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to propose a new method of producing a molecule from the corticosteroid family by adopting an innovative approach combining an original and sustainable synthesis route with a production method based on
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fluorination reactions, addressing critical challenges in energy storage, pharmaceuticals, and agrochemicals. By combining experimental synthesis, in-situ characterization, and DFT-driven computational design
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probe flavin chemistry using a powerful combination of approaches: the design of biomimetic flavin models (lumiflavin-based systems), detailed mechanistic studies in solution, and state-of-the-art gas
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motivated postdoctoral researcher to develop and apply imaging-based and computational approaches to identify predictive nuclear signatures of cell fate. The project combines experimental and quantitative
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to characterize new mechanisms of epigenome stability, combining experimental and computational analyses. Research Environment The laboratory is part of the Unit of Genome Integrity and Cancers (UMR9019
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personalized immunotherapies for cancer patients with brain metastasis. Our group works at the interface between immunology and cancer biology combining the use of preclinical models of cancer and human samples
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dynamics during regeneration, aging, and cancer, and how these processes can be modulated. Our research is primarily conducted in vivo. We combine genetic mouse models (lineage tracing, conditional
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recent PhD in Chemistry, combining: • Strong theoretical and practical expertise in organic/organometallic synthesis (laboratory experience required). • Scientific curiosity for interdisciplinary
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), combining state-of-the-art in vivo approaches with quantitative data analysis. About the lab and environment The Rebola Lab (https://therebolalab.org ) studies how variability in synaptic function across
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the development and combination of the different tools for Raman and synchrotron X-ray spectroscopy (diamond-anvil cells, fused silica capillaries, and hydrothermal reactors), the solubility, molecular speciation