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flavor compounds on oral and extraoral chemosensory systems involved in physiological functions, e.g., metabolic regulation, food intake and immune response. The aim is to elucidate molecular mechanisms by
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. Contributes to the design and execution of in vivo CRISPR/Cas9 experiments, including delivery method development, molecular and behavioral analyses, and evaluation of treatment efficacy and safety. Performs
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motivated and highly ambitious scientist with the following qualifications: PhD in molecular biology and/or stem cell biology and hematopoiesis. Expertise in molecular biology techniques, mouse models
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RESPONSIBILITIES: Conduct laboratory experiments using fission yeast as a model system to study epigenetic mechanisms. Perform molecular biology techniques such as PCR, DNA extraction, cloning, and gene expression
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in gene editing technologies and molecular cloning in a prostate cancer research lab. Extensive experience in mouse models for prostate cancer, microscopy and image analysis, metabolism-related studies
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model organisms in their work and are pushing into emerging model and non-model organisms that are proving uniquely valuable in particular studies. To learn more about our department, https
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organs. We use molecular and cellular biological approaches in addition to substantial work conducted in mouse models of metabolic disease. Current projects are focused on the regulation of mitochondrial
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advantage but not required. A working knowledge of experimental methods in cellular and molecular neurobiology. Comfort around human-derived tissues/samples. Prior experience working with mouse models
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engineered mouse models, including studies implementing advanced physiological instrumentation and surgeries. It is an opportunity to learn advanced techniques in molecular biology, protein and RNA
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, proteomics, CRISPR/Cas9 screening, and physiology using both animal models of diabetes as well as cell culture models, including primary culture of rodent and human pancreatic tissue, rodent and human beta