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research integrates fundamental immunology, functional genomics, and translational cell engineering to uncover mechanisms of immune regulation and translate these discoveries into next-generation
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-herpesviruses, particularly Epstein-Barr virus (EBV), Kaposi sarcoma-associated herpesvirus (KSHV), and rhesus lymphocryptovirus (rhLCV). Our work integrates molecular virology, vaccine engineering, immunology
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successful candidate, you will: Collaborate closely with computational scientists, experimental biologists, engineers, mathematicians, and medical oncologists to design and execute integrative cancer research
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tissue culture, animal models, high-parameter flow cytometry, spatial transcriptomics or proteomics, and cell gene engineering techniques is desired, but not required. This is an outstanding opportunity
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the meditope cyclic peptide technology and CRISPR/Cas9 modification of CAR T cells for improved functionality.
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multiple PET/CT scanners, and radiation delivery systems including PET-guided radiation therapy. Your qualifications should include: A PhD in Physics, Engineering, Computer Science, or related field
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aging alters epithelial fitness, cell competition, clonal selection, and early tumor evolution. Engineered culture microenvironments, primary human mammary epithelial cells, and cell-based functional
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cells with high-throughput screening and protein engineering approaches developed in the lab, and develop novel cancer immunotherapies targeting metastatic cancer cells. Cancer immunotherapy is one
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analyses to directly inform how tumors evade treatment. You will collaborate with computational scientists developing predictive models, contributing genomic analysis, workflow engineering, biological
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science is especially valuable due to the software engineering, algorithmic, and AI/ML components central to this role. Strong fundamentals in cancer biology and statistics are essential. Demonstrated