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based on an individual-centered spatial analysis approach (geomatics) using AgentBased Modeling to model mobility and its evolution. The postdoctoral researcher will intervene in the second phase
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and the endoplasmic reticulum. The project will combine approaches in cell biology, biochemistry, and advanced imaging. The candidate will contribute to the development and optimization of experimental
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Description The selected candidate will join the team studying the signaling pathways responsible for the assembly of nuclear pore complexes during the cell cycle in healthy and diseased cells, in
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methods for single-cell data analysis (tools developed by the team : https://github.com/cantinilab ). Single-cell high-throughput sequencing, extracting huge amounts molecular data from a cell, is creating
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on a unique cohort of 1,750 human liver samples and 400 blood samples and integrates high-resolution genomic approaches (ultra-deep WES, ddPCR, single-cell RNA-seq, spatial transcriptomics). Main
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the metabolic properties of osteoclasts during development and aging using preclinical models with targeted alterations in specific metabolic pathways. - To implement single-cell biology approaches and
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a model liquid metal battery (LMB) cell and characterize its electrochemical properties. LMBs consist of three superimposed liquid layers: a molten salt (electrolyte) sandwiched between two liquid
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the job funded through the EU Research Framework Programme? Horizon Europe - ERC Is the Job related to staff position within a Research Infrastructure? No Offer Description All eukaryotic cell
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alternatives to conventional cell therapies, particularly because of their delivery capabilities and immunomodulatory and regenerative properties. The present project aims to develop an innovative EV-based
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analysis. - Treat human and mouse cell cultures in vitro. - Receive training in the use of the cold plasma source from physicists. - Liaise with our German colleagues regarding the shipment of biological