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This project explores how mutations in chromatin-modifying genes disrupt early neurodevelopment by systematically profiling in vitro neurons using multimodal single-cell and spatial profiling. By
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team in the field of cell and developmental biology. Our team uses the developing wing of the Drosophila melanogaster as a model system to investigate how tissue morphogenesis and intercellular
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Kim (DANDRITE) This project explores how mutations in chromatin-modifying genes disrupt early neurodevelopment by systematically profiling in vitro neurons using multimodal single-cell and spatial
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This project aims to identify the spatial genetic and adaptive dynamics of tumour microbiome in colorectal cancer. To do so, we will integrate single-cell genomics, transcriptomics and clinical data
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with a PhD / MSc, a solid publication record, and strong background in wet lab work within the field of immunology. Primary human B cell culture skills, gene editing with crispr-cas9 along with human
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regulatory interactions, (ii) modeling networks based on single-cell and spatial omics data, and (iii) integrating regulatory profiles with multi-modal data. These efforts aim to uncover regulatory mechanisms
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to reside in Finland while employed by the University of Helsinki. What we offer The successful candidate will receive training in biochemical, molecular biology and cell line-based functional assays, as
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based on single-cell and spatial omics data, and (iii) integrating regulatory profiles with multi-modal data. These efforts aim to uncover regulatory mechanisms behind cancer and to develop predictive
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Cell, Nature, Science Advances, Chemical Sciences, etc. See all publications from the group here https://scholar.google.fi/citations?user=G4xsLQ0AAAAJ&hl=en Postdoctoral researcher position We