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biology. The project aims to uncover how mechanical properties, forces, and physical phenotypes integrate with molecular networks to regulate the function of complex cellular systems across multiple
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Postdoctoral Researchers to study the molecular mechanisms linking DNA replication, chromatin dynamics, and genome stability in cancer. Scientific Background DNA replication is essential for cellular
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and molecular mechanisms underlying phenotypic variability in quiescent cell populations and their impact on adaptation, antifungal resistance, and population dynamics. The successful candidate will
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), focused on identifying shared cellular and molecular signatures across autoimmune and inflammatory diseases, including lupus, arthritis, Crohn’s disease, psoriasis, and ulcerative colitis. The work is fully
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layers during the wet/dry cycles induced by the fuel cell operation. Conversely, strong mechanical interfaces will lead to completely bonded layers. While numerous studies are available on the effect
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are lacking. The project In this postdoctoral research project, you will chart the molecular and cellular mechanisms active in the airway wall of patients with severe asthma. You will compare these cell-type
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from the lab has identified previously unrecognized cell-intrinsic mechanisms that regulate replisome dynamics and fork speed, establishing replisome velocity control as a key genome surveillance
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postdoctoral position within the ERC-2024-STG-funded project 1101165141-MANAGE HSC. This project combines stem cell and stem cell niche biology, bone marrow/niche engineering, and cell mechanics to investigate
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will continue to investigate human brain development with a focus on stem cell lineages and synaptic diversity. See https://scholar.google.com/citations?user=09RosEoAAAAJ (link is external) for a
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to elucidate the molecular mechanisms underlying tumor-nerve interactions in human colorectal cancer (CRC). To achieve this, we will integrate data from diferent omics-technologies with a range of cellular and