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postdoctoral fellow who will conduct innovative cancer research using functional studies with 3D culture models and organoids. Identify the underlying mechanisms using cell biology and molecular biology
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. The Lindberg lab explores smart chemical and biological toolkits for biofabrication of advanced 3D-models, organoids, and injectable therapies. Ongoing projects aim to advance treatments for musculoskeletal
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will involve primary mouse and human stem cell sorting, multi-color flow cytometry, mouse disease models, human patient samples, 3D bone marrow organoid models, single-cell RNA-Sequencing, and general
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cancer progression, metastasis, organ development, and tumor-microenvironment interactions. Establish and maintain 2D and 3D cultures, including multicellular co-cultures, organoids, and matrix-embedded
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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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, and transcytosis in the context of malaria immunology. Develop and optimize 2D and 3D endothelial-based assays to evaluate molecular modifiers of IgG handling and to investigate mechanisms
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, and other genetic approaches to establish mechanistic causality. • Perform 2D and 3D cell-culture, spheroid, organoid, and tumor–immune co-culture experiments. • Perform T-cell functional studies
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protein expression and purification, biochemical screening assay development, computational structural modeling, cell-based antiviral validation studies, and exposure to preclinical small-animal research
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and evaluating efficacy in animal models. The selected candidate will develop 3D biomodel of the human nasal cavity based on imaging data obtained from human diagnostic scans. He/she will also
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: Research and Lab Operations Design and Fabrication: Lead the development and optimization of cardiac patches and injectable biotherapeutics using advanced biomaterials and nanovesicle technologies. Animal