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studies investigating target-directed microRNA degradation (TDMD) in T-cell acute lymphoblastic leukemia Establish, optimize, and maintain T-ALL experimental systems, including cell line, primary patient
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carrying out and optimizing research methods, writing SOPs, and passing on know-how to the research group; and Mentors students and/or postdoctoral researchers on research projects, including meeting one
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research projects focused on cellular immunology and host responses to infection. · Develop and optimize advanced mammalian cell culture systems, including complex 2D and 3D cellular models. · Perform
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collaborative research projects focused on cellular immunology and host responses to infection. · Develop and optimize advanced mammalian cell culture systems, including complex 2D and 3D cellular models
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research • Deep learning and predictive modeling • Natural language processing and large language models for biomedical data • Drug response prediction and treatment optimization • Biomedical knowledge
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replication, pathogenesis, and host-fungi interactions to inform rational drug design and optimization of antifungal therapeutics. Collaboration and Project Management: Coordinate with multidisciplinary teams
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collaboration and a life course perspective, CALC strives to optimize the aging experience for diverse populations. By joining CALC, the successful candidate will become part of a dynamic community dedicated to
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resistance, while contributing to the laboratory's overall scientific vision. Design, execute, and optimize experimental approaches using state-of-the-art techniques, including but not limited to molecular
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and optimize novel catalysts, conduct materials characterization and catalytic testing, analyze reaction mechanisms, prepare technical reports, publish high-impact journal articles, develop
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chemistry, and materials science. The successful candidate will lead the optimization of this printing platform, characterize the fundamental reaction kinetics, and validate its translation into high-impact