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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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vegetative cells can tolerate severe desiccation and subsequently resume normal growth following rehydration. How a differentiated cell can undergo such an extreme physiological transition while preserving
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following rehydration. How a differentiated cell can undergo such an extreme physiological transition while preserving genome integrity, cellular identity and the capacity to reactivate gene expression
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immunology, with the aim of developing improved cell-based immunotherapies for the treatment of cancer. Our research focuses on rationally harnessing and programming the immune system’s ability to perform
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intracellular bacterial pathogen Chlamydia trachomatis maintains its intracellular niche and modulates host cell biology. The employment is full-time for two years with access on 1 Nov, 2026 or by agreement
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stimulating multidisciplinary research environment focused on regulatory mechanisms that enable cells to retain their identity.We employ Drosophila and human cell culture models, genomics, genetics and
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position within a Research Infrastructure? No Offer Description Are you interested in how stem cell metabolism contributes to aging? The failure to regenerate tissue with age is a major health issue. A
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we collaborate with universities and institutes in Europe, Asia, and North America. More information about the Division of Heat Transfer can be found here: https://www.ht.energy.lth.se/english/ COMPEL
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How do mobility systems respond when everyday travel is disrupted? How can we model who loses access, where, for how long, and under what conditions recovery is possible? We are looking for a
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: Integrated sensing and communication Cell-free massive MIMO beamforming, and MIMO algorithms Joint optimization of communication and computing resources Preferred qualifications A doctoral degree or an