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, differentiation, stress response, and apoptosis, yet it remains unclear whether these processes follow conserved organizational principles across cell types and experimental systems. Large-scale fluorescence
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level training within the past 5 years. Experience in immunotherapy and cell and animal models of leukemia or cancer are preferred. The candidate is expected to be able to work independently and as part
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) lung injury. We employ complementary in vivo (mice) and in vitro (cell and tissue cultures) models to address mechanistic and translational questions in lung biology. My lab offers a unique situation for
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Argonne National Laboratory, HEP High Energy Physics Division, and University of Illinois Urbana-Champaign, High Energy Physics Position ID: Argonne National Laboratory-HEP High Energy Physics
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interdisciplinary and collaborative team of engineers, analysts, and software developers. GAC works to develop and apply state-of-the-art energy system modeling techniques, software, and simulations for breakthrough
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the gap between cell biology and clinical translation, and is fully funded, collaborative, and actively publishing. You'll develop in vitro and in vivo models focused on neural repair, tissue regeneration
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of cell and molecular biology approaches, including high-throughput functional genomics and drug screening, gene expression and analyses in tissue culture cells, murine models of cancer, and genomics
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of stems cells and primary lymphocytes and should also have extensive experience with genetic editing techniques, regulatory T-cell phenotyping and functional assays, as well as in vivo murine models
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | about 2 months ago
will work Christopher Knittel (Sloan School of Management and CEEPR). The project will develop empirical models of supply, demand, and international trade conditions for minerals required for the energy
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the pathogenesis and chemoresistance of AML. To follow this question a broad number of in-vitro- and in-vivo-models are investigated. The final aim of our studies is to translate the experimental findings into novel