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Field
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they promote translocation biogenesis, and testing them in preclinical models. The work combines CRISPR engineering of B cells, protein biochemistry and genomics approaches including RT measurements, replication
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and machine learning with density functional theory, or other similarly relevant computational methods, to advance understanding of materials design predictions for 2D and 3D systems with electronic and
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disease Utilize advanced research techniques, including: In vivo mouse genetics Live imaging 3D organoid models Functional screening approaches Next-generation sequencing technologies Analyze tissue
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 12 hours ago
, polymers, hydrogels, and wearable and implantable biosensors. Experienced in applying these materials to three-dimensional (3D) cell culture models and translational diagnostics or similar. Preferred
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vertically. The project combines urban studies, remote sensing, 3D modelling, environmental science, architecture, political science and participatory approaches to investigate the environmental, social and
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-dimensional documentation and recording of archaeological materials and structures using high-precision 3D scanners and in processing digital models. • Track record of scientific publications in prehistoric
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antigens presented by MHC molecules. This curiosity-driven project develops cutting-edge AI technology for 3D TCR–pMHC modeling to improve neoantigen identification, TCR specificity prediction, and TCR
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. Prior experience with animal models, 3D culture systems and/or computational analyses will be an advantage. The salary will be according to EPFL standards. Informations Formal applications should be
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the impact of persistent chemical contaminants on immune tolerance mechanisms in type 1 diabetes using 3D models based on perinatal stem cells and human pancreatic islets" Type 1 diabetes (T1D) is an
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surveillance during early colorectal tumorigenesis. • Generate and manipulate human and mouse colorectal adenoma cells and organoid models. • Use CRISPR/Cas9, inducible gene-expression systems, miRNA inhibitors