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Field
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using a novel 3D bioprinted human skin model to study tumour–microenvironment interactions. By combining tissue engineering and cancer biology, the project contributes to a deeper mechanistic
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first author), with strong ML/AI components include: https://www.biorxiv.org/content/10.64898/2026.03.04.709438v2 https://link.springer.com/article/10.1186/s13059-024-03309-4 https://www.cell.com/cell
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addressed by harnessing advances in tissue engineering, via the design of new organ-on-chip models that mimic features and functions of human lymphoid tissues in vitro. In this project, we will take advantage
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established tissue structure (tumor, Langerhans islet); the so-called “organ on chip”. In these systems, the binding of conjugates to target receptors, the release of growth factors/drugs and the efficacy
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skills and critical thinking. Experience working with cell culture, tissues and/or advanced experimental models of disease. Experience in relevant immunological, molecular and cellular techniques such as
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approaches. Job Description Primary Duties & Responsibilities: Information on being a postdoc at WashU in St. Louis can be found at https://postdoc.wustl.edu/prospective-postdocs-2/ . Trains under
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of the nanobots and their ability to navigate viscous biological barriers (such as synovial fluid). In vitro and in vivo studies on the efficacy of the developed nanobots for targeted delivery and tissue
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well as exploring the application of research findings to advanced 3D models such as organoids and 3D bioprinted tissues Learning about high-content, automated phenotypic drug screening pipelines against high
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Posting Summary Logo Posting Number RTF00185PO26 USC Market Title Post Doctoral Fellow Link to USC Market Title https://uscjobs.sc.edu/titles/156387 Business Title (Internal Title) Post Doctoral
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working under the supervision of Prof Chris Buckley and will closely collaborate with other team members in Oxford such as Tissue Biology Lead Prof Mark Coles and Computational/Bioinformatics Lead Dr