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of Minnesota’s Masonic Institute for the Developing Brain (MIDB) under the direction of Dr. Julia Moser. This position will focus on infant neuroimaging projects. CDNI is housed at the Masonic Institute
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modulation of highly homologous drug-metabolizing enzymes. We are taking a hypothesis-driven and technology-enabled multidisciplinary approach to develop chemical probes and investigate biological mechanisms
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approach to develop chemical probes, investigate biological mechanisms, and evaluate in vivo efficacy. In particular we use the promiscuous pregnane X receptor (PXR) and constitutive androstane receptor (CAR
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of Biochemistry, Molecular Biology, and Biophysics (BMBB) and the Department of Genetics, Cell Biology and Development (GCD). Salary will be according to NIH scale. For more information, please visit our lab
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: participate in the design, implementation and evaluation of research. Carry out and supervise laboratory experiments. Develop experimental procedures. Collect and analyze data, prepare and present data
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to characterize immune cell populations involved in cell death clearance and tissue repair • Develop and optimize protocols for efferocytosis assays and fibrotic tissue analysis • Analyze data using appropriate
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. However, limited availability of peritoneal dialysate has limited the impact of past attempts to introduce PD as a treatment modality. The technology being developed in our lab is a biopharmaceutical device
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findings at lab meetings and scientific conferences; contribute to collaborative research discussions • Prepare figures, methods, and manuscripts for publications • Mentor junior trainees and contribute
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required, you will be expected to prepare manuscripts for submission to scientific journals and present at scientific meetings. 35% Detailed documentation of procedures and experimental data is expected
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his collaborators in or outside the University of Minnesota. This position places you at the forefront of the transformative AI for Science, with a particular focus on developing, implementing and fine