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. The Sarantopoulos Lab is seeking a B-cell enthusiast. We are using primary patient samples and mouse models to understand the role of B cells in anti-leukemia/tumor responses. For over a decade, the lab
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cryo-EM workflow, including sample preparation/freezing, data collection, processing, and atomic model building. Biochemical/Biophysical Characterization: Managing protein engineering (cloning
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researchers and physicians work together to solve important clinical problems. The current and prior work of our team includes the development and evaluation of foundation models as well as deep learning
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mammalian cells, measurement of biomolecular interactions using Biolayer Interferometry or surface plasmon resonance, structural determination using single-particle cryo-EM analysis, and atomic model building
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Development of next-generation technologies for spatial epitranscriptomics Discovery of novel m6A readers, repelled proteins, and regulatory mechanisms controlling gene expression in cancer We welcome
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-epithelial interactions. The role employs a multi-modal research approach spanning genetically engineered mouse models, histopathology, mouse and human organoids, CRISPR-Cas9 gene editing, single-cell
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, patient screening and enrollment, REDCap and database management, and data cleaning and analysis. Support for machine learning model development. Preparation of abstracts and manuscripts, and assistance
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or at a designated assignment location. Be Bold. In this position, you will Study skeletal muscle biology and function in regulating other tissues, using cellular, molecular, and model animal (transgenic
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osteoarthritis (PTOA)-associated joint degeneration and pain. A PhD is required Prior experience working with murine models of PTOA-associated cartilage catabolism and pain using pharmacologic treatments Onsite
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for genomics (e.g., generative models, transformers, agentic workflows) and/or statistical learning (e.g., network & spatiotemporal modeling, functional/longitudinal data, time-series). Analyze single-cell