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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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microscopy, HSC transplantation and assays of multiple organs. Required skills: PhD in hematology, hematopoietic stem cell biology, aging biology or a related field At least one first-author publication in a
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of Experimental Medical Science within the Faculty of Medicine is currently conducting research on the mechanisms underpinning the epigenetic control of the repetitive genome in stem cell models of early human
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system (CNS). We aim to uncover the principles of cell fate regulation during development and repurpose them for regeneration. We use a multidisciplinary approach that involves glial and stem cell biology
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differentiation of pluripotent stem cells into retinal cells and tissues. The work will specifically employ scalable culture modalities and bioreactors. This work will be undertaken in close collaboration with
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investigating tertiary lymphoid structures in inflammatory diseases, interorgan endocrine signaling, the comparative niches of stem cells across tissues, or mechanisms of transcriptional regulation such as
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investigating tertiary lymphoid structures in inflammatory diseases, interorgan endocrine signaling, the comparative niches of stem cells across tissues, or mechanisms of transcriptional regulation such as