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the function of risk factors in neurological disorders. By leveraging human-induced pluripotent stem cell (hiPSC) technology, we will establish hiPSC-derived brain cell models relevant to the study of
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disease, with a strong focus on fibrosis and inflammation. Over the years, we have developed an advanced translational toolkit, including human precision-cut tissue slices, a unique organotypic model
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in the department is approximately 80. This includes about 45 faculty members (professors, associate professors, tenure track assistant professors), 7 administrative staff members, and 30 members
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been linked to these diseases for decades. This project aims to establish human autoantibody clones from various autoimmune diseases, with a primary focus on Systemic Sclerosis. This is with the purpose
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A postdoc position in the Torben Heick Jensen lab, Aarhus University, Denmark: Mammalian Nuclear ...
with interests in the biogenesis and turnover of nuclear RNA and its relationship to gene expression regulation in mammalian cells. Applied methods range from cell biological over biochemical