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and super-resolution microscopy established in the host lab and spearhead an interdisciplinary, collaborative project. Expected start date and duration of employment This is a one–year position from
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to experimentally derived disorder models and data from methods such as total scattering/pair distribution function analysis, diffuse scattering, diffraction, solid-state NMR and electron microscopy. Work closely
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(confocal, electron microscopy and spatial omics) on samples. Using Seahorse and related assays to assess the impact of genome editing and drug treatment on the metabolic activity of pre-clinical models
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. Experience with one or more of the following will be considered an advantage: RNA sequencing or other omics technologies, including data analysis; advanced microscopy or image analysis; renal physiology
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of environmental samples. Experience in advanced analytical techniques is expected, including self-directed use of approaches such as DNA/RNA sequencing, microscopy, photophysiology and environmental chemistry
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, Biochemistry or a related discipline. Expertise in protein expression and purification, bioconjugation techniques, cellular and functional assays, and fluorescence microscopy will be considered a strong
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vesicle isolation and characterisation, such as ultracentrifugation/SEC, nanoparticle tracking analysis and electron microscopy. Small-RNA/miRNA profiling, including small RNA-seq and/or RT-qPCR. Sterile