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shown that human white adipose tissue contains three distinct adipocyte subtypes. In this project, we aim to understand from which progenitor cells they are formed. To achieve this, we will employ several
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a unique automated robotic lab for high-capacity full-length scRNA-seq that can provide state-of-the-art splicing information across complex tissues. Using this scalable scRNA-seq technology, we
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state-or-the-art technologies such single-cell RNA sequencing, in vivo lineage tracing and targeted cell ablation, confocal microscopy, organoid culture, and tissue engineering. The successful candidate
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therapy. To do this, we interrogate the spatial relationships between B cell clones and their immediate niches within tissues using our in-house developed spatial transcriptomics-based technology (Spatial
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technologies that can safely and efficiently transport target proteins or protein complexes to the target tissue. To achieve this, we engineer EVs with improved delivery and targeting capabilities and screen our
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its usefulness for individual patients. The Gleason grade is determined by pathologists based on the microscopical growth patterns of the tumor visible in tissue specimens and forms the basis
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developed a unique automated robotic lab for high-capacity full-length scRNA-seq that can provide state-of-the-art splicing information across complex tissues. Using this scalable scRNA-seq technology, we
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campus of Science for Life Laboratory (SciLifeLab ). SciLifeLab is a leading national infrastructure for next-generation life science research in Sweden and hosts 10 technology platforms and more than 1500
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-counting CT. As a research assistant you will be an integral part of our team that are constantly pushing the boundaries using the newest medical imaging technology. Your mission In the role of Research
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-of-the-art imaging tools to investigate complex phenomena in intact brain and cancer samples, thereby deepening our understanding of the central nervous system's tissue architecture and tissue heterogeneity