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As a member of a team of scientists in our In Vivo Pharmacology Cancer Cell Biology Group, you will play a lead role in using models of cancer to evaluate new drug candidates, mechanisms, and
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to facilitate data-rich experimentation. Enable use of digital tools for machine learning and self-optimization to enhance automation goals. Collaborate with internal and external stakeholders to implement
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mechanisms for neuroinflammation and novel targets and assets for the Discovery Neuroinflammation Group. The ideal candidate will have a diverse biology and immunology background and have a history of success
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-target profiling, protein interactomes, and investigation of drug mechanisms of action and resistance pathways. The successful candidate will participate on project teams, providing insight and technical
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Neuroinflammation Group. This role will involve; exploration of mechanisms contributing to neuroinflammation and neurodegeneration, identification of targets for modulating neurodegenerative diseases, and building
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engagement, off-target profiling, protein interactomes, and investigation of drug mechanisms of action and resistance pathways. The successful candidate will participate on project teams, providing insight and
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targets and drug-target mechanisms of action, will help to enable and narrow the definition of the required design elements. In additional to formulation, you will be responsible for material science and
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director to develop and apply interdisciplinary approaches to understand the mechanisms of action of different types of RNA-based viral vaccine drug substance and lipid nanoparticle drug products and
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Plan, execute and analyze in vivo pharmacology studies Characterize new in vivo mouse models, including syngeneic tumor and genetically engineered mouse (GEM) models, to study biologic mechanisms and
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. How You Will Achieve It Apply technical skills to projects/ assignments within own work group/project team. Undertake high quality scientific experimentation to further the development of API and/or