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suggesting candidate mechanisms of resistance. The project will combine complementary models and techniques, including co-transplantation of organoids in mouse models, in vivo CRISPR, single-cell RNA
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Description The goal of this project is to explore the effects of mechanical forces on the cell nucleus during epithelial-mesenchymal transition (EMT), a critical cellular process that occurs in both
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tissue function and repair. Our research seeks to uncover the cellular mechanisms that enable tissues to thrive, particularly under physiological and environmental challenge (see group website https
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of the “Cell Signaling and Pathogenesis” team: https://cimiparis.fr/equipes/robert-weil/ Where to apply E-mail [email protected] Requirements Research FieldBiological sciences » BiologyEducation
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/science.aea5113) Stockis J et al. Science Immunology 2024 (DOI: 10.1126/sciimmunol.adl1903) Schuijs MJ et al. Nature Immunology 2020 (https://doi.org/10.1038/s41590-020-0745-y ) Preferred skills/knowledge Cell
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Research Associate, Cellular and Molecular Medicine Posting Number req27032 Department Cellular & Molecular Medicine Department Website Link https://cmm.arizona.edu/ Location Tucson Campus Address 1501 N
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their website at https://www.naritalab.com/ Our laboratory investigates the biology of preneoplastic cell states, with particular interest in how changes in cell functional identity and plasticity are controlled
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? This project sits within a wider research programme investigating how mechanical forces shape vascular health and disease. The supervisory team combines expertise in vascular mechanobiology, endothelial cell
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the molecular mechanisms underlying olfactory orifice formation in zebrafish, focusing on the interactions between the olfactory placode and the overlying skin epithelium. A major objective will be to identify
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The University of Texas Southwestern Medical Center (UT Southwestern Medical Center) | Dallas, Texas | United States | about 19 hours ago
research, or therapeutic development. Research Focus The successful candidate will investigate the molecular and epigenetic mechanisms that regulate immune-cell behavior, with particular emphasis