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lead the development and application of advanced microscopy techniques, microfluidic approaches, and single-cell analysis methods to investigate quiescence at individual cell and population levels. Where
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molecular biology technics. Furthermore, we developed a novel co-culture model inducing robust primary CLL cell proliferation (~50%) in vitro (Hoferkova et al, Leukemia, 2024). We aim to utilize this game
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will continue to investigate human brain development with a focus on stem cell lineages and synaptic diversity. See https://scholar.google.com/citations?user=09RosEoAAAAJ (link is external) for a
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the cellular context. However, current applications of in-cell NMR remain largely confined to asynchronous, 2D monocultures of immortalized or cancer-derived cell lines. This narrow experimental window limits
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in person in São Paulo and involves single-cell and spatial transcriptomics analysis, integration of multi-disease datasets, investigation of cell–cell communication, and the development
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Inria, the French national research institute for the digital sciences | Palaiseau, le de France | France | 26 days ago
of the scripts and software prototypes developed, and producing the associated technical documentation. Main activities: Analysis of mobile mobility applications, including permissions, declared functionalities
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Experience with flow cytometry, qPCR, ELISA and/or immunostaining/microscopy as part of cell characterization and quality control. Experience in method development, protocol optimization, and drafting/updating
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in a stimulating and supportive, international research environment Support in developing and writing independent postdoc fellowship applications (such as, EMBO long-term fellowship, Marie Sklodowska
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. The specific goal of this work is to unravel the molecular mechanisms of blood cell development using state-of-the-art technologies such as CRISPR screens, proteomics, and multi-omics approaches. About you: You
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cells, tissues, and multicellular systems (e.g., organoids, spheroids) Development and application of nanotechnological platforms for force sensing, manipulation, and mechanical phenotyping Advanced cell