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, policy, energy conversion, new business models, techno-economic and life cycle analyses, machine learning, optimization, AI, intelligent networks, among others. The PDF will join a project in collaboration
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understood, modeled, and ultimately reversed or rebuilt using bioengineering and synthetic biology approaches. The successful candidate will: Investigate mechanisms of T-cell development, aging, and thymic
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-cell compartment, develops and deteriorates with age, and how these processes can be understood, modeled, and ultimately reversed or rebuilt using bioengineering and synthetic biology approaches
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in molecular biology and bioinformatics, with a focus on infectious disease and cancer models. Candidates must have a PhD in Immunology, Molecular Biology, Microbiology, or Vaccine Research. The ideal
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members on combinatorial CRISPR screen strategies for target credentialing in cancer models Computational analysis of screen data Design and execution of combinatorial target validation experiments in PDXO
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healing. The Granville research program spans basic molecular biology and biochemistry through to target validation, proof-of-concept in animal and human models, and collaborations with clinicians and
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human models, and collaborations with clinicians and industry. Dr. Granville’s laboratory has expertise in established mouse models of chronic inflammatory diseases related to wound healing, aging, injury
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pharmacokinetic modeling. Our research team is multicultural and diverse, and provides unique opportunities for our trainees and researchers to freely explore creative ideas in supportive environments. The clinical
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theranostics radiopharmaceutical therapies (RPTs) via advanced computational oncology and pharmacokinetic modeling. Our research team is multicultural and diverse, and provides unique opportunities for our
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computational oncology and pharmacokinetic modeling. Our research team is multicultural and diverse, and provides unique opportunities for our trainees and researchers to freely explore creative ideas in