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objective of understanding the development and progression of B-cell tumors using a genetically engineered organoid model. By utilizing this immune organoid system in combination with genome editing
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medical sensor technology to quantitatively measure disease biomarkers. This will be achieved by designing epidermal bioelectronic devices measuring key physicochemical and biological biomarkers of the skin
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regeneration fails. We use a multidisciplinary approach that involves stem cell biology, systems biology, computational biology, molecular engineering and mouse models of disease. The current project will use in
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part of the joint doctoral education programme in medical technology (KI-KTH) aiming toward a joint doctoral degree. The group offers a stimulating international research environment located within
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Reviews Drug Discovery 2015). More specifically, the group focuses its work around understanding basic biology and how to genetically engineer NK cells to improve their in vivo persistence and homing
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genome technology groups at SciLifeLab and across Sweden, as well as with clinical research teams at Karolinska Hospitals, enable us to focus our research on human health using human clinical samples
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, Biotechnology, Bioinformatics, Bioengineering, Chemical engineering or a related field (or equivalent upon starting the position) Experience in a molecular biology wet-lab setting Experience in cell culture work
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our in-house developed spatial transcriptomics-based technology (Spatial VDJ). Using established and newly developed algorithms, we map B cell evolution within tissues, including class switching and
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Social Sciences, Humanities and Technology. The research areas of the department units are broad and encompasses health economics and policy, cultural medicine, learning in health care, informatics