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proteomics, transcriptomics, collected from state-of-the-art microfluidic lymph node on-a-chip systems used to study infection initiation and immune response. The postdoc will be co-mentored by
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access to a rigorous, well-funded, inclusive, and highly collaborative research environment with state-of-the-art core facilities and opportunities to develop independent expertise across multiple
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access to state-of-the-art facilities. Join us in our mission to advance our understanding of alveolar development, homeostasis, regeneration, and pathology. Your valuable contributions will significantly
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through discovery, education, and clinical impact. You will have access to state-of-the-art imaging, computational, and electrophysiological resources while working alongside experts in systems neuroscience
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administered prophylactically, and/or HIV vaccines when administered therapeutically in combination with novel immunotherapies. The Williams lab has state-of-the-art equipment for single cell omics assays and
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to work alongside leading scientists and clinicians in both basic and translational research. You will benefit from extensive mentorship, access to state-of-the-art research resources, and meaningful
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environment at Duke University with access to outstanding resources, state-of-the-art core facilities, and opportunities for scientific and professional development. For more information about our research
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translational research, we collaborate with multiple labs in DHVI and beyond to apply insights from structural biology to vaccine design. We have state-of-the-art facilities that include tissue culture labs
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intellectually stimulating environment at Duke University with access to outstanding resources, state-of-the-art core facilities, and opportunities for scientific and professional development. Applicants should
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resistance using genetically engineered mouse models, patient-derived models, organoids, and cell culture systems. Apply state-of-the-art experimental approaches that may include mouse genetics, molecular