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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description There is a need to develop optimized Mixed Matrix Membranes (MMMs) based on highly
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in process engineering, particularly membrane separation, and in numerical flow simulation. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7274-SABROD-003/Default.aspx Work
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at membrane contact sites (MCSs) between the endoplasmic reticulum and endolysosomal compartments, more specifically lamellar bodies (LB), which are responsible for pulmonary surfactant biogenesis in type II
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researcher to join our team and contribute to a project, dedicated to the study of elastic wave transport in microstructured silicon membranes. The researcher will be primarily responsible for the design and
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fundamental in cell biology, complementing membrane-bound organelles in the organization of cellular functions. Biomolecular condensates are mesoscopic membrane-less organelles that allow the dynamic
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"Physics of Cells and Cancer" at the Institut Curie, in the team of P. Bassereau (Membranes and Cellular Functions). PushingCell is funded by the ERC and aims to identify the biological and physical
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fundamental in cell biology, complementing membrane-bound organelles in the organization of cellular functions. Biomolecular condensates are mesoscopic membrane-less organelles that allow the dynamic
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that finely regulate neurosecretion remain poorly understood. Membrane Contact Sites (MCSs) have emerged as essential regulators, orchestrating both lipid transfer and the control of calcium flux between
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the comparative evolutionary analysis of canonical translocation pathways for mitochondria (TOM/TIM for translocase of the outer/inner membrane) and chloroplast (TOC/TIC for translocon on the outer/inner
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., Vilotte, A., Schmitt, C., Gunes, D., & Bodiguel, H. (2024). Spontaneous Structuration of Biohydrogels by Membrane‐Free Osmosis. Advanced Functional Materials, 34(34), 2400888. Vilotte, A., de Loubens, C