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cellular immunity, including antibody, B-cell, and T-cell responses. Use advanced in vivo models for vaccine and antibody testing, including conventional and humanized mice, transgenic models, rabbits, non
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, shaping the future of medicine through cutting-edge research. A Postdoctoral Fellowship position is immediately available in the laboratory of Dr. Julia Panzer. The lab focuses on human islet physiology
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that can be targeted to preserve functional beta-cell mass and prevent disease progression. The lab integrates innovative genetic mouse models, human islets and pancreas slices, advanced imaging, and
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aging alters epithelial fitness, cell competition, clonal selection, and early tumor evolution. Engineered culture microenvironments, primary human mammary epithelial cells, and cell-based functional
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mouse models, human samples, and state-of-the-art immunological, molecular, and computational approaches. You will work within a collaborative and multidisciplinary environment that integrates immunology
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the pathogenesis and pharmacogenomics of pancreatic cancer in order to accelerate treatment. Using a combination of molecular and genomic data and human-in-mouse models, the lab has identified four core subtypes in
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in the AR-DMRI Department of Diabetes Immunology. The research is highly translational and primarily focused on human type 1 diabetes. The major ongoing projects are investigating miRNA biomarkers
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alternative delivery systems, targeted delivery, cancer immunology, auto immune disease, primary human cancer cells, cancer and stem cell transplantation models, mouse genetics, molecular biology, biochemistry
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of the most important breakthroughs in the development of cancer treatment approaches. As one of the largest populations of immune cells in human body and the major components of primary tumors and the
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of induced pluripotent stem cell-based human disease models 2) Understanding the role of immunity during tumorigenesis as well as disease relapses in order to design novel inhibitors, CAR-T cell therapy and