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the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description - 3D iPSC cell culture - Differentiation
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Cellular and Molecular Therapeutics Branch, NHLBI, NIH | Bethesda, Maryland | United States | about 2 months ago
to join our laboratory in developing next-generation gene and cell therapies for sickle cell disease, β-thalassemia, and other inherited blood disorders. Our research spans genome editing, stem cell
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that establish pancreatic beta-cell identity also determine lifelong resilience or vulnerability to disease. Current projects investigate how disrupted DNA methylation and chromatin regulation can drive genomic
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and develop advanced fluorescence and imaging approaches, including FRET-based assays, fluorescence lifetime imaging (FLIM), live-cell microscopy, site-specific bio-orthogonal protein labelling by
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the Francis Crick Institute. This initiative brings together world-class experts in evolutionary genomics, stem cell biology, and computational science to unravel one of the most fascinating puzzles in
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Johns Hopkins Medicine - Laboratory of Human Biomimetics | Saint Petersburg, Florida | United States | about 1 month ago
therapeutic response using approaches that may include primary human immune-cell culture, flow cytometry, cytokine profiling, functional tissue assays, and single-cell analysis. Relevant backgrounds include: T
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encephalitis, and related neurological disorders. The project combines human induced pluripotent stem cell (hiPSC) technology, brain organoids, genome engineering, advanced imaging, systems immunology, and high
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foundational methods for integrating single-cell and clinical transcriptomes; and train, fine-tune, and validate deep learning models using multi-omics and imaging data to predict clinical outcomes such as
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or more of the following areas: robotic mobility or manipulation, embodied intelligence, self-reconfigurable or compliant robotics, force or tactile sensing, intelligent control, multibody modeling
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that favor epithelial cells harboring somatic mutations commonly associated with breast cancer. This work will integrate computational modeling with experimental cell and tissue biology to investigate how