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-dimensional scaffolds using FDM 3D printing for cell culture applications. Develop and optimize biomimetic materials with controlled mechanical and biochemical properties. Functionalize scaffolds with
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the experimental and bioinformatics analysis components—is essential. Proficiency in classical genomics techniques (RNA-seq, ChIP-seq, etc.) Proficiency in mouse ES cell culture and in vitro differentiation
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Information Eligibility criteria Education: PhD in tissue engineering, bioengineering or cell biology. Technical skills: experience in cell culture and organoid production, immunolabelling, PCR. Microfluidics
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approximately 170 researchers working on the mechanics and physics of materials, structures and geomaterials, with applications notably in civil engineering, geotechnics, the environment and energy. Within
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, the successful candidate will integrate phenotypic characterization, genetic perturbation, and comparative genomic analyses. * Culture and handling of clinical *Escherichia coli* strains. * Construction
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culture, is also expected. Proficiency in molecular cloning and the generation of recombinant plasmids would further strengthen the candidate's profile. Experience with optical microscopy techniques
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culture, DNA extraction, MinION sequencing, analysis of strain viability and fertility) -Scientific publication writing. -Implementation of new approaches in evolutionary genomics. -Implementation
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motifs; - establish, optimize, and apply quantitative protein-interaction assays; - perform mammalian cell culture, molecular cloning, mutational analysis, recombinant protein work, and fluorescence
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, tensile testing, etc.) CERMAV fosters a strong interdisciplinary culture, combining expertise in chemistry, physicochemistry, biochemistry, and materials science. The center is internationally recognized in
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-on experience with protocols for inducing whole-genome duplication (WGD) - Experience with mammalian cell culture - Ability to analyze dynamic microscopy data 2. Desired Technical Skills - Fluorescence microscopy