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expected to carry out advanced computational analyses. Our underlying model system is the in vitro differentiation of adipose tissue stem cells into adipocytes. The project is in collaboration with
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microphysiological systems (MPS), are rapidly emerging as transformative and strategic technologies with the potential to redefine the future of health and life sciences. By integrating stem cell biology, patient
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the future of health and life sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable
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expected to carry out advanced computational analyses. Our underlying model system is the in vitro differentiation of adipose tissue stem cells into adipocytes. The project is in collaboration with
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and microphysiological systems (MPS), are rapidly emerging as transformative and strategic technologies with the potential to redefine the future of health and life sciences. By integrating stem cell
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underlying model system is the in vitro differentiation of adipose tissue stem cells into adipocytes. The project is in collaboration with the Danish Cancer Institute in Copenhagen, and you will have the
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trajectories of established cancers (hereunder efficacy of treatment). The practical work will consist of advanced molecular methods, like high-sensitivity methylation specific sequencing, stem cell cultivation