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develop and apply advanced preclinical model systems in lymphoma—including organoids, patient-derived xenografts (PDX), and humanized mouse models—to enable functional genomic approaches and the testing
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facilities. Skills/Qualifications PhD in microbiology, molecular biology, or related field Strong experience in bacteriology and molecular mechanisms of pathogenesis Previous experience with insect models and
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regulating therapy resistance. Utilize molecular, cellular, and biochemical techniques including CRISPR, RNA-seq, CUT&RUN, ATAC-seq, HiC, flow cytometry, and 3D tumor modeling. Analyze how epigenetic
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genetics, or bioinformatics. Our research focuses on modeling human brain development and function in cell culture to systematically investigate the genetic, cellular, and molecular basis of complex
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, molecular, behavioural and environmental determinants of non-communicable diseases, ultimately benefiting patients and society. The Centre owns exceptionally rich genetic and molecular Our data resources
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of epigenetic regulators in regulating therapy resistance. Utilize molecular, cellular, and biochemical techniques including CRISPR, scRNA-seq and spatial transcriptomics, flow cytometry, and 3D tumor modeling
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studying the disruption of calcium homeostasis in the setting of cardiac and neuronal damage. Studies underlying molecular signaling. Utilizes approaches including the extensive use of mouse models
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The Ravnskjaer lab at the Functional Genomics & Metabolism Research Unit, Dept. of Biochemistry and Molecular Biology, University of Southern Denmark, invites applications from outstanding
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controlling cancer cell biology. Your research focus will be on (1) the molecular mechanisms underlying the action of the oncoprotein MYC; or 2) the role of chromatin remodeling complexes in regulating access
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cells to generate advanced model systems for studying beta-cell maturation and failure. You will apply state-of-the-art molecular biology and tissue culture methods, along with next-generation sequencing