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building models for novel materials, including nickelate superconductors, Kagome materials, 2D magnets, and many others. The candidate will ideally also co-mentor undergraduate and graduate students in
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(ADMC), Accelerating Medicines Partnership Program for Alzheimer’s disease (AMP-AD), and Model Organism Development & Evaluation for Late-Onset Alzheimer’s disease (MODEL-AD). Requirements Successful
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translational focus, there will be opportunities to direct their research to direct patient applications and treatments. Candidates should have experience in in-vitro and mouse models (xenograft, GEMM, etc
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genetic models, and animal models of cardiomyopathy, heart failure and vascular disease. During past years, the lab has published in Nature Cell Biology, Developmental Cell, Development, Genome Biology
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: Indianapolis is the 12th largest city in the United States and is growing and thriving economically thanks to a strong corporate base anchored by the life sciences. Indiana is home to one of the largest
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the State of Indiana. It is growing economically thanks to a strong corporate base anchored by the life sciences. Indiana is home to one of the largest concentrations of health sciences companies in
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program of research. Training will be provided in project design, grant writing, and research ethics. Salary and benefits are commensurate with NIH rates based on training and years of experience. Indiana
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, as well as teaching and grant writing experience are desirable. For additional information visit: iumsc.indiana.edu Basic Qualifications Required Qualifications: PhD in chemistry or related sciences
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join our innovative research team. Our lab focuses on developing precision medicine approaches for diagnosing neurodegenerative diseases, such as Alzheimer’s disease, through the discovery of blood-based
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to: Western blotting, PCR, qPCR, ELISA, immunoprecipitation, cell culture, and in vivo animal models. Design, execute, and analyze biochemical assays to investigate signaling pathways and gene expression