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Field
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mechanisms • Extensive hands-on experience with murine models of liver injury, fibrosis, and regeneration, including tissue dissection and downstream analysis • Proficient in flow cytometry, including high
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-molecule super-resolution imaging, advanced lattice light sheet microscopy and other state of the art biophysical approaches to study molecular mechanisms of transcription, genome organization and bio
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the appointment. Ability to demonstrate professional competence in relevant research activities. Preferred Qualifications: Proficient in wetlab (cell culture, bench assays), dry lab (computational analysis), and
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grant proposals. Among the key duties for this position are the following: Conducts research experiments to understand the role and mechanisms of oncogenic and tumor suppressor enhancers as
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the appointment. Ability to demonstrate professional competence in relevant research activities. Preferred Qualifications: Proficient in wetlab (cell culture, bench assays), dry lab (computational analysis), and
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heavily on infectious disease mechanisms, with active projects centered on bacterial proteases that manipulate host pathways and large macromolecular assemblies involved in microbial metabolism
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to uncover immune-regulatory mechanisms with relevance to infection, vaccination, and chronic inflammation. Responsibilities: • Design and conduct in vivo experiments using murine models to study immune
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-reviewed technical journals, and collaborating on new funding proposals. Required and Preferred Qualifications A Ph.D. in mechanical engineering, architectural engineering, or closely related field is
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imaginative Postdoctoral Researcher to join our team investigating fundamental mechanisms of developmental biology. Our lab focuses on understanding cellular and molecular processes that drive
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investigates molecular and cellular mechanisms of pancreatic ductal adenocarcinoma (PDA) pathogenesis. The murine models of distinct genetic subtypes of pancreas cancer that we have developed form the basis