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using murine models and iPSC-derived human neurons. The Postdoctoral Associate will perform small animal surgeries, molecular, cellular and electrophysiological experiments. In addition, the Postdoctoral
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tools for protein engineering. Develop, organize, and maintain reproducible computational pipelines for model execution, data processing, and analysis. Maintain well-structured project directories
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the repair and preventative maintenance of lab equipment. Keeps accurate records of medical waste, stores carcinogenic chemicals in a safe place, and models good laboratory safety procedures in the laboratory
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preventative maintenance of lab equipment. Keeps accurate records of medical waste, stores carcinogenic chemicals in a safe place, and models good laboratory safety procedures in the laboratory at all times
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cell therapy for cancer, including tumor-infiltrating lymphocytes and gene-engineered T cells. Active areas of research include T cell receptor discovery, membrane-tethered cytokine technologies, tumor
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systematically validate tissue- or cell-specific peptides. By combining intravenous administration of phage-displayed peptide libraries in human and model organism subjects and next-generation, high-throughput
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Associate will be responsible for the design, analysis, interpretation, and presentation of experiments regarding the study of the disease mechanisms of various brain disorders using murine models and iPSC
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for cancer, including tumor-infiltrating lymphocytes and gene-engineered T cells. Postdoctoral Associates are expected to establish an innovative, collaborative research program addressing important and
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designed to help address a critical element of the University’s strategic vision, namely enhancing course scheduling to help reduce student inter-campus bus travel and help ensure that students can register