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-cell imaging and immunolabeling. These images will then be analyzed in 3D using automated methods. - Manipulate the physical constraints to which nuclei are subjected and compare transcriptional dynamics
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, the proteolytic mechanisms involved in dental pulp inflammation, particularly in various 2D/3D models. The postdoctoral researcher will produce bioactive protein fragments and characterise their roles in dental
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within the Solid-state Quantum Technologies team (S2QT – https://solidstatequantumtech-l2c.fr/ ) of the Charles Coulomb Laboratory in Montpellier. The doctoral work will be supervised by Vincent Jacques
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cells including macrophages). - Modelling of CKD-like vascular injury in 3D vascular organoids derived from induced pluripotent stem cells (iPSCs), exposed to phosphate, uremic toxins and pro-inflammatory
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dedicated computing resources (3D visualization workstations, GPU servers). The research will be conducted in close collaboration with Philippe Nghe's team (Laboratory of Structural Cell Biology at École
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punctual mobilities within the partners of the project consortium. The PhD task will be dedicated to the 3D printing of nano-structured polymer materials by photo-Polymerization Induced Microphase Separation
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strains) and assess their role in CaCO3 dissolution, before and after pressurisation. • Develop and run multiphysics numerical models in COMSOL (3D geometries from tomography, transport–reaction coupling
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have access to state-of-the-art facilities, including cleanroom microfabrication, laser micromachining, 3D printing, advanced microscopy, and numerical modeling tools. The project benefits from a close
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and physicists, supported by European funding (ERC-Synergy). Modelling of cell migration in 3D without adhesion Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR168-KHEDIN-017
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printable internal architectures, and we will experimentally test these new shape-changing materials (3D scanning, mechanical testing). https://blog.espci.fr/benoitroman/phd-position-depressure-activated-pro