial compounds that are selectively activated in response to infection. The interested candidate will focus on synthesis
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project on critical metals from unconventional resources. The project goals are to evaluate the geochemical characteristics of potential feedstocks and develop extraction methods for resources such as rare
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of vaccine and therapeutic candidates currently being produced in Good Manufacturing Practice facilities for early phase clinical trials. Minimum Requirements: Education: PhD in Immunology, Data Science and/or
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join a world-renowned institution committed to innovation, collaboration, and excellence in education. You'll have the opportunity to make a meaningful impact on students' academic journeys while working
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-edge technologies, including genetically engineered mouse models, patient-derived models, single-cell and spatial genomics, organoid systems, and preclinical therapeutic studies. Learn more about our
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biology, and evolution. Learn more about our interests, motivations and discoveries: https://sites.duke.edu/silverlab/ . Conduct independent research activities under the guidance of a faculty mentor in
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elusive, in part due to our limited understanding of the mechanisms of bnAb induction during natural infection. Dr. Williams has been awarded a NIH UM1 grant to develop new vaccine strategies that can
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-throughput genomic screening approaches, primary cell culture systems, and animal models of influenza disease. For more information visit https://mgm.duke.edu/faculty-and-research/primary-faculty/nicholas