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Field
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they can be harnessed for regeneration and repair. Our research integrates single-cell and spatial multi-omics, human developmental tissue, stem cell and organoid models, perturbation approaches, and in vivo
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repair. Our research integrates single-cell and spatial multi-omics, human developmental tissue, stem cell and organoid models, perturbation approaches, and in vivo models to uncover mechanisms controlling
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Paris, September 2026 Position: A post-doctoral position is available in the Guermonprez lab at Institut Pasteur Paris (“Dendritic cells and adaptive immunity” Unit, https://research.pasteur.fr/fr
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Rutgers Cancer Institute - Cancer Metabolism and Immunology | New Brunswick, New Jersey | United States | about 2 hours ago
publications: Nature Communications: 2025 , 16:1762; 2024 , 15:627, 137; 2021 , 12:3371; 2017 , 8:1823; 2014 , 5:5218 Nature Metabolism: 2022 , 4:1830 Cell Stem Cell: 2023 , 30:1520 J Clin Invest: 2023 , 133
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stress affects specific cell types in the nervous system and the gut, using human pluripotent stem cell (hPSC)-derived models of the enteric nervous system. Our work sits at the intersection of stem cell
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screening pipeline, from stem-cell engineering to data analysis Develop and test improvements in single-cell methods and vector design Apply the technology in steady-state and disease settings Analyse
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seeking a postdoctoral fellow to study the cell fate decision mechanisms in hematopoietic stem and multipotent progenitor cells using primary mouse and human bone marrow cells and patient samples. We study
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molecular structures during normal and leukemic stem cell differentiation. Integrated in the translational research environment at the Center for Hematology and Regenerative Medicine at the Karolinska
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under the guidance of the principal investigator. Projects will involve work with animal model and human patient sample experiments to investigate immune function in cell therapy and hematopoietic stem
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cell division counting in mice and humans to investigate the differentiation of individual stem and progenitor cells. In the longer term, our results will improve understanding of healthy hematopoieisis